SPEC scans from: /share1/USAXS_data/2023-03/03_31_Londono_Hu/03_31_Londono_Hu.dat

spec file: /share1/USAXS_data/2023-03/03_31_Londono_Hu/03_31_Londono_Hu.dat
#2: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841810605963927, 8.846810605963926]', per_step='None') #3: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843922019110552, 8.845722019110552]', per_step='None') #4: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 31.26129216238651, 43.26129216238651]', per_step='None') #5: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.84203143929726, 8.84703143929726]', per_step='None') #6: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843922574650676, 8.845722574650676]', per_step='None') #7: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.719292162386516, 45.719292162386516]', per_step='None') #8: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.842024772630593, 8.847024772630592]', per_step='None') #9: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844060070831338, 8.845860070831337]', per_step='None') #10: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.26319216238652, 46.26319216238652]', per_step='None') #11: tune_dx(detectors=('PD_USAXS',), num=35, args='['d_stage_x', 93.26001, 104.26001]', per_step='None') #12: tune_dy(detectors=('PD_USAXS',), num=35, args='['d_stage_y', -18.645574000000238, -12.645574000000238]', per_step='None') #13: tune_dx(detectors=('PD_USAXS',), num=35, args='['d_stage_x', 94.315754, 105.315754]', per_step='None') #14: tune_dy(detectors=('PD_USAXS',), num=35, args='['d_stage_y', -19.141392000000224, -13.141392000000224]', per_step='None') #15: documentation_run() #16: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.52869216238651, 46.52869216238651]', per_step='None') #17: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844058681981029, 8.845858681981028]', per_step='None') #18: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.64149216238651, 46.64149216238651]', per_step='None') #19: SAXS(detectors=['saxs_det'], num=1) #20: WAXS(detectors=['waxs_det'], num=1) #21: documentation_run() #22: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.41629216238651, 46.41629216238651]', per_step='None') #23: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844055348740286, 8.845855348740285]', per_step='None') #24: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.54679216238652, 47.54679216238652]', per_step='None') #25: uascan(start=8.846013503863619, reference=8.844936738146135, finish=7.229734678450995, minStep=2e-05, dx0=99.80529399999998, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #26: uascan(start=8.846013503863619, reference=8.844936738146135, finish=7.229734678450995, minStep=2e-05, dx0=99.80529399999998, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #27: SAXS(detectors=['saxs_det'], num=1) #28: SAXS(detectors=['saxs_det'], num=1) #29: WAXS(detectors=['waxs_det'], num=1) #30: WAXS(detectors=['waxs_det'], num=1) #31: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.842010605963926, 8.847010605963925]', per_step='None') #32: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844035071525763, 8.845835071525762]', per_step='None') #33: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.70209216238651, 47.70209216238651]', per_step='None') #34: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841925605963924, 8.846925605963923]', per_step='None') #35: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843852298825006, 8.845652298825005]', per_step='None') #36: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.867592162386515, 47.867592162386515]', per_step='None') #37: tune_dx(detectors=('PD_USAXS',), num=35, args='['d_stage_x', 93.25997199999998, 104.25997199999998]', per_step='None') #38: tune_dy(detectors=('PD_USAXS',), num=35, args='['d_stage_y', -19.277149000000236, -13.277149000000236]', per_step='None') #39: tune_dx(detectors=('PD_USAXS',), num=35, args='['d_stage_x', 93.27895500000002, 104.27895500000002]', per_step='None') #40: tune_dy(detectors=('PD_USAXS',), num=35, args='['d_stage_y', -18.859379000000217, -12.859379000000217]', per_step='None') #41: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.87589216238651, 47.87589216238651]', per_step='None') #42: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843849798894448, 8.845649798894447]', per_step='None') #43: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.90539216238651, 47.90539216238651]', per_step='None') #44: documentation_run() #45: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.003092162386515, 48.003092162386515]', per_step='None') #46: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843866465098165, 8.845666465098164]', per_step='None') #47: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.03659216238651, 48.03659216238651]', per_step='None') #48: uascan(start=8.845844897436018, reference=8.844768131718535, finish=7.2295660720233945, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #49: uascan(start=8.845844897436018, reference=8.844768131718535, finish=7.2295660720233945, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #50: SAXS(detectors=['saxs_det'], num=1) #51: SAXS(detectors=['saxs_det'], num=1) #52: WAXS(detectors=['waxs_det'], num=1) #53: WAXS(detectors=['waxs_det'], num=1) #54: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841914772630593, 8.846914772630592]', per_step='None') #55: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843867020638289, 8.845667020638288]', per_step='None') #56: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.00279216238651, 48.00279216238651]', per_step='None') #57: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841868105963924, 8.846868105963923]', per_step='None') #58: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843868965028722, 8.845668965028722]', per_step='None') #59: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.24929216238652, 48.24929216238652]', per_step='None') #60: documentation_run() #61: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.896292162386516, 47.896292162386516]', per_step='None') #62: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843816466487015, 8.845616466487014]', per_step='None') #63: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.88419216238651, 47.88419216238651]', per_step='None') #64: uascan(start=8.845795454364993, reference=8.844718688647509, finish=7.229516628952369, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #65: uascan(start=8.845795454364993, reference=8.844718688647509, finish=7.229516628952369, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #66: uascan(start=8.845795454364993, reference=8.844718688647509, finish=7.229516628952369, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #67: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.01989216238651, 48.01989216238651]', per_step='None') #68: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843818133107385, 8.845618133107385]', per_step='None') #69: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.044392162386515, 48.044392162386515]', per_step='None') #70: uascan(start=8.845795732135056, reference=8.844718966417572, finish=7.229516906722432, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #71: uascan(start=8.845795732135056, reference=8.844718966417572, finish=7.229516906722432, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #72: uascan(start=8.845795732135056, reference=8.844718966417572, finish=7.229516906722432, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #73: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.074592162386516, 48.074592162386516]', per_step='None') #74: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843816466487015, 8.845616466487014]', per_step='None') #75: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.70159216238651, 47.70159216238651]', per_step='None') #76: uascan(start=8.845800176456047, reference=8.844723410738563, finish=7.229521351043423, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #77: uascan(start=8.845800176456047, reference=8.844723410738563, finish=7.229521351043423, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #78: uascan(start=8.845800176456047, reference=8.844723410738563, finish=7.229521351043423, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #79: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.678992162386514, 47.678992162386514]', per_step='None') #80: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84382452181881, 8.84562452181881]', per_step='None') #81: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.566192162386514, 47.566192162386514]', per_step='None') #82: uascan(start=8.845797676525489, reference=8.844720910808006, finish=7.229518851112865, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #83: uascan(start=8.845797676525489, reference=8.844720910808006, finish=7.229518851112865, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #84: uascan(start=8.845797676525489, reference=8.844720910808006, finish=7.229518851112865, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #85: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.54979216238652, 47.54979216238652]', per_step='None') #86: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843819244187634, 8.845619244187633]', per_step='None') #87: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.02069216238652, 48.02069216238652]', per_step='None') #88: uascan(start=8.845788510113445, reference=8.844711744395962, finish=7.229509684700822, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #89: uascan(start=8.845788510113445, reference=8.844711744395962, finish=7.229509684700822, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #90: uascan(start=8.845788510113445, reference=8.844711744395962, finish=7.229509684700822, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #91: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.004592162386515, 48.004592162386515]', per_step='None') #92: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843813133246272, 8.845613133246271]', per_step='None') #93: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.56889216238651, 47.56889216238651]', per_step='None') #94: uascan(start=8.845788787883507, reference=8.844712022166023, finish=7.229509962470883, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #95: uascan(start=8.845788787883507, reference=8.844712022166023, finish=7.229509962470883, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #96: uascan(start=8.845788787883507, reference=8.844712022166023, finish=7.229509962470883, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #97: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.53869216238651, 47.53869216238651]', per_step='None') #98: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843814799866642, 8.845614799866642]', per_step='None') #99: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.329692162386515, 47.329692162386515]', per_step='None') #100: uascan(start=8.845794343284746, reference=8.844717577567263, finish=7.229515517872122, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #101: uascan(start=8.845794343284746, reference=8.844717577567263, finish=7.229515517872122, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #102: uascan(start=8.845794343284746, reference=8.844717577567263, finish=7.229515517872122, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #103: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.31889216238651, 47.31889216238651]', per_step='None') #104: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84381563317683, 8.845615633176829]', per_step='None') #105: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.437992162386514, 47.437992162386514]', per_step='None') #106: uascan(start=8.845785454642764, reference=8.84470868892528, finish=7.22950662923014, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #107: uascan(start=8.845785454642764, reference=8.84470868892528, finish=7.22950662923014, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #108: uascan(start=8.845785454642764, reference=8.84470868892528, finish=7.22950662923014, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #109: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.543492162386514, 47.543492162386514]', per_step='None') #110: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843808411155218, 8.845608411155217]', per_step='None') #111: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.24379216238651, 47.24379216238651]', per_step='None') #112: uascan(start=8.845796009905117, reference=8.844719244187633, finish=7.229517184492493, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #113: uascan(start=8.845796009905117, reference=8.844719244187633, finish=7.229517184492493, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #114: uascan(start=8.845796009905117, reference=8.844719244187633, finish=7.229517184492493, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #115: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.20399216238651, 47.20399216238651]', per_step='None') #116: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843817577567263, 8.845617577567262]', per_step='None') #117: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.33199216238651, 47.33199216238651]', per_step='None') #118: uascan(start=8.845785454642764, reference=8.84470868892528, finish=7.22950662923014, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #119: uascan(start=8.845785454642764, reference=8.84470868892528, finish=7.22950662923014, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #120: uascan(start=8.845785454642764, reference=8.84470868892528, finish=7.22950662923014, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #121: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.429892162386516, 47.429892162386516]', per_step='None') #122: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843809522235466, 8.845609522235465]', per_step='None') #123: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.46639216238651, 47.46639216238651]', per_step='None') #124: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #125: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #126: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #127: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.53039216238651, 47.53039216238651]', per_step='None') #128: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843799522513235, 8.845599522513234]', per_step='None') #129: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.144592162386516, 47.144592162386516]', per_step='None') #130: uascan(start=8.845793232204498, reference=8.844716466487014, finish=7.229514406791874, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #131: uascan(start=8.845793232204498, reference=8.844716466487014, finish=7.229514406791874, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #132: uascan(start=8.845793232204498, reference=8.844716466487014, finish=7.229514406791874, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #133: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.03529216238651, 47.03529216238651]', per_step='None') #134: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843815355406766, 8.845615355406766]', per_step='None') #135: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.35059216238651, 47.35059216238651]', per_step='None') #136: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #137: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #138: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #139: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.44499216238651, 47.44499216238651]', per_step='None') #140: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843797578122802, 8.845597578122801]', per_step='None') #141: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.39619216238651, 46.39619216238651]', per_step='None') #142: uascan(start=8.845824342451435, reference=8.844747576733951, finish=7.229545517038811, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #143: uascan(start=8.845824342451435, reference=8.844747576733951, finish=7.229545517038811, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #144: uascan(start=8.845824342451435, reference=8.844747576733951, finish=7.229545517038811, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #145: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.317092162386515, 46.317092162386515]', per_step='None') #146: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.8438486878142, 8.845648687814199]', per_step='None') #147: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.12089216238651, 47.12089216238651]', per_step='None') #148: uascan(start=8.845803231926727, reference=8.844726466209243, finish=7.229524406514103, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #149: uascan(start=8.845803231926727, reference=8.844726466209243, finish=7.229524406514103, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #150: uascan(start=8.845803231926727, reference=8.844726466209243, finish=7.229524406514103, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #151: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.155892162386515, 47.155892162386515]', per_step='None') #152: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843827577289492, 8.845627577289491]', per_step='None') #153: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.77569216238651, 46.77569216238651]', per_step='None') #154: uascan(start=8.84580212084648, reference=8.844725355128997, finish=7.229523295433856, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #155: uascan(start=8.84580212084648, reference=8.844725355128997, finish=7.229523295433856, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #156: uascan(start=8.84580212084648, reference=8.844725355128997, finish=7.229523295433856, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #157: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.760792162386515, 46.760792162386515]', per_step='None') #158: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843824244048749, 8.845624244048748]', per_step='None') #159: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.786492162386516, 45.786492162386516]', per_step='None') #160: uascan(start=8.84582795346224, reference=8.844751187744757, finish=7.229549128049617, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #161: uascan(start=8.84582795346224, reference=8.844751187744757, finish=7.229549128049617, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #162: uascan(start=8.84582795346224, reference=8.844751187744757, finish=7.229549128049617, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #163: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.95119216238651, 45.95119216238651]', per_step='None') #164: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843850632204633, 8.845650632204633]', per_step='None') #165: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.013392162386516, 47.013392162386516]', per_step='None') #166: uascan(start=8.845815176039391, reference=8.844738410321908, finish=7.229536350626767, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #167: uascan(start=8.845815176039391, reference=8.844738410321908, finish=7.229536350626767, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #168: uascan(start=8.845815176039391, reference=8.844738410321908, finish=7.229536350626767, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #169: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.00959216238651, 47.00959216238651]', per_step='None') #170: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843838688091969, 8.845638688091968]', per_step='None') #171: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.06649216238652, 47.06649216238652]', per_step='None') #172: uascan(start=8.845799898685984, reference=8.8447231329685, finish=7.22952107327336, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #173: uascan(start=8.845799898685984, reference=8.8447231329685, finish=7.22952107327336, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #174: uascan(start=8.845799898685984, reference=8.8447231329685, finish=7.22952107327336, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #175: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.055492162386514, 47.055492162386514]', per_step='None') #176: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843822299658315, 8.845622299658315]', per_step='None') #177: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.78399216238651, 46.78399216238651]', per_step='None') #178: uascan(start=8.845795454364993, reference=8.844718688647509, finish=7.229516628952369, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #179: uascan(start=8.845795454364993, reference=8.844718688647509, finish=7.229516628952369, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #180: uascan(start=8.845795454364993, reference=8.844718688647509, finish=7.229516628952369, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #181: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.75449216238651, 46.75449216238651]', per_step='None') #182: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843817855337324, 8.845617855337323]', per_step='None') #183: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.034292162386514, 47.034292162386514]', per_step='None') #184: uascan(start=8.845777399310967, reference=8.844700633593483, finish=7.229498573898343, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #185: uascan(start=8.845777399310967, reference=8.844700633593483, finish=7.229498573898343, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #186: uascan(start=8.845777399310967, reference=8.844700633593483, finish=7.229498573898343, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #187: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.014192162386514, 47.014192162386514]', per_step='None') #188: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843801466903669, 8.845601466903668]', per_step='None') #189: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.536692162386515, 46.536692162386515]', per_step='None') #190: uascan(start=8.845796009905117, reference=8.844719244187633, finish=7.229517184492493, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #191: uascan(start=8.845796009905117, reference=8.844719244187633, finish=7.229517184492493, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #192: uascan(start=8.845796009905117, reference=8.844719244187633, finish=7.229517184492493, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #193: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.489392162386515, 46.489392162386515]', per_step='None') #194: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843818966417572, 8.845618966417572]', per_step='None') #195: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.49789216238651, 46.49789216238651]', per_step='None') #196: uascan(start=8.845801843076417, reference=8.844725077358934, finish=7.2295230176637935, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #197: uascan(start=8.845801843076417, reference=8.844725077358934, finish=7.2295230176637935, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #198: uascan(start=8.845801843076417, reference=8.844725077358934, finish=7.2295230176637935, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #199: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.45289216238651, 46.45289216238651]', per_step='None') #200: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843825077358934, 8.845625077358934]', per_step='None') #201: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.780692162386515, 46.780692162386515]', per_step='None') #202: uascan(start=8.845801565306356, reference=8.844724799588873, finish=7.229522739893732, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #203: uascan(start=8.845801565306356, reference=8.844724799588873, finish=7.229522739893732, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #204: uascan(start=8.845801565306356, reference=8.844724799588873, finish=7.229522739893732, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #205: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.733592162386515, 46.733592162386515]', per_step='None') #206: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843824799588873, 8.845624799588872]', per_step='None') #207: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.48709216238652, 46.48709216238652]', per_step='None') #208: uascan(start=8.845808509557905, reference=8.844731743840422, finish=7.229529684145281, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #209: uascan(start=8.845808509557905, reference=8.844731743840422, finish=7.229529684145281, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #210: uascan(start=8.845808509557905, reference=8.844731743840422, finish=7.229529684145281, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #211: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.49059216238651, 46.49059216238651]', per_step='None') #212: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843831466070359, 8.845631466070358]', per_step='None') #213: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.47019216238651, 46.47019216238651]', per_step='None') #214: uascan(start=8.845815453809452, reference=8.844738688091969, finish=7.229536628396828, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #215: uascan(start=8.845815453809452, reference=8.844738688091969, finish=7.229536628396828, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #216: uascan(start=8.845815453809452, reference=8.844738688091969, finish=7.229536628396828, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #217: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.480792162386514, 46.480792162386514]', per_step='None') #218: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843838410321908, 8.845638410321907]', per_step='None') #219: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.921492162386514, 46.921492162386514]', per_step='None') #220: SAXS(detectors=['saxs_det'], num=1) #221: SAXS(detectors=['saxs_det'], num=1) #222: SAXS(detectors=['saxs_det'], num=1) #223: SAXS(detectors=['saxs_det'], num=1) #224: SAXS(detectors=['saxs_det'], num=1) #225: SAXS(detectors=['saxs_det'], num=1) #226: SAXS(detectors=['saxs_det'], num=1) #227: SAXS(detectors=['saxs_det'], num=1) #228: SAXS(detectors=['saxs_det'], num=1) #229: SAXS(detectors=['saxs_det'], num=1) #230: SAXS(detectors=['saxs_det'], num=1) #231: SAXS(detectors=['saxs_det'], num=1) #232: SAXS(detectors=['saxs_det'], num=1) #233: SAXS(detectors=['saxs_det'], num=1) #234: SAXS(detectors=['saxs_det'], num=1) #235: SAXS(detectors=['saxs_det'], num=1) #236: SAXS(detectors=['saxs_det'], num=1) #237: SAXS(detectors=['saxs_det'], num=1) #238: SAXS(detectors=['saxs_det'], num=1) #239: 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num=1) #263: SAXS(detectors=['saxs_det'], num=1) #264: SAXS(detectors=['saxs_det'], num=1) #265: SAXS(detectors=['saxs_det'], num=1) #266: SAXS(detectors=['saxs_det'], num=1) #267: SAXS(detectors=['saxs_det'], num=1) #268: SAXS(detectors=['saxs_det'], num=1) #269: SAXS(detectors=['saxs_det'], num=1) #270: SAXS(detectors=['saxs_det'], num=1) #271: SAXS(detectors=['saxs_det'], num=1) #272: SAXS(detectors=['saxs_det'], num=1) #273: SAXS(detectors=['saxs_det'], num=1) #274: SAXS(detectors=['saxs_det'], num=1) #275: SAXS(detectors=['saxs_det'], num=1) #276: SAXS(detectors=['saxs_det'], num=1) #277: SAXS(detectors=['saxs_det'], num=1) #278: SAXS(detectors=['saxs_det'], num=1) #279: SAXS(detectors=['saxs_det'], num=1) #280: SAXS(detectors=['saxs_det'], num=1) #281: SAXS(detectors=['saxs_det'], num=1) #282: SAXS(detectors=['saxs_det'], num=1) #283: SAXS(detectors=['saxs_det'], num=1) #284: SAXS(detectors=['saxs_det'], num=1) #285: SAXS(detectors=['saxs_det'], num=1) #286: 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num=1) #310: WAXS(detectors=['waxs_det'], num=1) #311: WAXS(detectors=['waxs_det'], num=1) #312: WAXS(detectors=['waxs_det'], num=1) #313: WAXS(detectors=['waxs_det'], num=1) #314: WAXS(detectors=['waxs_det'], num=1) #315: WAXS(detectors=['waxs_det'], num=1) #316: WAXS(detectors=['waxs_det'], num=1) #317: WAXS(detectors=['waxs_det'], num=1) #318: WAXS(detectors=['waxs_det'], num=1) #319: WAXS(detectors=['waxs_det'], num=1) #320: WAXS(detectors=['waxs_det'], num=1) #321: WAXS(detectors=['waxs_det'], num=1) #322: WAXS(detectors=['waxs_det'], num=1) #323: WAXS(detectors=['waxs_det'], num=1) #324: WAXS(detectors=['waxs_det'], num=1) #325: WAXS(detectors=['waxs_det'], num=1) #326: WAXS(detectors=['waxs_det'], num=1) #327: WAXS(detectors=['waxs_det'], num=1) #328: WAXS(detectors=['waxs_det'], num=1) #329: WAXS(detectors=['waxs_det'], num=1) #330: WAXS(detectors=['waxs_det'], num=1) #331: WAXS(detectors=['waxs_det'], num=1) #332: WAXS(detectors=['waxs_det'], num=1) #333: WAXS(detectors=['waxs_det'], num=1) #334: WAXS(detectors=['waxs_det'], num=1) #335: WAXS(detectors=['waxs_det'], num=1) #336: WAXS(detectors=['waxs_det'], num=1) #337: WAXS(detectors=['waxs_det'], num=1) #338: WAXS(detectors=['waxs_det'], num=1) #339: WAXS(detectors=['waxs_det'], num=1) #340: WAXS(detectors=['waxs_det'], num=1) #341: WAXS(detectors=['waxs_det'], num=1) #342: WAXS(detectors=['waxs_det'], num=1) #343: WAXS(detectors=['waxs_det'], num=1) #344: WAXS(detectors=['waxs_det'], num=1) #345: WAXS(detectors=['waxs_det'], num=1) #346: WAXS(detectors=['waxs_det'], num=1) #347: WAXS(detectors=['waxs_det'], num=1) #348: WAXS(detectors=['waxs_det'], num=1) #349: WAXS(detectors=['waxs_det'], num=1) #350: WAXS(detectors=['waxs_det'], num=1) #351: WAXS(detectors=['waxs_det'], num=1) #352: WAXS(detectors=['waxs_det'], num=1) #353: WAXS(detectors=['waxs_det'], num=1) #354: WAXS(detectors=['waxs_det'], num=1) #355: WAXS(detectors=['waxs_det'], num=1) #356: WAXS(detectors=['waxs_det'], num=1) #357: WAXS(detectors=['waxs_det'], num=1) #358: WAXS(detectors=['waxs_det'], num=1) #359: WAXS(detectors=['waxs_det'], num=1) #360: WAXS(detectors=['waxs_det'], num=1) #361: WAXS(detectors=['waxs_det'], num=1) #362: WAXS(detectors=['waxs_det'], num=1) #363: WAXS(detectors=['waxs_det'], num=1) #364: WAXS(detectors=['waxs_det'], num=1) #365: WAXS(detectors=['waxs_det'], num=1) #366: WAXS(detectors=['waxs_det'], num=1) #367: WAXS(detectors=['waxs_det'], num=1) #368: WAXS(detectors=['waxs_det'], num=1) #369: WAXS(detectors=['waxs_det'], num=1) #370: WAXS(detectors=['waxs_det'], num=1) #371: WAXS(detectors=['waxs_det'], num=1) #372: WAXS(detectors=['waxs_det'], num=1) #373: WAXS(detectors=['waxs_det'], num=1) #374: WAXS(detectors=['waxs_det'], num=1) #375: WAXS(detectors=['waxs_det'], num=1) #376: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.893492162386515, 46.893492162386515]', per_step='None') #377: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843841188022527, 8.845641188022526]', per_step='None') #378: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.005392162386514, 46.005392162386514]', per_step='None') #379: uascan(start=8.845820453670568, reference=8.844743687953084, finish=7.229541628257944, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #380: uascan(start=8.845820453670568, reference=8.844743687953084, finish=7.229541628257944, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #381: uascan(start=8.845820453670568, reference=8.844743687953084, finish=7.229541628257944, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #382: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.00659216238651, 46.00659216238651]', per_step='None') #383: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843844521263271, 8.84564452126327]', per_step='None') #384: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.88249216238651, 45.88249216238651]', per_step='None') #385: uascan(start=8.845829897852674, reference=8.84475313213519, finish=7.22955107244005, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #386: uascan(start=8.845829897852674, reference=8.84475313213519, finish=7.22955107244005, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #387: uascan(start=8.845829897852674, reference=8.84475313213519, finish=7.22955107244005, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #388: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.91069216238651, 45.91069216238651]', per_step='None') #389: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843852576595067, 8.845652576595066]', per_step='None') #390: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.14589216238652, 46.14589216238652]', per_step='None') #391: uascan(start=8.84583934203478, reference=8.844762576317297, finish=7.229560516622157, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #392: uascan(start=8.84583934203478, reference=8.844762576317297, finish=7.229560516622157, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #393: uascan(start=8.84583934203478, reference=8.844762576317297, finish=7.229560516622157, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #394: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.12929216238651, 46.12929216238651]', per_step='None') #395: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843862020777173, 8.845662020777173]', per_step='None') #396: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.763592162386516, 45.763592162386516]', per_step='None') #397: uascan(start=8.84584656405639, reference=8.844769798338907, finish=7.229567738643767, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #398: uascan(start=8.84584656405639, reference=8.844769798338907, finish=7.229567738643767, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #399: uascan(start=8.84584656405639, reference=8.844769798338907, finish=7.229567738643767, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #400: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.74779216238652, 45.74779216238652]', per_step='None') #401: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843871187189217, 8.845671187189216]', per_step='None') #402: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.89359216238651, 45.89359216238651]', per_step='None') #403: uascan(start=8.845848230676763, reference=8.84477146495928, finish=7.229569405264139, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #404: uascan(start=8.845848230676763, reference=8.84477146495928, finish=7.229569405264139, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #405: uascan(start=8.845848230676763, reference=8.84477146495928, finish=7.229569405264139, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #406: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.927092162386515, 45.927092162386515]', per_step='None') #407: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843870631649093, 8.845670631649092]', per_step='None') #408: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.666392162386515, 45.666392162386515]', per_step='None') #409: uascan(start=8.84585211945763, reference=8.844775353740147, finish=7.229573294045006, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #410: uascan(start=8.84585211945763, reference=8.844775353740147, finish=7.229573294045006, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #411: uascan(start=8.84585211945763, reference=8.844775353740147, finish=7.229573294045006, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #412: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.75859216238651, 45.75859216238651]', per_step='None') #413: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843876742590457, 8.845676742590456]', per_step='None') #414: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.693592162386516, 45.693592162386516]', per_step='None') #415: uascan(start=8.845854341618125, reference=8.844777575900642, finish=7.229575516205501, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #416: uascan(start=8.845854341618125, reference=8.844777575900642, finish=7.229575516205501, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #417: uascan(start=8.845854341618125, reference=8.844777575900642, finish=7.229575516205501, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #418: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.66669216238651, 45.66669216238651]', per_step='None') #419: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843878964750951, 8.84567896475095]', per_step='None') #420: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.66159216238651, 45.66159216238651]', per_step='None') #421: uascan(start=8.845850452837258, reference=8.844773687119774, finish=7.229571627424634, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #422: uascan(start=8.845850452837258, reference=8.844773687119774, finish=7.229571627424634, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #423: uascan(start=8.845850452837258, reference=8.844773687119774, finish=7.229571627424634, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #424: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.59869216238651, 45.59869216238651]', per_step='None') #425: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843877853670703, 8.845677853670702]', per_step='None') #426: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.689092162386515, 45.689092162386515]', per_step='None') #427: uascan(start=8.845851841687567, reference=8.844775075970084, finish=7.229573016274943, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #428: uascan(start=8.845851841687567, reference=8.844775075970084, finish=7.229573016274943, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #429: uascan(start=8.845851841687567, reference=8.844775075970084, finish=7.229573016274943, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #430: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.666392162386515, 45.666392162386515]', per_step='None') #431: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84387452042996, 8.84567452042996]', per_step='None') #432: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.63119216238651, 45.63119216238651]', per_step='None') #433: uascan(start=8.845858508169053, reference=8.84478174245157, finish=7.229579682756429, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #434: uascan(start=8.845858508169053, reference=8.84478174245157, finish=7.229579682756429, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #435: uascan(start=8.845858508169053, reference=8.84478174245157, finish=7.229579682756429, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #436: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.706192162386515, 45.706192162386515]', per_step='None') #437: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843881186911448, 8.845681186911447]', per_step='None') #438: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.564692162386514, 45.564692162386514]', per_step='None') #439: uascan(start=8.845865174650541, reference=8.844788408933058, finish=7.229586349237917, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #440: uascan(start=8.845865174650541, reference=8.844788408933058, finish=7.229586349237917, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #441: uascan(start=8.845865174650541, reference=8.844788408933058, finish=7.229586349237917, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #442: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.59539216238652, 45.59539216238652]', per_step='None') #443: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843887020082748, 8.845687020082748]', per_step='None') #444: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.57169216238651, 45.57169216238651]', per_step='None') #445: uascan(start=8.845862952490045, reference=8.844786186772561, finish=7.229584127077421, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #446: SAXS(detectors=['saxs_det'], num=1) #447: SAXS(detectors=['saxs_det'], num=1) #448: SAXS(detectors=['saxs_det'], num=1) #449: SAXS(detectors=['saxs_det'], num=1) #450: SAXS(detectors=['saxs_det'], num=1) #451: SAXS(detectors=['saxs_det'], num=1) #452: SAXS(detectors=['saxs_det'], num=1) #453: SAXS(detectors=['saxs_det'], num=1) #454: SAXS(detectors=['saxs_det'], num=1) #455: SAXS(detectors=['saxs_det'], num=1) #456: SAXS(detectors=['saxs_det'], num=1) #457: SAXS(detectors=['saxs_det'], num=1) #458: SAXS(detectors=['saxs_det'], num=1) #459: SAXS(detectors=['saxs_det'], num=1) #460: SAXS(detectors=['saxs_det'], num=1) #461: SAXS(detectors=['saxs_det'], num=1) #462: SAXS(detectors=['saxs_det'], num=1) #463: SAXS(detectors=['saxs_det'], num=1) #464: SAXS(detectors=['saxs_det'], num=1) #465: SAXS(detectors=['saxs_det'], num=1) #466: SAXS(detectors=['saxs_det'], num=1) #467: SAXS(detectors=['saxs_det'], num=1) #468: SAXS(detectors=['saxs_det'], num=1) #469: SAXS(detectors=['saxs_det'], num=1) #470: SAXS(detectors=['saxs_det'], num=1) #471: SAXS(detectors=['saxs_det'], num=1) #472: SAXS(detectors=['saxs_det'], num=1) #473: SAXS(detectors=['saxs_det'], num=1) #474: SAXS(detectors=['saxs_det'], num=1) #475: SAXS(detectors=['saxs_det'], num=1) #476: SAXS(detectors=['saxs_det'], num=1) #477: SAXS(detectors=['saxs_det'], num=1) #478: SAXS(detectors=['saxs_det'], num=1) #479: SAXS(detectors=['saxs_det'], num=1) #480: WAXS(detectors=['waxs_det'], num=1) #481: WAXS(detectors=['waxs_det'], num=1) #482: WAXS(detectors=['waxs_det'], num=1) #483: WAXS(detectors=['waxs_det'], num=1) #484: WAXS(detectors=['waxs_det'], num=1) #485: WAXS(detectors=['waxs_det'], num=1) #486: WAXS(detectors=['waxs_det'], num=1) #487: WAXS(detectors=['waxs_det'], num=1) #488: WAXS(detectors=['waxs_det'], num=1) #489: WAXS(detectors=['waxs_det'], num=1) #490: WAXS(detectors=['waxs_det'], num=1) #491: WAXS(detectors=['waxs_det'], num=1) #492: WAXS(detectors=['waxs_det'], num=1) #493: WAXS(detectors=['waxs_det'], num=1) #494: WAXS(detectors=['waxs_det'], num=1) #495: WAXS(detectors=['waxs_det'], num=1) #496: WAXS(detectors=['waxs_det'], num=1) #497: WAXS(detectors=['waxs_det'], num=1) #498: WAXS(detectors=['waxs_det'], num=1) #499: WAXS(detectors=['waxs_det'], num=1) #500: WAXS(detectors=['waxs_det'], num=1) #501: WAXS(detectors=['waxs_det'], num=1) #502: WAXS(detectors=['waxs_det'], num=1) #503: WAXS(detectors=['waxs_det'], num=1) #504: WAXS(detectors=['waxs_det'], num=1) #505: WAXS(detectors=['waxs_det'], num=1) #506: WAXS(detectors=['waxs_det'], num=1) #507: WAXS(detectors=['waxs_det'], num=1) #508: WAXS(detectors=['waxs_det'], num=1) #509: WAXS(detectors=['waxs_det'], num=1) #510: WAXS(detectors=['waxs_det'], num=1) #511: WAXS(detectors=['waxs_det'], num=1) #512: WAXS(detectors=['waxs_det'], num=1) #513: WAXS(detectors=['waxs_det'], num=1) #514: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.57979216238651, 45.57979216238651]', per_step='None') #515: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843883964612067, 8.845683964612066]', per_step='None') #516: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.65279216238651, 45.65279216238651]', per_step='None') #517: uascan(start=8.84585489715825, reference=8.844778131440766, finish=7.229576071745625, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #518: uascan(start=8.84585489715825, reference=8.844778131440766, finish=7.229576071745625, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #519: uascan(start=8.84585489715825, reference=8.844778131440766, finish=7.229576071745625, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #520: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.62159216238651, 45.62159216238651]', per_step='None') #521: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843878131440766, 8.845678131440765]', per_step='None') #522: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.366492162386514, 45.366492162386514]', per_step='None') #523: uascan(start=8.845859619249302, reference=8.844782853531818, finish=7.229580793836678, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #524: uascan(start=8.845859619249302, reference=8.844782853531818, finish=7.229580793836678, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #525: uascan(start=8.845859619249302, reference=8.844782853531818, finish=7.229580793836678, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #526: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.37779216238651, 45.37779216238651]', per_step='None') #527: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843882297991694, 8.845682297991694]', per_step='None') #528: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.346592162386514, 45.346592162386514]', per_step='None') #529: uascan(start=8.845863508030169, reference=8.844786742312685, finish=7.229584682617545, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #530: uascan(start=8.845863508030169, reference=8.844786742312685, finish=7.229584682617545, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #531: uascan(start=8.845863508030169, reference=8.844786742312685, finish=7.229584682617545, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #532: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.385592162386516, 45.385592162386516]', per_step='None') #533: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843889242243243, 8.845689242243242]', per_step='None') #534: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.242392162386516, 45.242392162386516]', per_step='None') #535: uascan(start=8.845869063431408, reference=8.844792297713925, finish=7.229590238018784, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #536: uascan(start=8.845869063431408, reference=8.844792297713925, finish=7.229590238018784, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #537: uascan(start=8.845869063431408, reference=8.844792297713925, finish=7.229590238018784, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #538: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.24079216238651, 45.24079216238651]', per_step='None') #539: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843892575483986, 8.845692575483985]', per_step='None') #540: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.25919216238651, 45.25919216238651]', per_step='None') #541: uascan(start=8.845877674303328, reference=8.844800908585844, finish=7.229598848890704, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #542: uascan(start=8.845877674303328, reference=8.844800908585844, finish=7.229598848890704, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #543: uascan(start=8.845877674303328, reference=8.844800908585844, finish=7.229598848890704, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #544: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.22799216238651, 45.22799216238651]', per_step='None') #545: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843901186355907, 8.845701186355907]', per_step='None') #546: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.227192162386515, 45.227192162386515]', per_step='None') #547: uascan(start=8.845876563223081, reference=8.844799797505598, finish=7.229597737810457, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #548: uascan(start=8.845876563223081, reference=8.844799797505598, finish=7.229597737810457, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #549: uascan(start=8.845876563223081, reference=8.844799797505598, finish=7.229597737810457, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #550: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.179892162386516, 45.179892162386516]', per_step='None') #551: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843899241965474, 8.845699241965473]', per_step='None') #552: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.056992162386514, 45.056992162386514]', per_step='None') #553: uascan(start=8.845891285036364, reference=8.84481451931888, finish=7.22961245962374, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #554: uascan(start=8.845891285036364, reference=8.84481451931888, finish=7.22961245962374, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #555: uascan(start=8.845891285036364, reference=8.84481451931888, finish=7.22961245962374, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #556: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.053192162386516, 45.053192162386516]', per_step='None') #557: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84391590816919, 8.84571590816919]', per_step='None') #558: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.05629216238651, 45.05629216238651]', per_step='None') #559: uascan(start=8.845886285175249, reference=8.844809519457765, finish=7.229607459762625, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #560: uascan(start=8.845886285175249, reference=8.844809519457765, finish=7.229607459762625, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #561: uascan(start=8.845886285175249, reference=8.844809519457765, finish=7.229607459762625, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #562: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.042692162386516, 45.042692162386516]', per_step='None') #563: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843909241687703, 8.845709241687702]', per_step='None') #564: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.847492162386516, 44.847492162386516]', per_step='None') #565: uascan(start=8.84589961813822, reference=8.844822852420737, finish=7.229620792725597, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #566: uascan(start=8.84589961813822, reference=8.844822852420737, finish=7.229620792725597, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #567: uascan(start=8.84589961813822, reference=8.844822852420737, finish=7.229620792725597, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #568: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.79489216238651, 44.79489216238651]', per_step='None') #569: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843922296880615, 8.845722296880615]', per_step='None') #570: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.879192162386516, 44.879192162386516]', per_step='None') #571: uascan(start=8.845892951656735, reference=8.844816185939251, finish=7.229614126244111, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #572: uascan(start=8.845892951656735, reference=8.844816185939251, finish=7.229614126244111, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #573: uascan(start=8.845892951656735, reference=8.844816185939251, finish=7.229614126244111, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #574: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.88119216238651, 44.88119216238651]', per_step='None') #575: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84391590816919, 8.84571590816919]', per_step='None') #576: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.60399216238651, 44.60399216238651]', per_step='None') #577: uascan(start=8.845907951240081, reference=8.844831185522597, finish=7.229629125827457, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #578: uascan(start=8.845907951240081, reference=8.844831185522597, finish=7.229629125827457, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #579: uascan(start=8.845907951240081, reference=8.844831185522597, finish=7.229629125827457, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #580: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.533492162386516, 44.533492162386516]', per_step='None') #581: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843932574372907, 8.845732574372906]', per_step='None') #582: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.44839216238651, 44.44839216238651]', per_step='None') #583: uascan(start=8.84591933981262, reference=8.844842574095136, finish=7.229640514399995, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #584: SAXS(detectors=['saxs_det'], num=1) #585: SAXS(detectors=['saxs_det'], num=1) #586: SAXS(detectors=['saxs_det'], num=1) #587: SAXS(detectors=['saxs_det'], num=1) #588: SAXS(detectors=['saxs_det'], num=1) #589: SAXS(detectors=['saxs_det'], num=1) #590: SAXS(detectors=['saxs_det'], num=1) #591: SAXS(detectors=['saxs_det'], num=1) #592: SAXS(detectors=['saxs_det'], num=1) #593: SAXS(detectors=['saxs_det'], num=1) #594: SAXS(detectors=['saxs_det'], num=1) #595: SAXS(detectors=['saxs_det'], num=1) #596: SAXS(detectors=['saxs_det'], num=1) #597: SAXS(detectors=['saxs_det'], num=1) #598: SAXS(detectors=['saxs_det'], num=1) #599: SAXS(detectors=['saxs_det'], num=1) #600: SAXS(detectors=['saxs_det'], num=1) #601: SAXS(detectors=['saxs_det'], num=1) #602: SAXS(detectors=['saxs_det'], num=1) #603: SAXS(detectors=['saxs_det'], num=1) #604: SAXS(detectors=['saxs_det'], num=1) #605: SAXS(detectors=['saxs_det'], num=1) #606: SAXS(detectors=['saxs_det'], num=1) #607: SAXS(detectors=['saxs_det'], num=1) #608: SAXS(detectors=['saxs_det'], num=1) #609: SAXS(detectors=['saxs_det'], num=1) #610: SAXS(detectors=['saxs_det'], num=1) #611: SAXS(detectors=['saxs_det'], num=1) #612: SAXS(detectors=['saxs_det'], num=1) #613: SAXS(detectors=['saxs_det'], num=1) #614: SAXS(detectors=['saxs_det'], num=1) #615: SAXS(detectors=['saxs_det'], num=1) #616: SAXS(detectors=['saxs_det'], num=1) #617: SAXS(detectors=['saxs_det'], num=1) #618: WAXS(detectors=['waxs_det'], num=1) #619: WAXS(detectors=['waxs_det'], num=1) #620: WAXS(detectors=['waxs_det'], num=1) #621: WAXS(detectors=['waxs_det'], num=1) #622: WAXS(detectors=['waxs_det'], num=1) #623: WAXS(detectors=['waxs_det'], num=1) #624: WAXS(detectors=['waxs_det'], num=1) #625: WAXS(detectors=['waxs_det'], num=1) #626: WAXS(detectors=['waxs_det'], num=1) #627: WAXS(detectors=['waxs_det'], num=1) #628: WAXS(detectors=['waxs_det'], num=1) #629: WAXS(detectors=['waxs_det'], num=1) #630: WAXS(detectors=['waxs_det'], num=1) #631: WAXS(detectors=['waxs_det'], num=1) #632: WAXS(detectors=['waxs_det'], num=1) #633: WAXS(detectors=['waxs_det'], num=1) #634: WAXS(detectors=['waxs_det'], num=1) #635: WAXS(detectors=['waxs_det'], num=1) #636: WAXS(detectors=['waxs_det'], num=1) #637: WAXS(detectors=['waxs_det'], num=1) #638: WAXS(detectors=['waxs_det'], num=1) #639: WAXS(detectors=['waxs_det'], num=1) #640: WAXS(detectors=['waxs_det'], num=1) #641: WAXS(detectors=['waxs_det'], num=1) #642: WAXS(detectors=['waxs_det'], num=1) #643: WAXS(detectors=['waxs_det'], num=1) #644: WAXS(detectors=['waxs_det'], num=1) #645: WAXS(detectors=['waxs_det'], num=1) #646: WAXS(detectors=['waxs_det'], num=1) #647: WAXS(detectors=['waxs_det'], num=1) #648: WAXS(detectors=['waxs_det'], num=1) #649: WAXS(detectors=['waxs_det'], num=1) #650: WAXS(detectors=['waxs_det'], num=1) #651: WAXS(detectors=['waxs_det'], num=1) #652: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.48539216238651, 44.48539216238651]', per_step='None') #653: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84394174078495, 8.84574174078495]', per_step='None') #654: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.32719216238652, 44.32719216238652]', per_step='None') #655: uascan(start=8.84592517298392, reference=8.844848407266436, finish=7.229646347571296, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #656: uascan(start=8.84592517298392, reference=8.844848407266436, finish=7.229646347571296, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #657: uascan(start=8.84592517298392, reference=8.844848407266436, finish=7.229646347571296, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #658: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.390692162386514, 44.390692162386514]', per_step='None') #659: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843947573956251, 8.84574757395625]', per_step='None') #660: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.05579216238652, 45.05579216238652]', per_step='None') #661: uascan(start=8.845904340229275, reference=8.844827574511791, finish=7.229625514816651, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #662: uascan(start=8.845904340229275, reference=8.844827574511791, finish=7.229625514816651, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #663: uascan(start=8.845904340229275, reference=8.844827574511791, finish=7.229625514816651, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #664: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.02629216238651, 45.02629216238651]', per_step='None') #665: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843927296741729, 8.845727296741728]', per_step='None') #666: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.61679216238652, 44.61679216238652]', per_step='None') #667: uascan(start=8.845905729079584, reference=8.844828963362101, finish=7.2296269036669605, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #668: uascan(start=8.845905729079584, reference=8.844828963362101, finish=7.2296269036669605, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #669: uascan(start=8.845905729079584, reference=8.844828963362101, finish=7.2296269036669605, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #670: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.668492162386514, 44.668492162386514]', per_step='None') #671: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843927574511792, 8.845727574511791]', per_step='None') #672: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 31.97899216238651, 43.97899216238651]', per_step='None') #673: uascan(start=8.84591795096231, reference=8.844841185244826, finish=7.229639125549686, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #674: uascan(start=8.84591795096231, reference=8.844841185244826, finish=7.229639125549686, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #675: uascan(start=8.84591795096231, reference=8.844841185244826, finish=7.229639125549686, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #676: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 31.952992162386515, 43.952992162386515]', per_step='None') #677: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843939518624454, 8.845739518624454]', per_step='None') #678: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.10909216238652, 45.10909216238652]', per_step='None') #679: uascan(start=8.84590350691909, reference=8.844826741201606, finish=7.229624681506466, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #680: uascan(start=8.84590350691909, reference=8.844826741201606, finish=7.229624681506466, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #681: uascan(start=8.84590350691909, reference=8.844826741201606, finish=7.229624681506466, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #682: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.050992162386514, 45.050992162386514]', per_step='None') #683: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843928407821977, 8.845728407821976]', per_step='None') #684: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.162792162386516, 45.162792162386516]', per_step='None') #685: uascan(start=8.845895729357354, reference=8.84481896363987, finish=7.22961690394473, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #686: uascan(start=8.845895729357354, reference=8.84481896363987, finish=7.22961690394473, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #687: uascan(start=8.845895729357354, reference=8.84481896363987, finish=7.22961690394473, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #688: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.12729216238652, 45.12729216238652]', per_step='None') #689: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84391868586981, 8.845718685869809]', per_step='None') #690: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.63799216238652, 45.63799216238652]', per_step='None') #691: uascan(start=8.845872674442214, reference=8.84479590872473, finish=7.22959384902959, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #692: uascan(start=8.845872674442214, reference=8.84479590872473, finish=7.22959384902959, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #693: uascan(start=8.845872674442214, reference=8.84479590872473, finish=7.22959384902959, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #694: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.674992162386516, 45.674992162386516]', per_step='None') #695: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843895075414544, 8.845695075414543]', per_step='None') #696: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.53469216238651, 46.53469216238651]', per_step='None') #697: uascan(start=8.84584628628633, reference=8.844769520568846, finish=7.229567460873706, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #698: uascan(start=8.84584628628633, reference=8.844769520568846, finish=7.229567460873706, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #699: uascan(start=8.84584628628633, reference=8.844769520568846, finish=7.229567460873706, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #700: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.463892162386514, 46.463892162386514]', per_step='None') #701: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843868965028722, 8.845668965028722]', per_step='None') #702: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.50699216238652, 46.50699216238652]', per_step='None') #703: uascan(start=8.845827120152055, reference=8.844750354434572, finish=7.229548294739431, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #704: uascan(start=8.845827120152055, reference=8.844750354434572, finish=7.229548294739431, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #705: uascan(start=8.845827120152055, reference=8.844750354434572, finish=7.229548294739431, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #706: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.522592162386516, 46.522592162386516]', per_step='None') #707: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843850909974696, 8.845650909974696]', per_step='None') #708: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.02949216238651, 47.02949216238651]', per_step='None') #709: uascan(start=8.845802398616541, reference=8.844725632899058, finish=7.229523573203918, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #710: uascan(start=8.845802398616541, reference=8.844725632899058, finish=7.229523573203918, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #711: uascan(start=8.845802398616541, reference=8.844725632899058, finish=7.229523573203918, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #712: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.04109216238651, 47.04109216238651]', per_step='None') #713: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843824244048749, 8.845624244048748]', per_step='None') #714: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.323892162386514, 47.323892162386514]', per_step='None') #715: uascan(start=8.845789898963755, reference=8.844713133246271, finish=7.229511073551131, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #716: uascan(start=8.845789898963755, reference=8.844713133246271, finish=7.229511073551131, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #717: uascan(start=8.845789898963755, reference=8.844713133246271, finish=7.229511073551131, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #718: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.19499216238651, 47.19499216238651]', per_step='None') #719: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843813688786396, 8.845613688786395]', per_step='None') #720: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.271292162386516, 47.271292162386516]', per_step='None') #721: uascan(start=8.84577767708103, reference=8.844700911363546, finish=7.229498851668406, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #722: uascan(start=8.84577767708103, reference=8.844700911363546, finish=7.229498851668406, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #723: uascan(start=8.84577767708103, reference=8.844700911363546, finish=7.229498851668406, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #724: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.21589216238652, 47.21589216238652]', per_step='None') #725: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843799522513235, 8.845599522513234]', per_step='None') #726: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.67569216238651, 47.67569216238651]', per_step='None') #727: uascan(start=8.84575906648688, reference=8.844682300769396, finish=7.229480241074255, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #728: uascan(start=8.84575906648688, reference=8.844682300769396, finish=7.229480241074255, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #729: uascan(start=8.84575906648688, reference=8.844682300769396, finish=7.229480241074255, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #730: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.675392162386515, 47.675392162386515]', per_step='None') #731: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843781745229272, 8.845581745229271]', per_step='None') #732: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.31889216238651, 47.31889216238651]', per_step='None') #733: uascan(start=8.845801565306356, reference=8.844724799588873, finish=7.229522739893732, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #734: uascan(start=8.845801565306356, reference=8.844724799588873, finish=7.229522739893732, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #735: uascan(start=8.845801565306356, reference=8.844724799588873, finish=7.229522739893732, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #736: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 34.79839216238651, 46.79839216238651]', per_step='None') #737: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84382452181881, 8.84562452181881]', per_step='None') #738: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.672392162386515, 47.672392162386515]', per_step='None') #739: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #740: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #741: uascan(start=8.845775454920533, reference=8.84469868920305, finish=7.229496629507909, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #742: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.768092162386516, 47.768092162386516]', per_step='None') #743: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843797855892864, 8.845597855892864]', per_step='None') #744: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.82959216238651, 47.82959216238651]', per_step='None') #745: uascan(start=8.845756288786259, reference=8.844679523068775, finish=7.229477463373635, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #746: uascan(start=8.845756288786259, reference=8.844679523068775, finish=7.229477463373635, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #747: uascan(start=8.845756288786259, reference=8.844679523068775, finish=7.229477463373635, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #748: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.80689216238651, 47.80689216238651]', per_step='None') #749: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843778411988529, 8.845578411988528]', per_step='None') #750: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.65279216238651, 47.65279216238651]', per_step='None') #751: uascan(start=8.84576628850849, reference=8.844689522791006, finish=7.229487463095865, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #752: uascan(start=8.84576628850849, reference=8.844689522791006, finish=7.229487463095865, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #753: uascan(start=8.84576628850849, reference=8.844689522791006, finish=7.229487463095865, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #754: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 35.47299216238651, 47.47299216238651]', per_step='None') #755: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843790633871254, 8.845590633871254]', per_step='None') #756: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.411492162386516, 48.411492162386516]', per_step='None') #757: uascan(start=8.845745177983781, reference=8.844668412266298, finish=7.2294663525711576, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #758: uascan(start=8.845745177983781, reference=8.844668412266298, finish=7.2294663525711576, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #759: uascan(start=8.845745177983781, reference=8.844668412266298, finish=7.2294663525711576, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #760: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.43469216238651, 48.43469216238651]', per_step='None') #761: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843767578956113, 8.845567578956112]', per_step='None') #762: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.662292162386514, 48.662292162386514]', per_step='None') #763: uascan(start=8.845722400838703, reference=8.84464563512122, finish=7.229443575426079, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #764: uascan(start=8.845722400838703, reference=8.84464563512122, finish=7.229443575426079, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #765: uascan(start=8.845722400838703, reference=8.84464563512122, finish=7.229443575426079, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #766: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.68399216238652, 48.68399216238652]', per_step='None') #767: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843743968500847, 8.845543968500847]', per_step='None') #768: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.66409216238652, 48.66409216238652]', per_step='None') #769: uascan(start=8.845716012127278, reference=8.844639246409795, finish=7.229437186714654, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #770: uascan(start=8.845716012127278, reference=8.844639246409795, finish=7.229437186714654, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #771: uascan(start=8.845716012127278, reference=8.844639246409795, finish=7.229437186714654, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #772: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.62479216238651, 48.62479216238651]', per_step='None') #773: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843738968639732, 8.845538968639731]', per_step='None') #774: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.66989216238652, 48.66989216238652]', per_step='None') #775: uascan(start=8.845711845576348, reference=8.844635079858865, finish=7.229433020163724, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #776: uascan(start=8.845711845576348, reference=8.844635079858865, finish=7.229433020163724, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #777: uascan(start=8.845711845576348, reference=8.844635079858865, finish=7.229433020163724, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #778: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.615492162386516, 48.615492162386516]', per_step='None') #779: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84373452431874, 8.84553452431874]', per_step='None') #780: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.74119216238651, 48.74119216238651]', per_step='None') #781: uascan(start=8.845712956656596, reference=8.844636190939113, finish=7.2294341312439725, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #782: uascan(start=8.845712956656596, reference=8.844636190939113, finish=7.2294341312439725, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #783: uascan(start=8.845712956656596, reference=8.844636190939113, finish=7.2294341312439725, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #784: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.73889216238651, 48.73889216238651]', per_step='None') #785: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84373452431874, 8.84553452431874]', per_step='None') #786: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.905292162386516, 48.905292162386516]', per_step='None') #787: uascan(start=8.845707956795481, reference=8.844631191077998, finish=7.229429131382857, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #788: uascan(start=8.845707956795481, reference=8.844631191077998, finish=7.229429131382857, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #789: uascan(start=8.845707956795481, reference=8.844631191077998, finish=7.229429131382857, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #790: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.91239216238652, 48.91239216238652]', per_step='None') #791: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84373007999775, 8.845530079997749]', per_step='None') #792: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.31099216238651, 49.31099216238651]', per_step='None') #793: uascan(start=8.845688235121083, reference=8.844611469403599, finish=7.229409409708459, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #794: uascan(start=8.845688235121083, reference=8.844611469403599, finish=7.229409409708459, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #795: uascan(start=8.845688235121083, reference=8.844611469403599, finish=7.229409409708459, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #796: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.382992162386515, 49.382992162386515]', per_step='None') #797: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843709802783229, 8.845509802783228]', per_step='None') #798: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.191192162386514, 49.191192162386514]', per_step='None') #799: uascan(start=8.845692957212137, reference=8.844616191494653, finish=7.229414131799513, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #800: uascan(start=8.845692957212137, reference=8.844616191494653, finish=7.229414131799513, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #801: uascan(start=8.845692957212137, reference=8.844616191494653, finish=7.229414131799513, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #802: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.20119216238651, 49.20119216238651]', per_step='None') #803: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843716469264715, 8.845516469264714]', per_step='None') #804: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.41879216238652, 49.41879216238652]', per_step='None') #805: uascan(start=8.845692957212137, reference=8.844616191494653, finish=7.229414131799513, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #806: uascan(start=8.845692957212137, reference=8.844616191494653, finish=7.229414131799513, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #807: uascan(start=8.845692957212137, reference=8.844616191494653, finish=7.229414131799513, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #808: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.455592162386516, 49.455592162386516]', per_step='None') #809: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.8437173025749, 8.8455173025749]', per_step='None') #810: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.81159216238652, 49.81159216238652]', per_step='None') #811: SAXS(detectors=['saxs_det'], num=1) #812: SAXS(detectors=['saxs_det'], num=1) #813: SAXS(detectors=['saxs_det'], num=1) #814: SAXS(detectors=['saxs_det'], num=1) #815: SAXS(detectors=['saxs_det'], num=1) #816: SAXS(detectors=['saxs_det'], num=1) #817: SAXS(detectors=['saxs_det'], num=1) #818: SAXS(detectors=['saxs_det'], num=1) #819: SAXS(detectors=['saxs_det'], num=1) #820: SAXS(detectors=['saxs_det'], num=1) #821: SAXS(detectors=['saxs_det'], num=1) #822: SAXS(detectors=['saxs_det'], num=1) #823: SAXS(detectors=['saxs_det'], num=1) #824: SAXS(detectors=['saxs_det'], num=1) #825: SAXS(detectors=['saxs_det'], num=1) #826: SAXS(detectors=['saxs_det'], num=1) #827: SAXS(detectors=['saxs_det'], num=1) #828: SAXS(detectors=['saxs_det'], num=1) #829: SAXS(detectors=['saxs_det'], num=1) #830: SAXS(detectors=['saxs_det'], num=1) #831: SAXS(detectors=['saxs_det'], num=1) #832: SAXS(detectors=['saxs_det'], num=1) #833: SAXS(detectors=['saxs_det'], num=1) #834: SAXS(detectors=['saxs_det'], num=1) #835: SAXS(detectors=['saxs_det'], num=1) #836: SAXS(detectors=['saxs_det'], 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num=1) #884: SAXS(detectors=['saxs_det'], num=1) #885: SAXS(detectors=['saxs_det'], num=1) #886: SAXS(detectors=['saxs_det'], num=1) #887: SAXS(detectors=['saxs_det'], num=1) #888: SAXS(detectors=['saxs_det'], num=1) #889: WAXS(detectors=['waxs_det'], num=1) #890: WAXS(detectors=['waxs_det'], num=1) #891: WAXS(detectors=['waxs_det'], num=1) #892: WAXS(detectors=['waxs_det'], num=1) #893: WAXS(detectors=['waxs_det'], num=1) no plot: #894 WAXS(detectors=['waxs_det'], num=1) #895: WAXS(detectors=['waxs_det'], num=1) #896: WAXS(detectors=['waxs_det'], num=1) #897: WAXS(detectors=['waxs_det'], num=1) #898: WAXS(detectors=['waxs_det'], num=1) #899: WAXS(detectors=['waxs_det'], num=1) #900: WAXS(detectors=['waxs_det'], num=1) #901: WAXS(detectors=['waxs_det'], num=1) #902: WAXS(detectors=['waxs_det'], num=1) #903: WAXS(detectors=['waxs_det'], num=1) #904: WAXS(detectors=['waxs_det'], num=1) #905: WAXS(detectors=['waxs_det'], num=1) #906: WAXS(detectors=['waxs_det'], num=1) #907: WAXS(detectors=['waxs_det'], num=1) #908: WAXS(detectors=['waxs_det'], num=1) #909: WAXS(detectors=['waxs_det'], num=1) #910: WAXS(detectors=['waxs_det'], num=1) #911: WAXS(detectors=['waxs_det'], num=1) #912: WAXS(detectors=['waxs_det'], num=1) #913: WAXS(detectors=['waxs_det'], num=1) #914: WAXS(detectors=['waxs_det'], num=1) #915: WAXS(detectors=['waxs_det'], num=1) #916: WAXS(detectors=['waxs_det'], num=1) #917: WAXS(detectors=['waxs_det'], num=1) #918: WAXS(detectors=['waxs_det'], num=1) #919: WAXS(detectors=['waxs_det'], num=1) #920: WAXS(detectors=['waxs_det'], num=1) #921: WAXS(detectors=['waxs_det'], num=1) #922: WAXS(detectors=['waxs_det'], num=1) #923: WAXS(detectors=['waxs_det'], num=1) #924: WAXS(detectors=['waxs_det'], num=1) #925: WAXS(detectors=['waxs_det'], num=1) #926: WAXS(detectors=['waxs_det'], num=1) #927: WAXS(detectors=['waxs_det'], num=1) #928: WAXS(detectors=['waxs_det'], num=1) #929: WAXS(detectors=['waxs_det'], num=1) #930: WAXS(detectors=['waxs_det'], num=1) #931: WAXS(detectors=['waxs_det'], num=1) #932: WAXS(detectors=['waxs_det'], num=1) #933: WAXS(detectors=['waxs_det'], num=1) #934: WAXS(detectors=['waxs_det'], num=1) #935: WAXS(detectors=['waxs_det'], num=1) #936: WAXS(detectors=['waxs_det'], num=1) #937: WAXS(detectors=['waxs_det'], num=1) #938: WAXS(detectors=['waxs_det'], num=1) #939: WAXS(detectors=['waxs_det'], num=1) #940: WAXS(detectors=['waxs_det'], num=1) #941: WAXS(detectors=['waxs_det'], num=1) #942: WAXS(detectors=['waxs_det'], num=1) #943: WAXS(detectors=['waxs_det'], num=1) #944: WAXS(detectors=['waxs_det'], num=1) #945: WAXS(detectors=['waxs_det'], num=1) #946: WAXS(detectors=['waxs_det'], num=1) #947: WAXS(detectors=['waxs_det'], num=1) #948: WAXS(detectors=['waxs_det'], num=1) #949: WAXS(detectors=['waxs_det'], num=1) #950: WAXS(detectors=['waxs_det'], num=1) #951: WAXS(detectors=['waxs_det'], num=1) #952: WAXS(detectors=['waxs_det'], num=1) #953: WAXS(detectors=['waxs_det'], num=1) #954: WAXS(detectors=['waxs_det'], num=1) #955: WAXS(detectors=['waxs_det'], num=1) #956: WAXS(detectors=['waxs_det'], num=1) #957: WAXS(detectors=['waxs_det'], num=1) #958: WAXS(detectors=['waxs_det'], num=1) #959: WAXS(detectors=['waxs_det'], num=1) #960: WAXS(detectors=['waxs_det'], num=1) #961: WAXS(detectors=['waxs_det'], num=1) #962: WAXS(detectors=['waxs_det'], num=1) #963: WAXS(detectors=['waxs_det'], num=1) #964: WAXS(detectors=['waxs_det'], num=1) #965: WAXS(detectors=['waxs_det'], num=1) #966: WAXS(detectors=['waxs_det'], num=1) #967: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.80839216238651, 49.80839216238651]', per_step='None') #968: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843716191494654, 8.845516191494653]', per_step='None') #969: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.009292162386515, 50.009292162386515]', per_step='None') #970: uascan(start=8.84567073560718, reference=8.844593969889697, finish=7.229391910194557, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #971: uascan(start=8.84567073560718, reference=8.844593969889697, finish=7.229391910194557, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #972: uascan(start=8.84567073560718, reference=8.844593969889697, finish=7.229391910194557, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #973: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.97709216238651, 49.97709216238651]', per_step='None') #974: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843693136579512, 8.845493136579512]', per_step='None') #975: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.960692162386515, 49.960692162386515]', per_step='None') #976: uascan(start=8.8456735133078, reference=8.844596747590316, finish=7.229394687895176, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #977: uascan(start=8.8456735133078, reference=8.844596747590316, finish=7.229394687895176, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #978: uascan(start=8.8456735133078, reference=8.844596747590316, finish=7.229394687895176, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #979: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.907792162386514, 49.907792162386514]', per_step='None') #980: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84369563651007, 8.84549563651007]', per_step='None') #981: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.080092162386514, 50.080092162386514]', per_step='None') #982: uascan(start=8.845682679719845, reference=8.844605914002361, finish=7.229403854307221, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #983: uascan(start=8.845682679719845, reference=8.844605914002361, finish=7.229403854307221, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #984: uascan(start=8.845682679719845, reference=8.844605914002361, finish=7.229403854307221, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #985: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.107292162386514, 50.107292162386514]', per_step='None') #986: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843705080692175, 8.845505080692174]', per_step='None') #987: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.98459216238651, 49.98459216238651]', per_step='None') #988: uascan(start=8.845686846270773, reference=8.84461008055329, finish=7.229408020858149, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #989: uascan(start=8.845686846270773, reference=8.84461008055329, finish=7.229408020858149, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #990: uascan(start=8.845686846270773, reference=8.84461008055329, finish=7.229408020858149, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #991: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.940592162386515, 49.940592162386515]', per_step='None') #992: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843709247243105, 8.845509247243104]', per_step='None') #993: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.18409216238651, 50.18409216238651]', per_step='None') #994: uascan(start=8.845676846548544, reference=8.84460008083106, finish=7.22939802113592, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #995: uascan(start=8.845676846548544, reference=8.84460008083106, finish=7.22939802113592, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #996: uascan(start=8.845676846548544, reference=8.84460008083106, finish=7.22939802113592, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #997: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.168492162386514, 50.168492162386514]', per_step='None') #998: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84370146968137, 8.84550146968137]', per_step='None') #999: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.225892162386515, 50.225892162386515]', per_step='None') #1000: uascan(start=8.84566351358557, reference=8.844586747868087, finish=7.229384688172947, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1001: uascan(start=8.84566351358557, reference=8.844586747868087, finish=7.229384688172947, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1002: uascan(start=8.84566351358557, reference=8.844586747868087, finish=7.229384688172947, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1003: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.21099216238652, 50.21099216238652]', per_step='None') #1004: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843688136718397, 8.845488136718396]', per_step='None') #1005: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.31249216238651, 50.31249216238651]', per_step='None') #1006: uascan(start=8.84566629128619, reference=8.844589525568706, finish=7.2293874658735655, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1007: uascan(start=8.84566629128619, reference=8.844589525568706, finish=7.2293874658735655, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1008: uascan(start=8.84566629128619, reference=8.844589525568706, finish=7.2293874658735655, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1009: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.283292162386516, 50.283292162386516]', per_step='None') #1010: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843689247798645, 8.845489247798644]', per_step='None') #1011: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.29359216238652, 50.29359216238652]', per_step='None') #1012: uascan(start=8.845656013793898, reference=8.844579248076414, finish=7.229377188381274, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1013: uascan(start=8.845656013793898, reference=8.844579248076414, finish=7.229377188381274, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1014: uascan(start=8.845656013793898, reference=8.844579248076414, finish=7.229377188381274, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1015: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.31479216238652, 50.31479216238652]', per_step='None') #1016: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843680359156663, 8.845480359156662]', per_step='None') #1017: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.318792162386515, 50.318792162386515]', per_step='None') #1018: uascan(start=8.845662680275385, reference=8.844585914557902, finish=7.229383854862761, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1019: uascan(start=8.845662680275385, reference=8.844585914557902, finish=7.229383854862761, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1020: uascan(start=8.845662680275385, reference=8.844585914557902, finish=7.229383854862761, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1021: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.287792162386516, 50.287792162386516]', per_step='None') #1022: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843683692397406, 8.845483692397405]', per_step='None') #1023: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.503092162386515, 50.503092162386515]', per_step='None') #1024: uascan(start=8.845649625082473, reference=8.84457285936499, finish=7.229370799669849, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1025: uascan(start=8.845649625082473, reference=8.84457285936499, finish=7.229370799669849, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1026: uascan(start=8.845649625082473, reference=8.84457285936499, finish=7.229370799669849, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) no plot: #1027 tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.516992162386515, 50.516992162386515]', per_step='None') #1028: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843673970445238, 8.845473970445237]', per_step='None') #1029: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.48929216238651, 50.48929216238651]', per_step='None') #1030: uascan(start=8.845642958600987, reference=8.844566192883503, finish=7.229364133188363, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1031: uascan(start=8.845642958600987, reference=8.844566192883503, finish=7.229364133188363, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1032: uascan(start=8.845642958600987, reference=8.844566192883503, finish=7.229364133188363, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1033: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.52759216238651, 50.52759216238651]', per_step='None') #1034: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84366563734338, 8.845465637343379]', per_step='None') #1035: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.58879216238651, 50.58879216238651]', per_step='None') #1036: uascan(start=8.845641014210553, reference=8.84456424849307, finish=7.229362188797929, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1037: SAXS(detectors=['saxs_det'], num=1) #1038: SAXS(detectors=['saxs_det'], num=1) #1039: SAXS(detectors=['saxs_det'], num=1) #1040: SAXS(detectors=['saxs_det'], num=1) #1041: SAXS(detectors=['saxs_det'], num=1) #1042: SAXS(detectors=['saxs_det'], num=1) #1043: SAXS(detectors=['saxs_det'], num=1) #1044: SAXS(detectors=['saxs_det'], num=1) #1045: SAXS(detectors=['saxs_det'], num=1) #1046: SAXS(detectors=['saxs_det'], num=1) #1047: SAXS(detectors=['saxs_det'], num=1) #1048: SAXS(detectors=['saxs_det'], num=1) #1049: SAXS(detectors=['saxs_det'], num=1) #1050: SAXS(detectors=['saxs_det'], num=1) #1051: SAXS(detectors=['saxs_det'], num=1) #1052: SAXS(detectors=['saxs_det'], num=1) #1053: SAXS(detectors=['saxs_det'], num=1) #1054: SAXS(detectors=['saxs_det'], num=1) #1055: SAXS(detectors=['saxs_det'], num=1) #1056: SAXS(detectors=['saxs_det'], num=1) #1057: SAXS(detectors=['saxs_det'], num=1) #1058: SAXS(detectors=['saxs_det'], num=1) #1059: SAXS(detectors=['saxs_det'], num=1) #1060: SAXS(detectors=['saxs_det'], num=1) #1061: SAXS(detectors=['saxs_det'], num=1) #1062: SAXS(detectors=['saxs_det'], num=1) #1063: SAXS(detectors=['saxs_det'], num=1) #1064: SAXS(detectors=['saxs_det'], num=1) #1065: SAXS(detectors=['saxs_det'], num=1) #1066: SAXS(detectors=['saxs_det'], num=1) #1067: SAXS(detectors=['saxs_det'], num=1) #1068: SAXS(detectors=['saxs_det'], num=1) #1069: SAXS(detectors=['saxs_det'], num=1) #1070: SAXS(detectors=['saxs_det'], num=1) #1071: WAXS(detectors=['waxs_det'], num=1) #1072: WAXS(detectors=['waxs_det'], num=1) #1073: WAXS(detectors=['waxs_det'], num=1) #1074: WAXS(detectors=['waxs_det'], num=1) #1075: WAXS(detectors=['waxs_det'], num=1) #1076: WAXS(detectors=['waxs_det'], num=1) #1077: WAXS(detectors=['waxs_det'], num=1) #1078: WAXS(detectors=['waxs_det'], num=1) #1079: WAXS(detectors=['waxs_det'], num=1) #1080: WAXS(detectors=['waxs_det'], num=1) #1081: WAXS(detectors=['waxs_det'], num=1) #1082: WAXS(detectors=['waxs_det'], num=1) #1083: WAXS(detectors=['waxs_det'], num=1) #1084: WAXS(detectors=['waxs_det'], num=1) #1085: WAXS(detectors=['waxs_det'], num=1) #1086: WAXS(detectors=['waxs_det'], num=1) #1087: WAXS(detectors=['waxs_det'], num=1) #1088: WAXS(detectors=['waxs_det'], num=1) #1089: WAXS(detectors=['waxs_det'], num=1) no plot: #1090 WAXS(detectors=['waxs_det'], num=1) #1091: WAXS(detectors=['waxs_det'], num=1) #1092: WAXS(detectors=['waxs_det'], num=1) #1093: WAXS(detectors=['waxs_det'], num=1) #1094: WAXS(detectors=['waxs_det'], num=1) #1095: WAXS(detectors=['waxs_det'], num=1) #1096: WAXS(detectors=['waxs_det'], num=1) #1097: WAXS(detectors=['waxs_det'], num=1) #1098: WAXS(detectors=['waxs_det'], num=1) #1099: WAXS(detectors=['waxs_det'], num=1) #1100: WAXS(detectors=['waxs_det'], num=1) #1101: WAXS(detectors=['waxs_det'], num=1) #1102: WAXS(detectors=['waxs_det'], num=1) #1103: WAXS(detectors=['waxs_det'], num=1) #1104: WAXS(detectors=['waxs_det'], num=1) #1105: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.49309216238652, 50.49309216238652]', per_step='None') #1106: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84366424849307, 8.84546424849307]', per_step='None') #1107: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.308692162386514, 50.308692162386514]', per_step='None') #1108: uascan(start=8.845644069681235, reference=8.844567303963752, finish=7.229365244268611, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1109: uascan(start=8.845644069681235, reference=8.844567303963752, finish=7.229365244268611, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1110: uascan(start=8.845644069681235, reference=8.844567303963752, finish=7.229365244268611, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1111: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.36089216238651, 50.36089216238651]', per_step='None') #1112: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843667581733813, 8.845467581733812]', per_step='None') #1113: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.440392162386516, 50.440392162386516]', per_step='None') #1114: uascan(start=8.845645736301606, reference=8.844568970584122, finish=7.229366910888982, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1115: uascan(start=8.845645736301606, reference=8.844568970584122, finish=7.229366910888982, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1116: uascan(start=8.845645736301606, reference=8.844568970584122, finish=7.229366910888982, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1117: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.374692162386516, 50.374692162386516]', per_step='None') #1118: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843670637204495, 8.845470637204494]', per_step='None') #1119: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.42629216238652, 50.42629216238652]', per_step='None') #1120: uascan(start=8.845639347590181, reference=8.844562581872697, finish=7.229360522177557, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1121: uascan(start=8.845639347590181, reference=8.844562581872697, finish=7.229360522177557, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1122: uascan(start=8.845639347590181, reference=8.844562581872697, finish=7.229360522177557, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1123: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.43989216238651, 50.43989216238651]', per_step='None') #1124: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843662026332574, 8.845462026332573]', per_step='None') #1125: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.304692162386516, 50.304692162386516]', per_step='None') #1126: uascan(start=8.84563906982012, reference=8.844562304102636, finish=7.229360244407496, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1127: uascan(start=8.84563906982012, reference=8.844562304102636, finish=7.229360244407496, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1128: uascan(start=8.84563906982012, reference=8.844562304102636, finish=7.229360244407496, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1129: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.284792162386516, 50.284792162386516]', per_step='None') #1130: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843662581872698, 8.845462581872697]', per_step='None') #1131: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.41799216238651, 50.41799216238651]', per_step='None') #1132: uascan(start=8.845637958739871, reference=8.844561193022388, finish=7.2293591333272476, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1133: uascan(start=8.845637958739871, reference=8.844561193022388, finish=7.2293591333272476, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1134: uascan(start=8.845637958739871, reference=8.844561193022388, finish=7.2293591333272476, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1135: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.48269216238651, 50.48269216238651]', per_step='None') #1136: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843660915252327, 8.845460915252326]', per_step='None') #1137: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.501592162386515, 50.501592162386515]', per_step='None') #1138: uascan(start=8.845638792050057, reference=8.844562026332573, finish=7.229359966637433, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1139: uascan(start=8.845638792050057, reference=8.844562026332573, finish=7.229359966637433, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1140: uascan(start=8.845638792050057, reference=8.844562026332573, finish=7.229359966637433, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1141: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.497092162386515, 50.497092162386515]', per_step='None') #1142: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843662026332574, 8.845462026332573]', per_step='None') #1143: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.54189216238652, 50.54189216238652]', per_step='None') #1144: uascan(start=8.845639903130305, reference=8.844563137412822, finish=7.229361077717681, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1145: uascan(start=8.845639903130305, reference=8.844563137412822, finish=7.229361077717681, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1146: uascan(start=8.845639903130305, reference=8.844563137412822, finish=7.229361077717681, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1147: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.564292162386515, 50.564292162386515]', per_step='None') #1148: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843661748562512, 8.845461748562512]', per_step='None') #1149: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.66259216238652, 50.66259216238652]', per_step='None') #1150: uascan(start=8.84562490354696, reference=8.844548137829477, finish=7.229346078134337, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1151: uascan(start=8.84562490354696, reference=8.844548137829477, finish=7.229346078134337, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1152: uascan(start=8.84562490354696, reference=8.844548137829477, finish=7.229346078134337, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1153: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.73989216238651, 50.73989216238651]', per_step='None') #1154: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843645915668981, 8.84544591566898]', per_step='None') #1155: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.76709216238651, 50.76709216238651]', per_step='None') #1156: uascan(start=8.84561768152535, reference=8.844540915807867, finish=7.229338856112727, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1157: uascan(start=8.84561768152535, reference=8.844540915807867, finish=7.229338856112727, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1158: uascan(start=8.84561768152535, reference=8.844540915807867, finish=7.229338856112727, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1159: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.70159216238651, 50.70159216238651]', per_step='None') #1160: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843643137968362, 8.845443137968362]', per_step='None') #1161: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.748392162386516, 50.748392162386516]', per_step='None') #1162: uascan(start=8.84561351497442, reference=8.844536749256937, finish=7.229334689561797, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1163: uascan(start=8.84561351497442, reference=8.844536749256937, finish=7.229334689561797, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1164: uascan(start=8.84561351497442, reference=8.844536749256937, finish=7.229334689561797, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1165: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.79149216238651, 50.79149216238651]', per_step='None') #1166: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84363563817669, 8.845435638176689]', per_step='None') #1167: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.806792162386515, 50.806792162386515]', per_step='None') #1168: uascan(start=8.845614070514545, reference=8.844537304797061, finish=7.229335245101921, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1169: uascan(start=8.845614070514545, reference=8.844537304797061, finish=7.229335245101921, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1170: uascan(start=8.845614070514545, reference=8.844537304797061, finish=7.229335245101921, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1171: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.83279216238651, 50.83279216238651]', per_step='None') #1172: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843636193716813, 8.845436193716813]', per_step='None') #1173: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.923692162386516, 50.923692162386516]', per_step='None') #1174: uascan(start=8.845614626054669, reference=8.844537860337185, finish=7.229335800642045, minStep=2e-05, dx0=98.778222, SDD_mm=1075.0, ax0=14.66, SAD_mm=247.0, exponent=1.1, intervals=300, count_time=0.3) #1175: SAXS(detectors=['saxs_det'], num=1) #1176: SAXS(detectors=['saxs_det'], num=1) #1177: SAXS(detectors=['saxs_det'], num=1) #1178: SAXS(detectors=['saxs_det'], num=1) #1179: SAXS(detectors=['saxs_det'], num=1) #1180: SAXS(detectors=['saxs_det'], num=1) #1181: SAXS(detectors=['saxs_det'], num=1) #1182: SAXS(detectors=['saxs_det'], num=1) #1183: SAXS(detectors=['saxs_det'], num=1) #1184: SAXS(detectors=['saxs_det'], num=1) #1185: SAXS(detectors=['saxs_det'], num=1) #1186: SAXS(detectors=['saxs_det'], num=1) #1187: SAXS(detectors=['saxs_det'], num=1) #1188: SAXS(detectors=['saxs_det'], num=1) #1189: SAXS(detectors=['saxs_det'], num=1) #1190: SAXS(detectors=['saxs_det'], num=1) #1191: SAXS(detectors=['saxs_det'], num=1) #1192: SAXS(detectors=['saxs_det'], num=1) #1193: SAXS(detectors=['saxs_det'], num=1) #1194: SAXS(detectors=['saxs_det'], num=1) #1195: SAXS(detectors=['saxs_det'], num=1) #1196: SAXS(detectors=['saxs_det'], num=1) #1197: SAXS(detectors=['saxs_det'], num=1) #1198: SAXS(detectors=['saxs_det'], num=1) #1199: SAXS(detectors=['saxs_det'], num=1) #1200: SAXS(detectors=['saxs_det'], num=1) #1201: SAXS(detectors=['saxs_det'], num=1) #1202: SAXS(detectors=['saxs_det'], num=1) #1203: SAXS(detectors=['saxs_det'], num=1) #1204: SAXS(detectors=['saxs_det'], num=1) #1205: SAXS(detectors=['saxs_det'], num=1) #1206: SAXS(detectors=['saxs_det'], num=1) #1207: SAXS(detectors=['saxs_det'], num=1) #1208: SAXS(detectors=['saxs_det'], num=1) #1209: WAXS(detectors=['waxs_det'], num=1) #1210: WAXS(detectors=['waxs_det'], num=1) #1211: WAXS(detectors=['waxs_det'], num=1) #1212: WAXS(detectors=['waxs_det'], num=1) #1213: WAXS(detectors=['waxs_det'], num=1) #1214: WAXS(detectors=['waxs_det'], num=1) #1215: WAXS(detectors=['waxs_det'], num=1) #1216: WAXS(detectors=['waxs_det'], num=1) #1217: WAXS(detectors=['waxs_det'], num=1) #1218: WAXS(detectors=['waxs_det'], num=1) #1219: WAXS(detectors=['waxs_det'], num=1) #1220: WAXS(detectors=['waxs_det'], num=1) #1221: WAXS(detectors=['waxs_det'], num=1) #1222: WAXS(detectors=['waxs_det'], num=1) #1223: WAXS(detectors=['waxs_det'], num=1) #1224: WAXS(detectors=['waxs_det'], num=1) #1225: WAXS(detectors=['waxs_det'], num=1) #1226: WAXS(detectors=['waxs_det'], num=1) #1227: WAXS(detectors=['waxs_det'], num=1) #1228: WAXS(detectors=['waxs_det'], num=1) #1229: WAXS(detectors=['waxs_det'], num=1) #1230: WAXS(detectors=['waxs_det'], num=1) #1231: WAXS(detectors=['waxs_det'], num=1) #1232: WAXS(detectors=['waxs_det'], num=1) #1233: WAXS(detectors=['waxs_det'], num=1) #1234: WAXS(detectors=['waxs_det'], num=1) #1235: WAXS(detectors=['waxs_det'], num=1) #1236: WAXS(detectors=['waxs_det'], num=1) #1237: WAXS(detectors=['waxs_det'], num=1) no plot: #1238 WAXS(detectors=['waxs_det'], num=1) #1239: WAXS(detectors=['waxs_det'], num=1) #1240: WAXS(detectors=['waxs_det'], num=1) #1241: WAXS(detectors=['waxs_det'], num=1) #1242: WAXS(detectors=['waxs_det'], num=1)