SPEC scans from: /share1/USAXS_data/2023-03/03_25_DaLarry/03_25_DaLarry.dat

spec file: /share1/USAXS_data/2023-03/03_25_DaLarry/03_25_DaLarry.dat
#2: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841989772630592, 8.846989772630591]', per_step='None') #3: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843659526402016, 8.845459526402015]', per_step='None') #4: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.020392162386514, 53.020392162386514]', per_step='None') #5: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.842071439297259, 8.847071439297258]', per_step='None') #6: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843660637482264, 8.845460637482264]', per_step='None') #7: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.00599216238651, 54.00599216238651]', per_step='None') #8: documentation_run() #9: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.65039216238652, 53.65039216238652]', per_step='None') #10: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843578973084053, 8.845378973084053]', per_step='None') #11: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.48069216238651, 53.48069216238651]', per_step='None') #12: uascan(start=8.845596848770704, reference=8.84452008305322, finish=7.22931802335808, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #13: uascan(start=8.845596848770704, reference=8.84452008305322, finish=7.22931802335808, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #14: uascan(start=8.845596848770704, reference=8.84452008305322, finish=7.22931802335808, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #15: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.67459216238652, 53.67459216238652]', per_step='None') #16: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843618416432848, 8.845418416432848]', per_step='None') #17: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.38779216238652, 53.38779216238652]', per_step='None') #18: uascan(start=8.845617959295412, reference=8.844541193577928, finish=7.229339133882788, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #19: uascan(start=8.845617959295412, reference=8.844541193577928, finish=7.229339133882788, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #20: uascan(start=8.845617959295412, reference=8.844541193577928, finish=7.229339133882788, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #21: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.363092162386515, 53.363092162386515]', per_step='None') #22: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843642026888114, 8.845442026888113]', per_step='None') #23: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.131892162386514, 54.131892162386514]', per_step='None') #24: uascan(start=8.845603515252192, reference=8.844526749534708, finish=7.229324689839568, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #25: uascan(start=8.845603515252192, reference=8.844526749534708, finish=7.229324689839568, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #26: uascan(start=8.845603515252192, reference=8.844526749534708, finish=7.229324689839568, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #27: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.24719216238651, 54.24719216238651]', per_step='None') #28: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843628416155079, 8.845428416155078]', per_step='None') #29: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.226792162386516, 55.226792162386516]', per_step='None') #30: uascan(start=8.845576571556183, reference=8.8444998058387, finish=7.229297746143559, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #31: uascan(start=8.845576571556183, reference=8.8444998058387, finish=7.229297746143559, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #32: uascan(start=8.845576571556183, reference=8.8444998058387, finish=7.229297746143559, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #33: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.203592162386514, 55.203592162386514]', per_step='None') #34: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843598139218328, 8.845398139218327]', per_step='None') #35: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.54509216238652, 55.54509216238652]', per_step='None') #36: uascan(start=8.845544350228996, reference=8.844467584511513, finish=7.229265524816372, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #37: uascan(start=8.845544350228996, reference=8.844467584511513, finish=7.229265524816372, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #38: uascan(start=8.845544350228996, reference=8.844467584511513, finish=7.229265524816372, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #39: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.56929216238652, 55.56929216238652]', per_step='None') #40: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84356702897139, 8.84536702897139]', per_step='None') #41: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.056592162386515, 54.056592162386515]', per_step='None') #42: uascan(start=8.845564071903395, reference=8.844487306185911, finish=7.229285246490771, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #43: uascan(start=8.845564071903395, reference=8.844487306185911, finish=7.229285246490771, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #44: uascan(start=8.845564071903395, reference=8.844487306185911, finish=7.229285246490771, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #45: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.18879216238651, 54.18879216238651]', per_step='None') #46: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843585084025417, 8.845385084025416]', per_step='None') #47: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.32399216238652, 54.32399216238652]', per_step='None') #48: uascan(start=8.845574627165748, reference=8.844497861448264, finish=7.229295801753124, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #49: uascan(start=8.845574627165748, reference=8.844497861448264, finish=7.229295801753124, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #50: uascan(start=8.845574627165748, reference=8.844497861448264, finish=7.229295801753124, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #51: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.130892162386516, 54.130892162386516]', per_step='None') #52: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843598416988389, 8.845398416988388]', per_step='None') #53: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.23759216238651, 55.23759216238651]', per_step='None') #54: uascan(start=8.845542961378687, reference=8.844466195661203, finish=7.229264135966063, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #55: uascan(start=8.845542961378687, reference=8.844466195661203, finish=7.229264135966063, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #56: SAXS(detectors=['saxs_det'], num=1) #57: SAXS(detectors=['saxs_det'], num=1) #58: SAXS(detectors=['saxs_det'], num=1) #59: SAXS(detectors=['saxs_det'], num=1) #60: SAXS(detectors=['saxs_det'], num=1) #61: SAXS(detectors=['saxs_det'], num=1) #62: SAXS(detectors=['saxs_det'], num=1) #63: SAXS(detectors=['saxs_det'], num=1) #64: SAXS(detectors=['saxs_det'], num=1) #65: SAXS(detectors=['saxs_det'], num=1) #66: SAXS(detectors=['saxs_det'], num=1) #67: SAXS(detectors=['saxs_det'], num=1) #68: SAXS(detectors=['saxs_det'], num=1) #69: SAXS(detectors=['saxs_det'], num=1) #70: SAXS(detectors=['saxs_det'], num=1) #71: SAXS(detectors=['saxs_det'], num=1) #72: SAXS(detectors=['saxs_det'], num=1) #73: SAXS(detectors=['saxs_det'], num=1) #74: SAXS(detectors=['saxs_det'], num=1) #75: SAXS(detectors=['saxs_det'], num=1) #76: SAXS(detectors=['saxs_det'], num=1) #77: SAXS(detectors=['saxs_det'], num=1) #78: SAXS(detectors=['saxs_det'], num=1) #79: WAXS(detectors=['waxs_det'], num=1) #80: WAXS(detectors=['waxs_det'], num=1) #81: WAXS(detectors=['waxs_det'], num=1) #82: WAXS(detectors=['waxs_det'], num=1) #83: WAXS(detectors=['waxs_det'], num=1) #84: WAXS(detectors=['waxs_det'], num=1) #85: WAXS(detectors=['waxs_det'], num=1) #86: WAXS(detectors=['waxs_det'], num=1) #87: WAXS(detectors=['waxs_det'], num=1) #88: WAXS(detectors=['waxs_det'], num=1) #89: WAXS(detectors=['waxs_det'], num=1) #90: WAXS(detectors=['waxs_det'], num=1) #91: WAXS(detectors=['waxs_det'], num=1) #92: WAXS(detectors=['waxs_det'], num=1) #93: WAXS(detectors=['waxs_det'], num=1) #94: WAXS(detectors=['waxs_det'], num=1) #95: WAXS(detectors=['waxs_det'], num=1) #96: WAXS(detectors=['waxs_det'], num=1) #97: WAXS(detectors=['waxs_det'], num=1) #98: WAXS(detectors=['waxs_det'], num=1) #99: WAXS(detectors=['waxs_det'], num=1) #100: WAXS(detectors=['waxs_det'], num=1) #101: WAXS(detectors=['waxs_det'], num=1) #102: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.24569216238651, 55.24569216238651]', per_step='None') #103: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843564806810894, 8.845364806810894]', per_step='None') #104: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.046492162386514, 55.046492162386514]', per_step='None') #105: uascan(start=8.84551907315336, reference=8.844442307435877, finish=7.229240247740736, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #106: uascan(start=8.84551907315336, reference=8.844442307435877, finish=7.229240247740736, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #107: uascan(start=8.84551907315336, reference=8.844442307435877, finish=7.229240247740736, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #108: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.23029216238651, 55.23029216238651]', per_step='None') #109: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843543140746062, 8.845343140746062]', per_step='None') #110: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.229092162386515, 54.229092162386515]', per_step='None') #111: uascan(start=8.84553740597745, reference=8.844460640259966, finish=7.229258580564825, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #112: uascan(start=8.84553740597745, reference=8.844460640259966, finish=7.229258580564825, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #113: uascan(start=8.84553740597745, reference=8.844460640259966, finish=7.229258580564825, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #114: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.23609216238651, 54.23609216238651]', per_step='None') #115: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843562306880337, 8.845362306880336]', per_step='None') #116: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.128892162386514, 54.128892162386514]', per_step='None') #117: uascan(start=8.845552683330855, reference=8.844475917613371, finish=7.229273857918231, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #118: uascan(start=8.845552683330855, reference=8.844475917613371, finish=7.229273857918231, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #119: SAXS(detectors=['saxs_det'], num=1) #120: SAXS(detectors=['saxs_det'], num=1) #121: SAXS(detectors=['saxs_det'], num=1) #122: SAXS(detectors=['saxs_det'], num=1) #123: SAXS(detectors=['saxs_det'], num=1) #124: SAXS(detectors=['saxs_det'], num=1) #125: SAXS(detectors=['saxs_det'], num=1) #126: SAXS(detectors=['saxs_det'], num=1) #127: WAXS(detectors=['waxs_det'], num=1) #128: WAXS(detectors=['waxs_det'], num=1) #129: WAXS(detectors=['waxs_det'], num=1) #130: WAXS(detectors=['waxs_det'], num=1) #131: WAXS(detectors=['waxs_det'], num=1) #132: WAXS(detectors=['waxs_det'], num=1) #133: WAXS(detectors=['waxs_det'], num=1) #134: WAXS(detectors=['waxs_det'], num=1) #135: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.940792162386515, 53.940792162386515]', per_step='None') #136: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843578695313992, 8.845378695313991]', per_step='None') #137: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.210892162386514, 55.210892162386514]', per_step='None') #138: uascan(start=8.845519350923421, reference=8.844442585205938, finish=7.229240525510797, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #139: uascan(start=8.845519350923421, reference=8.844442585205938, finish=7.229240525510797, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #140: uascan(start=8.845519350923421, reference=8.844442585205938, finish=7.229240525510797, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #141: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.21319216238651, 55.21319216238651]', per_step='None') #142: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843540085275382, 8.845340085275382]', per_step='None') #143: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.821592162386516, 54.821592162386516]', per_step='None') #144: uascan(start=8.845501018099334, reference=8.84442425238185, finish=7.22922219268671, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #145: uascan(start=8.845501018099334, reference=8.84442425238185, finish=7.22922219268671, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #146: uascan(start=8.845501018099334, reference=8.84442425238185, finish=7.22922219268671, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #147: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.862692162386516, 54.862692162386516]', per_step='None') #148: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843523141301603, 8.845323141301602]', per_step='None') #149: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.01019216238652, 55.01019216238652]', per_step='None') #150: uascan(start=8.845496296008282, reference=8.844419530290798, finish=7.229217470595658, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #151: uascan(start=8.845496296008282, reference=8.844419530290798, finish=7.229217470595658, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #152: uascan(start=8.845496296008282, reference=8.844419530290798, finish=7.229217470595658, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #153: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.99489216238651, 54.99489216238651]', per_step='None') #154: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843522030221354, 8.845322030221354]', per_step='None') #155: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.21449216238651, 55.21449216238651]', per_step='None') #156: uascan(start=8.845484074125556, reference=8.844407308408073, finish=7.229205248712932, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #157: uascan(start=8.845484074125556, reference=8.844407308408073, finish=7.229205248712932, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #158: uascan(start=8.845484074125556, reference=8.844407308408073, finish=7.229205248712932, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #159: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.21999216238651, 55.21999216238651]', per_step='None') #160: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843508975028444, 8.845308975028443]', per_step='None') #161: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.015292162386515, 55.015292162386515]', per_step='None') #162: uascan(start=8.845471296702707, reference=8.844394530985223, finish=7.229192471290083, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #163: uascan(start=8.845471296702707, reference=8.844394530985223, finish=7.229192471290083, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #164: uascan(start=8.845471296702707, reference=8.844394530985223, finish=7.229192471290083, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #165: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.10489216238651, 55.10489216238651]', per_step='None') #166: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843493419904975, 8.845293419904975]', per_step='None') #167: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.97219216238651, 54.97219216238651]', per_step='None') #168: uascan(start=8.845475463253635, reference=8.844398697536151, finish=7.229196637841011, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #169: uascan(start=8.845475463253635, reference=8.844398697536151, finish=7.229196637841011, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #170: uascan(start=8.845475463253635, reference=8.844398697536151, finish=7.229196637841011, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #171: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.919592162386515, 54.919592162386515]', per_step='None') #172: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843497586455904, 8.845297586455903]', per_step='None') #173: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.083992162386515, 55.083992162386515]', per_step='None') #174: uascan(start=8.845464907991282, reference=8.844388142273798, finish=7.229186082578658, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #175: uascan(start=8.845464907991282, reference=8.844388142273798, finish=7.229186082578658, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #176: uascan(start=8.845464907991282, reference=8.844388142273798, finish=7.229186082578658, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #177: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.10849216238651, 55.10849216238651]', per_step='None') #178: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84348842004386, 8.84528842004386]', per_step='None') #179: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.13719216238651, 55.13719216238651]', per_step='None') #180: uascan(start=8.845459352590042, reference=8.844382586872559, finish=7.2291805271774185, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #181: uascan(start=8.845459352590042, reference=8.844382586872559, finish=7.2291805271774185, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #182: uascan(start=8.845459352590042, reference=8.844382586872559, finish=7.2291805271774185, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #183: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.13589216238651, 55.13589216238651]', per_step='None') #184: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84348286464262, 8.84528286464262]', per_step='None') #185: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.11879216238651, 55.11879216238651]', per_step='None') #186: uascan(start=8.845468519002086, reference=8.844391753284603, finish=7.229189693589462, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #187: uascan(start=8.845468519002086, reference=8.844391753284603, finish=7.229189693589462, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #188: uascan(start=8.845468519002086, reference=8.844391753284603, finish=7.229189693589462, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #189: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.050792162386514, 55.050792162386514]', per_step='None') #190: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84349258659479, 8.84529258659479]', per_step='None') #191: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.072192162386514, 55.072192162386514]', per_step='None') #192: SAXS(detectors=['saxs_det'], num=1) #193: SAXS(detectors=['saxs_det'], num=1) #194: SAXS(detectors=['saxs_det'], num=1) #195: SAXS(detectors=['saxs_det'], num=1) #196: SAXS(detectors=['saxs_det'], num=1) #197: SAXS(detectors=['saxs_det'], num=1) #198: SAXS(detectors=['saxs_det'], num=1) #199: SAXS(detectors=['saxs_det'], num=1) #200: SAXS(detectors=['saxs_det'], num=1) #201: SAXS(detectors=['saxs_det'], num=1) #202: SAXS(detectors=['saxs_det'], num=1) #203: SAXS(detectors=['saxs_det'], num=1) #204: SAXS(detectors=['saxs_det'], num=1) #205: SAXS(detectors=['saxs_det'], num=1) #206: SAXS(detectors=['saxs_det'], num=1) #207: SAXS(detectors=['saxs_det'], num=1) #208: SAXS(detectors=['saxs_det'], num=1) #209: SAXS(detectors=['saxs_det'], num=1) #210: SAXS(detectors=['saxs_det'], num=1) #211: SAXS(detectors=['saxs_det'], num=1) #212: SAXS(detectors=['saxs_det'], num=1) #213: SAXS(detectors=['saxs_det'], num=1) #214: SAXS(detectors=['saxs_det'], num=1) #215: SAXS(detectors=['saxs_det'], num=1) #216: SAXS(detectors=['saxs_det'], num=1) #217: SAXS(detectors=['saxs_det'], num=1) #218: SAXS(detectors=['saxs_det'], num=1) #219: WAXS(detectors=['waxs_det'], num=1) #220: WAXS(detectors=['waxs_det'], num=1) #221: WAXS(detectors=['waxs_det'], num=1) #222: WAXS(detectors=['waxs_det'], num=1) #223: WAXS(detectors=['waxs_det'], num=1) #224: WAXS(detectors=['waxs_det'], num=1) #225: WAXS(detectors=['waxs_det'], num=1) #226: WAXS(detectors=['waxs_det'], num=1) #227: WAXS(detectors=['waxs_det'], num=1) #228: WAXS(detectors=['waxs_det'], num=1) #229: WAXS(detectors=['waxs_det'], num=1) #230: WAXS(detectors=['waxs_det'], num=1) #231: WAXS(detectors=['waxs_det'], num=1) #232: WAXS(detectors=['waxs_det'], num=1) #233: WAXS(detectors=['waxs_det'], num=1) #234: WAXS(detectors=['waxs_det'], num=1) #235: WAXS(detectors=['waxs_det'], num=1) #236: WAXS(detectors=['waxs_det'], num=1) #237: WAXS(detectors=['waxs_det'], num=1) #238: WAXS(detectors=['waxs_det'], num=1) #239: WAXS(detectors=['waxs_det'], num=1) #240: WAXS(detectors=['waxs_det'], num=1) #241: WAXS(detectors=['waxs_det'], num=1) #242: WAXS(detectors=['waxs_det'], num=1) #243: WAXS(detectors=['waxs_det'], num=1) #244: WAXS(detectors=['waxs_det'], num=1) #245: WAXS(detectors=['waxs_det'], num=1) #246: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.03869216238652, 55.03869216238652]', per_step='None') #247: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843492031054666, 8.845292031054665]', per_step='None') #248: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.002692162386516, 55.002692162386516]', per_step='None') #249: uascan(start=8.845459352590042, reference=8.844382586872559, finish=7.2291805271774185, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #250: uascan(start=8.845459352590042, reference=8.844382586872559, finish=7.2291805271774185, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #251: uascan(start=8.845459352590042, reference=8.844382586872559, finish=7.2291805271774185, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #252: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.08069216238651, 55.08069216238651]', per_step='None') #253: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843480920252187, 8.845280920252186]', per_step='None') #254: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.45369216238652, 54.45369216238652]', per_step='None') #255: uascan(start=8.845465185761343, reference=8.84438842004386, finish=7.229186360348719, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #256: uascan(start=8.845465185761343, reference=8.84438842004386, finish=7.229186360348719, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #257: uascan(start=8.845465185761343, reference=8.84438842004386, finish=7.229186360348719, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #258: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.61709216238651, 54.61709216238651]', per_step='None') #259: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843489531124108, 8.845289531124108]', per_step='None') #260: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.491992162386516, 54.491992162386516]', per_step='None') #261: uascan(start=8.845479629804565, reference=8.844402864087082, finish=7.229200804391941, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #262: uascan(start=8.845479629804565, reference=8.844402864087082, finish=7.229200804391941, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #263: uascan(start=8.845479629804565, reference=8.844402864087082, finish=7.229200804391941, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #264: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.56549216238651, 54.56549216238651]', per_step='None') #265: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843503975167328, 8.845303975167328]', per_step='None') #266: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.647092162386514, 54.647092162386514]', per_step='None') #267: uascan(start=8.845487129596236, reference=8.844410363878753, finish=7.229208304183612, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #268: uascan(start=8.845487129596236, reference=8.844410363878753, finish=7.229208304183612, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #269: uascan(start=8.845487129596236, reference=8.844410363878753, finish=7.229208304183612, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #270: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.65769216238652, 54.65769216238652]', per_step='None') #271: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843511474959001, 8.845311474959]', per_step='None') #272: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.75919216238651, 54.75919216238651]', per_step='None') #273: uascan(start=8.845483796355493, reference=8.84440703063801, finish=7.229204970942869, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #274: uascan(start=8.845483796355493, reference=8.84440703063801, finish=7.229204970942869, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #275: uascan(start=8.845483796355493, reference=8.84440703063801, finish=7.229204970942869, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #276: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.77499216238652, 54.77499216238652]', per_step='None') #277: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843505086247577, 8.845305086247576]', per_step='None') #278: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.695692162386514, 54.695692162386514]', per_step='None') #279: uascan(start=8.8454874073663, reference=8.844410641648816, finish=7.229208581953675, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #280: uascan(start=8.8454874073663, reference=8.844410641648816, finish=7.229208581953675, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #281: uascan(start=8.8454874073663, reference=8.844410641648816, finish=7.229208581953675, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #282: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.69519216238651, 54.69519216238651]', per_step='None') #283: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843511474959001, 8.845311474959]', per_step='None') #284: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.90169216238652, 54.90169216238652]', per_step='None') #285: uascan(start=8.845485462975866, reference=8.844408697258382, finish=7.229206637563242, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #286: uascan(start=8.845485462975866, reference=8.844408697258382, finish=7.229206637563242, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #287: uascan(start=8.845485462975866, reference=8.844408697258382, finish=7.229206637563242, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #288: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.84629216238651, 54.84629216238651]', per_step='None') #289: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843506197327825, 8.845306197327824]', per_step='None') #290: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.70909216238651, 54.70909216238651]', per_step='None') #291: uascan(start=8.845486851826175, reference=8.844410086108692, finish=7.229208026413551, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #292: uascan(start=8.845486851826175, reference=8.844410086108692, finish=7.229208026413551, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #293: uascan(start=8.845486851826175, reference=8.844410086108692, finish=7.229208026413551, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #294: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.688192162386514, 54.688192162386514]', per_step='None') #295: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843508141718258, 8.845308141718258]', per_step='None') #296: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.090592162386514, 55.090592162386514]', per_step='None') #297: uascan(start=8.845476574333883, reference=8.8443998086164, finish=7.229197748921259, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #298: uascan(start=8.845476574333883, reference=8.8443998086164, finish=7.229197748921259, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #299: uascan(start=8.845476574333883, reference=8.8443998086164, finish=7.229197748921259, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #300: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.998192162386516, 54.998192162386516]', per_step='None') #301: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84349841976609, 8.84529841976609]', per_step='None') #302: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.72319216238652, 54.72319216238652]', per_step='None') #303: SAXS(detectors=['saxs_det'], num=1) #304: SAXS(detectors=['saxs_det'], num=1) #305: SAXS(detectors=['saxs_det'], num=1) #306: SAXS(detectors=['saxs_det'], num=1) #307: SAXS(detectors=['saxs_det'], num=1) #308: SAXS(detectors=['saxs_det'], num=1) #309: SAXS(detectors=['saxs_det'], num=1) #310: SAXS(detectors=['saxs_det'], num=1) #311: SAXS(detectors=['saxs_det'], num=1) #312: SAXS(detectors=['saxs_det'], num=1) #313: SAXS(detectors=['saxs_det'], num=1) #314: SAXS(detectors=['saxs_det'], num=1) #315: SAXS(detectors=['saxs_det'], num=1) #316: SAXS(detectors=['saxs_det'], num=1) #317: SAXS(detectors=['saxs_det'], num=1) #318: SAXS(detectors=['saxs_det'], num=1) #319: SAXS(detectors=['saxs_det'], num=1) #320: SAXS(detectors=['saxs_det'], num=1) #321: SAXS(detectors=['saxs_det'], num=1) #322: SAXS(detectors=['saxs_det'], num=1) #323: SAXS(detectors=['saxs_det'], num=1) #324: SAXS(detectors=['saxs_det'], num=1) #325: SAXS(detectors=['saxs_det'], num=1) #326: SAXS(detectors=['saxs_det'], num=1) #327: SAXS(detectors=['saxs_det'], num=1) #328: SAXS(detectors=['saxs_det'], num=1) #329: SAXS(detectors=['saxs_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: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.68489216238651, 54.68489216238651]', per_step='None') #358: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843499530846337, 8.845299530846336]', per_step='None') #359: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.12729216238652, 55.12729216238652]', per_step='None') #360: uascan(start=8.845466852381715, reference=8.844390086664232, finish=7.229188026969092, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #361: uascan(start=8.845466852381715, reference=8.844390086664232, finish=7.229188026969092, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #362: uascan(start=8.845466852381715, reference=8.844390086664232, finish=7.229188026969092, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #363: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.06589216238651, 55.06589216238651]', per_step='None') #364: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843491753284603, 8.845291753284602]', per_step='None') #365: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.57509216238651, 54.57509216238651]', per_step='None') #366: uascan(start=8.845482129735123, reference=8.84440536401764, finish=7.229203304322499, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #367: uascan(start=8.845482129735123, reference=8.84440536401764, finish=7.229203304322499, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #368: uascan(start=8.845482129735123, reference=8.84440536401764, finish=7.229203304322499, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #369: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.52519216238652, 54.52519216238652]', per_step='None') #370: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843505919557762, 8.845305919557761]', per_step='None') #371: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.513392162386516, 54.513392162386516]', per_step='None') #372: uascan(start=8.845489351756733, reference=8.84441258603925, finish=7.229210526344109, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #373: uascan(start=8.845489351756733, reference=8.84441258603925, finish=7.229210526344109, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #374: uascan(start=8.845489351756733, reference=8.84441258603925, finish=7.229210526344109, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #375: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.45799216238652, 54.45799216238652]', per_step='None') #376: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84351119718894, 8.84531119718894]', per_step='None') #377: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.50279216238651, 54.50279216238651]', per_step='None') #378: uascan(start=8.845493518307661, reference=8.844416752590178, finish=7.229214692895037, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #379: uascan(start=8.845493518307661, reference=8.844416752590178, finish=7.229214692895037, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #380: uascan(start=8.845493518307661, reference=8.844416752590178, finish=7.229214692895037, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #381: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.506892162386514, 54.506892162386514]', per_step='None') #382: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84351564150993, 8.845315641509929]', per_step='None') #383: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.542892162386515, 54.542892162386515]', per_step='None') #384: uascan(start=8.84549490715797, reference=8.844418141440487, finish=7.229216081745347, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #385: uascan(start=8.84549490715797, reference=8.844418141440487, finish=7.229216081745347, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #386: uascan(start=8.84549490715797, reference=8.844418141440487, finish=7.229216081745347, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #387: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.550192162386516, 54.550192162386516]', per_step='None') #388: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843517308130302, 8.845317308130301]', per_step='None') #389: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.525992162386515, 54.525992162386515]', per_step='None') #390: uascan(start=8.845494073847785, reference=8.844417308130302, finish=7.229215248435161, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #391: uascan(start=8.845494073847785, reference=8.844417308130302, finish=7.229215248435161, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #392: uascan(start=8.845494073847785, reference=8.844417308130302, finish=7.229215248435161, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #393: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.535592162386514, 54.535592162386514]', per_step='None') #394: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84351564150993, 8.845315641509929]', per_step='None') #395: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.531792162386516, 54.531792162386516]', per_step='None') #396: uascan(start=8.845498795938838, reference=8.844422030221354, finish=7.229219970526214, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #397: uascan(start=8.845498795938838, reference=8.844422030221354, finish=7.229219970526214, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #398: uascan(start=8.845498795938838, reference=8.844422030221354, finish=7.229219970526214, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #399: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.49499216238652, 54.49499216238652]', per_step='None') #400: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843524807921975, 8.845324807921974]', per_step='None') #401: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.581592162386514, 54.581592162386514]', per_step='None') #402: uascan(start=8.845502129179582, reference=8.844425363462099, finish=7.229223303766958, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #403: uascan(start=8.845502129179582, reference=8.844425363462099, finish=7.229223303766958, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #404: uascan(start=8.845502129179582, reference=8.844425363462099, finish=7.229223303766958, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #405: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.54509216238652, 54.54509216238652]', per_step='None') #406: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843523696841727, 8.845323696841726]', per_step='None') #407: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.615892162386515, 54.615892162386515]', per_step='None') #408: uascan(start=8.84550185140952, reference=8.844425085692036, finish=7.2292230259968955, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #409: uascan(start=8.84550185140952, reference=8.844425085692036, finish=7.2292230259968955, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #410: uascan(start=8.84550185140952, reference=8.844425085692036, finish=7.2292230259968955, minStep=2e-05, dx0=98.03142299999999, SDD_mm=1075.0, ax0=14.66, SAD_mm=246.0, exponent=1.1, intervals=300, count_time=0.3) #411: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.603292162386516, 54.603292162386516]', per_step='None') #412: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843525085692036, 8.845325085692036]', per_step='None') #413: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.36379216238652, 54.36379216238652]', per_step='None') #414: SAXS(detectors=['saxs_det'], num=1) #415: SAXS(detectors=['saxs_det'], num=1) #416: SAXS(detectors=['saxs_det'], num=1) #417: SAXS(detectors=['saxs_det'], num=1) #418: SAXS(detectors=['saxs_det'], num=1) #419: SAXS(detectors=['saxs_det'], num=1) #420: SAXS(detectors=['saxs_det'], num=1) #421: SAXS(detectors=['saxs_det'], num=1) #422: SAXS(detectors=['saxs_det'], num=1) #423: SAXS(detectors=['saxs_det'], num=1) #424: SAXS(detectors=['saxs_det'], num=1) #425: SAXS(detectors=['saxs_det'], num=1) #426: SAXS(detectors=['saxs_det'], num=1) #427: SAXS(detectors=['saxs_det'], num=1) #428: SAXS(detectors=['saxs_det'], num=1) #429: SAXS(detectors=['saxs_det'], num=1) #430: SAXS(detectors=['saxs_det'], num=1) #431: SAXS(detectors=['saxs_det'], num=1) #432: SAXS(detectors=['saxs_det'], num=1) #433: SAXS(detectors=['saxs_det'], num=1) #434: SAXS(detectors=['saxs_det'], num=1) #435: SAXS(detectors=['saxs_det'], num=1) #436: SAXS(detectors=['saxs_det'], num=1) #437: SAXS(detectors=['saxs_det'], num=1) #438: SAXS(detectors=['saxs_det'], num=1) #439: SAXS(detectors=['saxs_det'], num=1) #440: SAXS(detectors=['saxs_det'], num=1) #441: WAXS(detectors=['waxs_det'], num=1) #442: WAXS(detectors=['waxs_det'], num=1) #443: WAXS(detectors=['waxs_det'], num=1) #444: WAXS(detectors=['waxs_det'], num=1) #445: WAXS(detectors=['waxs_det'], num=1) #446: WAXS(detectors=['waxs_det'], num=1) #447: WAXS(detectors=['waxs_det'], num=1) #448: WAXS(detectors=['waxs_det'], num=1) #449: WAXS(detectors=['waxs_det'], num=1) #450: WAXS(detectors=['waxs_det'], num=1) #451: WAXS(detectors=['waxs_det'], num=1) #452: WAXS(detectors=['waxs_det'], num=1) #453: WAXS(detectors=['waxs_det'], num=1) #454: WAXS(detectors=['waxs_det'], num=1) #455: WAXS(detectors=['waxs_det'], num=1) #456: WAXS(detectors=['waxs_det'], num=1) #457: WAXS(detectors=['waxs_det'], num=1) #458: WAXS(detectors=['waxs_det'], num=1) #459: WAXS(detectors=['waxs_det'], num=1) #460: WAXS(detectors=['waxs_det'], num=1) #461: WAXS(detectors=['waxs_det'], num=1) #462: WAXS(detectors=['waxs_det'], num=1) #463: WAXS(detectors=['waxs_det'], num=1) #464: WAXS(detectors=['waxs_det'], num=1) #465: WAXS(detectors=['waxs_det'], num=1) #466: WAXS(detectors=['waxs_det'], num=1) #467: WAXS(detectors=['waxs_det'], num=1) #468: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.84207643929726, 8.84707643929726]', per_step='None') #469: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843524252381851, 8.84532425238185]', per_step='None') #470: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.554892162386516, 54.554892162386516]', per_step='None')