SPEC scans from: /share1/USAXS_data/2023-02/02_08_Josh/02_08_Josh.dat

spec file: /share1/USAXS_data/2023-02/02_08_Josh/02_08_Josh.dat
#2: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.840920491785145, 8.845920491785144]', per_step='None') #3: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84375324741535, 8.84555324741535]', per_step='None') #4: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.763792162386515, 60.763792162386515]', per_step='None') #5: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.840851325118477, 8.845851325118476]', per_step='None') #6: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84360019611122, 8.84540019611122]', per_step='None') #7: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.77369216238652, 60.77369216238652]', per_step='None') #8: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841952991785144, 8.846952991785143]', per_step='None') #9: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843941019977224, 8.845741019977224]', per_step='None') #10: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.51309216238651, 57.51309216238651]', per_step='None') #11: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841398825118477, 8.846398825118476]', per_step='None') #12: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84394213105747, 8.84574213105747]', per_step='None') #13: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.88929216238652, 59.88929216238652]', per_step='None') #14: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.52969216238652, 60.52969216238652]', per_step='None') #15: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844106848704204, 8.845906848704203]', per_step='None') #16: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.547792162386514, 60.547792162386514]', per_step='None') #17: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.51279216238652, 60.51279216238652]', per_step='None') #18: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844109348634762, 8.84590934863476]', per_step='None') #19: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.229292162386514, 56.229292162386514]', per_step='None') #20: documentation_run() #21: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.28119216238652, 56.28119216238652]', per_step='None') #22: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844447117030084, 8.846247117030083]', per_step='None') #23: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.338092162386516, 58.338092162386516]', per_step='None') #24: uascan(start=8.846346384900285, reference=8.845269619182801, finish=7.230067559487661, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #25: uascan(start=8.846346384900285, reference=8.845269619182801, finish=7.230067559487661, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #26: SAXS(detectors=['saxs_det'], num=1) #27: SAXS(detectors=['saxs_det'], num=1) #28: documentation_run() #29: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.53749216238651, 58.53749216238651]', per_step='None') #30: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84437100803311, 8.84617100803311]', per_step='None') #31: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.349592162386514, 58.349592162386514]', per_step='None') #32: SAXS(detectors=['saxs_det'], num=1) #33: documentation_run() #34: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.91069216238652, 57.91069216238652]', per_step='None') #35: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84437100803311, 8.84617100803311]', per_step='None') #36: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.988292162386514, 58.988292162386514]', per_step='None') #37: WAXS(detectors=['waxs_det'], num=1) #38: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.891092162386514, 58.891092162386514]', per_step='None') #39: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84436656371212, 8.846166563712119]', per_step='None') #40: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.83109216238651, 59.83109216238651]', per_step='None') #41: documentation_run() #42: documentation_run() #43: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.664892162386515, 59.664892162386515]', per_step='None') #44: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84431212077998, 8.84611212077998]', per_step='None') #45: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.63949216238652, 59.63949216238652]', per_step='None') #46: uascan(start=8.846260553951144, reference=8.84518378823366, finish=7.22998172853852, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #47: uascan(start=8.846260553951144, reference=8.84518378823366, finish=7.22998172853852, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #48: uascan(start=8.846260553951144, reference=8.84518378823366, finish=7.22998172853852, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #49: uascan(start=8.846260553951144, reference=8.84518378823366, finish=7.22998172853852, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #50: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.702392162386516, 59.702392162386516]', per_step='None') #51: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844284066003723, 8.846084066003723]', per_step='None') #52: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.89379216238652, 58.89379216238652]', per_step='None') #53: uascan(start=8.846270553673374, reference=8.84519378795589, finish=7.22999172826075, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #54: uascan(start=8.846270553673374, reference=8.84519378795589, finish=7.22999172826075, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #55: uascan(start=8.846270553673374, reference=8.84519378795589, finish=7.22999172826075, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #56: uascan(start=8.846270553673374, reference=8.84519378795589, finish=7.22999172826075, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #57: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.86359216238652, 58.86359216238652]', per_step='None') #58: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844294065725952, 8.846094065725952]', per_step='None') #59: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.77849216238651, 57.77849216238651]', per_step='None') #60: uascan(start=8.846314996883285, reference=8.845238231165801, finish=7.230036171470661, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #61: uascan(start=8.846314996883285, reference=8.845238231165801, finish=7.230036171470661, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #62: uascan(start=8.846314996883285, reference=8.845238231165801, finish=7.230036171470661, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #63: uascan(start=8.846314996883285, reference=8.845238231165801, finish=7.230036171470661, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #64: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.70219216238652, 57.70219216238652]', per_step='None') #65: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844337397855616, 8.846137397855616]', per_step='None') #66: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.46849216238652, 58.46849216238652]', per_step='None') #67: uascan(start=8.846304997161056, reference=8.845228231443572, finish=7.230026171748432, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #68: uascan(start=8.846304997161056, reference=8.845228231443572, finish=7.230026171748432, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #69: uascan(start=8.846304997161056, reference=8.845228231443572, finish=7.230026171748432, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #70: uascan(start=8.846304997161056, reference=8.845228231443572, finish=7.230026171748432, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #71: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.506492162386515, 58.506492162386515]', per_step='None') #72: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844329064753758, 8.846129064753757]', per_step='None') #73: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.116992162386516, 57.116992162386516]', per_step='None') #74: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #75: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #76: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #77: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #78: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.141392162386516, 57.141392162386516]', per_step='None') #79: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84437656343435, 8.84617656343435]', per_step='None') #80: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.32039216238651, 58.32039216238651]', per_step='None') #81: uascan(start=8.846340551728984, reference=8.8452637860115, finish=7.23006172631636, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #82: uascan(start=8.846340551728984, reference=8.8452637860115, finish=7.23006172631636, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #83: uascan(start=8.846340551728984, reference=8.8452637860115, finish=7.23006172631636, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #84: uascan(start=8.846340551728984, reference=8.8452637860115, finish=7.23006172631636, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #85: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.268292162386516, 58.268292162386516]', per_step='None') #86: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844364341551625, 8.846164341551624]', per_step='None') #87: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.311092162386515, 57.311092162386515]', per_step='None') #88: uascan(start=8.846367495424992, reference=8.845290729707509, finish=7.2300886700123685, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #89: uascan(start=8.846367495424992, reference=8.845290729707509, finish=7.2300886700123685, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #90: uascan(start=8.846367495424992, reference=8.845290729707509, finish=7.2300886700123685, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #91: uascan(start=8.846367495424992, reference=8.845290729707509, finish=7.2300886700123685, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #92: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.27539216238652, 57.27539216238652]', per_step='None') #93: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84439100747757, 8.84619100747757]', per_step='None') #94: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.10439216238652, 58.10439216238652]', per_step='None') #95: uascan(start=8.84634416273979, reference=8.845267397022306, finish=7.230065337327166, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #96: uascan(start=8.84634416273979, reference=8.845267397022306, finish=7.230065337327166, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #97: uascan(start=8.84634416273979, reference=8.845267397022306, finish=7.230065337327166, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #98: uascan(start=8.84634416273979, reference=8.845267397022306, finish=7.230065337327166, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #99: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.17939216238651, 58.17939216238651]', per_step='None') #100: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844365452631873, 8.846165452631872]', per_step='None') #101: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.14419216238652, 57.14419216238652]', per_step='None') #102: uascan(start=8.84638305054846, reference=8.845306284830977, finish=7.230104225135837, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #103: uascan(start=8.84638305054846, reference=8.845306284830977, finish=7.230104225135837, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #104: uascan(start=8.84638305054846, reference=8.845306284830977, finish=7.230104225135837, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #105: uascan(start=8.84638305054846, reference=8.845306284830977, finish=7.230104225135837, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #106: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.01729216238652, 57.01729216238652]', per_step='None') #107: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844405451520792, 8.846205451520792]', per_step='None') #108: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.55539216238652, 58.55539216238652]', per_step='None') #109: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #110: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #111: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #112: uascan(start=8.846354162462019, reference=8.845277396744535, finish=7.230075337049395, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #113: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.60399216238651, 58.60399216238651]', per_step='None') #114: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844375730124165, 8.846175730124164]', per_step='None') #115: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.54939216238652, 57.54939216238652]', per_step='None') #116: uascan(start=8.846383883858646, reference=8.845307118141163, finish=7.230105058446022, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #117: uascan(start=8.846383883858646, reference=8.845307118141163, finish=7.230105058446022, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #118: uascan(start=8.846383883858646, reference=8.845307118141163, finish=7.230105058446022, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #119: uascan(start=8.846383883858646, reference=8.845307118141163, finish=7.230105058446022, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #120: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.54709216238651, 57.54709216238651]', per_step='None') #121: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844408784761535, 8.846208784761535]', per_step='None') #122: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.005892162386516, 59.005892162386516]', per_step='None') #123: uascan(start=8.84634138503917, reference=8.845264619321686, finish=7.230062559626545, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #124: uascan(start=8.84634138503917, reference=8.845264619321686, finish=7.230062559626545, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #125: uascan(start=8.84634138503917, reference=8.845264619321686, finish=7.230062559626545, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #126: uascan(start=8.84634138503917, reference=8.845264619321686, finish=7.230062559626545, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #127: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.145592162386514, 59.145592162386514]', per_step='None') #128: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844362952701315, 8.846162952701315]', per_step='None') #129: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.675992162386514, 58.675992162386514]', per_step='None') #130: uascan(start=8.846358329012949, reference=8.845281563295465, finish=7.230079503600325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #131: uascan(start=8.846358329012949, reference=8.845281563295465, finish=7.230079503600325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #132: uascan(start=8.846358329012949, reference=8.845281563295465, finish=7.230079503600325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #133: uascan(start=8.846358329012949, reference=8.845281563295465, finish=7.230079503600325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #134: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.519092162386514, 58.519092162386514]', per_step='None') #135: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844381285525403, 8.846181285525402]', per_step='None') #136: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.583792162386516, 59.583792162386516]', per_step='None') #137: uascan(start=8.846322496674958, reference=8.845245730957474, finish=7.230043671262334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #138: uascan(start=8.846322496674958, reference=8.845245730957474, finish=7.230043671262334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #139: uascan(start=8.846322496674958, reference=8.845245730957474, finish=7.230043671262334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #140: uascan(start=8.846322496674958, reference=8.845245730957474, finish=7.230043671262334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.3) #141: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.46699216238652, 59.46699216238652]', per_step='None') #142: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844344619877226, 8.846144619877226]', per_step='None') #143: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.472492162386516, 59.472492162386516]', per_step='None') #144: SAXS(detectors=['saxs_det'], num=1) #145: SAXS(detectors=['saxs_det'], num=1) #146: SAXS(detectors=['saxs_det'], num=1) #147: SAXS(detectors=['saxs_det'], num=1) #148: SAXS(detectors=['saxs_det'], num=1) #149: SAXS(detectors=['saxs_det'], num=1) #150: SAXS(detectors=['saxs_det'], num=1) #151: SAXS(detectors=['saxs_det'], num=1) #152: SAXS(detectors=['saxs_det'], num=1) #153: SAXS(detectors=['saxs_det'], num=1) #154: SAXS(detectors=['saxs_det'], num=1) #155: SAXS(detectors=['saxs_det'], num=1) #156: SAXS(detectors=['saxs_det'], num=1) #157: SAXS(detectors=['saxs_det'], num=1) #158: SAXS(detectors=['saxs_det'], 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num=1) #206: WAXS(detectors=['waxs_det'], num=1) #207: WAXS(detectors=['waxs_det'], num=1) #208: WAXS(detectors=['waxs_det'], num=1) #209: WAXS(detectors=['waxs_det'], num=1) #210: WAXS(detectors=['waxs_det'], num=1) #211: WAXS(detectors=['waxs_det'], num=1) #212: WAXS(detectors=['waxs_det'], num=1) #213: WAXS(detectors=['waxs_det'], num=1) #214: WAXS(detectors=['waxs_det'], num=1) #215: WAXS(detectors=['waxs_det'], num=1) #216: WAXS(detectors=['waxs_det'], num=1) #217: WAXS(detectors=['waxs_det'], num=1) #218: WAXS(detectors=['waxs_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: WAXS(detectors=['waxs_det'], num=1) #247: WAXS(detectors=['waxs_det'], num=1) #248: WAXS(detectors=['waxs_det'], num=1) #249: WAXS(detectors=['waxs_det'], num=1) #250: WAXS(detectors=['waxs_det'], num=1) #251: WAXS(detectors=['waxs_det'], num=1) #252: WAXS(detectors=['waxs_det'], num=1) #253: WAXS(detectors=['waxs_det'], num=1) #254: WAXS(detectors=['waxs_det'], num=1) #255: WAXS(detectors=['waxs_det'], num=1) #256: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.402492162386515, 59.402492162386515]', per_step='None') #257: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84434517541735, 8.84614517541735]', per_step='None') #258: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.91249216238651, 57.91249216238651]', per_step='None') #259: documentation_run() #260: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.63929216238652, 57.63929216238652]', per_step='None') #261: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844324620432767, 8.846124620432766]', per_step='None') #262: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.05629216238651, 56.05629216238651]', per_step='None') #263: uascan(start=8.846374717446603, reference=8.845297951729119, finish=7.230095892033979, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #264: uascan(start=8.846374717446603, reference=8.845297951729119, finish=7.230095892033979, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #265: uascan(start=8.846374717446603, reference=8.845297951729119, finish=7.230095892033979, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #266: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.29129216238651, 56.29129216238651]', per_step='None') #267: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844399340579429, 8.846199340579428]', per_step='None') #268: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.60399216238651, 55.60399216238651]', per_step='None') #269: uascan(start=8.846428049298495, reference=8.845351283581012, finish=7.230149223885872, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #270: uascan(start=8.846428049298495, reference=8.845351283581012, finish=7.230149223885872, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #271: uascan(start=8.846428049298495, reference=8.845351283581012, finish=7.230149223885872, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #272: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.67629216238652, 55.67629216238652]', per_step='None') #273: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844450450270827, 8.846250450270826]', per_step='None') #274: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.072892162386516, 56.072892162386516]', per_step='None') #275: uascan(start=8.846459715085558, reference=8.845382949368075, finish=7.230180889672934, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #276: uascan(start=8.846459715085558, reference=8.845382949368075, finish=7.230180889672934, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #277: uascan(start=8.846459715085558, reference=8.845382949368075, finish=7.230180889672934, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #278: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.79319216238652, 55.79319216238652]', per_step='None') #279: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844482949368075, 8.846282949368074]', per_step='None') #280: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.122092162386515, 54.122092162386515]', per_step='None') #281: uascan(start=8.846529157601044, reference=8.84545239188356, finish=7.23025033218842, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #282: uascan(start=8.846529157601044, reference=8.84545239188356, finish=7.23025033218842, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #283: uascan(start=8.846529157601044, reference=8.84545239188356, finish=7.23025033218842, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #284: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.075192162386514, 54.075192162386514]', per_step='None') #285: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844550447493127, 8.846350447493126]', per_step='None') #286: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.87519216238651, 55.87519216238651]', per_step='None') #287: uascan(start=8.846502213905035, reference=8.845425448187552, finish=7.230223388492411, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #288: uascan(start=8.846502213905035, reference=8.845425448187552, finish=7.230223388492411, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #289: uascan(start=8.846502213905035, reference=8.845425448187552, finish=7.230223388492411, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #290: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.70479216238652, 55.70479216238652]', per_step='None') #291: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844524614877365, 8.846324614877364]', per_step='None') #292: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.23609216238651, 54.23609216238651]', per_step='None') #293: uascan(start=8.84654304610414, reference=8.845466280386656, finish=7.230264220691516, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #294: uascan(start=8.84654304610414, reference=8.845466280386656, finish=7.230264220691516, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #295: uascan(start=8.84654304610414, reference=8.845466280386656, finish=7.230264220691516, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #296: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.19329216238651, 54.19329216238651]', per_step='None') #297: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844567113696844, 8.846367113696843]', per_step='None') #298: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.089592162386516, 53.089592162386516]', per_step='None') #299: uascan(start=8.846591933635041, reference=8.845515167917558, finish=7.2303131082224175, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #300: uascan(start=8.846591933635041, reference=8.845515167917558, finish=7.2303131082224175, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #301: uascan(start=8.846591933635041, reference=8.845515167917558, finish=7.2303131082224175, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #302: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 40.99439216238651, 52.99439216238651]', per_step='None') #303: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844615167917558, 8.846415167917558]', per_step='None') #304: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.682892162386516, 54.682892162386516]', per_step='None') #305: uascan(start=8.846576934051697, reference=8.845500168334214, finish=7.230298108639073, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #306: uascan(start=8.846576934051697, reference=8.845500168334214, finish=7.230298108639073, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #307: uascan(start=8.846576934051697, reference=8.845500168334214, finish=7.230298108639073, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #308: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.70049216238652, 54.70049216238652]', per_step='None') #309: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844598501713842, 8.846398501713841]', per_step='None') #310: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 40.75769216238651, 52.75769216238651]', per_step='None') #311: uascan(start=8.846611099769316, reference=8.845534334051832, finish=7.230332274356692, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #312: uascan(start=8.846611099769316, reference=8.845534334051832, finish=7.230332274356692, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #313: uascan(start=8.846611099769316, reference=8.845534334051832, finish=7.230332274356692, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #314: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 40.796492162386514, 52.796492162386514]', per_step='None') #315: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844634056281771, 8.84643405628177]', per_step='None') #316: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.29279216238651, 53.29279216238651]', per_step='None') #317: uascan(start=8.846636376844954, reference=8.84555961112747, finish=7.23035755143233, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #318: uascan(start=8.846636376844954, reference=8.84555961112747, finish=7.23035755143233, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #319: uascan(start=8.846636376844954, reference=8.84555961112747, finish=7.23035755143233, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #320: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.097892162386515, 53.097892162386515]', per_step='None') #321: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844658500047222, 8.846458500047222]', per_step='None') #322: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.29989216238651, 54.29989216238651]', per_step='None') #323: uascan(start=8.846604988827954, reference=8.84552822311047, finish=7.23032616341533, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #324: uascan(start=8.846604988827954, reference=8.84552822311047, finish=7.23032616341533, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #325: uascan(start=8.846604988827954, reference=8.84552822311047, finish=7.23032616341533, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #326: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.45219216238652, 54.45219216238652]', per_step='None') #327: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844627667570347, 8.846427667570346]', per_step='None') #328: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 40.83319216238652, 52.83319216238652]', per_step='None') #329: uascan(start=8.84664165447613, reference=8.845564888758647, finish=7.230362829063506, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #330: uascan(start=8.84664165447613, reference=8.845564888758647, finish=7.230362829063506, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #331: uascan(start=8.84664165447613, reference=8.845564888758647, finish=7.230362829063506, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #332: documentation_run() #333: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 40.70099216238651, 52.70099216238651]', per_step='None') #334: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.834744330996362, 8.836544330996361]', per_step='None') #335: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.54189216238652, 54.54189216238652]', per_step='None') #336: uascan(start=8.84664165447613, reference=8.845564888758647, finish=7.230362829063506, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #337: uascan(start=8.84664165447613, reference=8.845564888758647, finish=7.230362829063506, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #338: uascan(start=8.84664165447613, reference=8.845564888758647, finish=7.230362829063506, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #339: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.745792162386515, 54.745792162386515]', per_step='None') #340: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844664610988584, 8.846464610988583]', per_step='None') #341: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.977792162386514, 54.977792162386514]', per_step='None') #342: uascan(start=8.846593322485353, reference=8.845516556767869, finish=7.230314497072729, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #343: uascan(start=8.846593322485353, reference=8.845516556767869, finish=7.230314497072729, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #344: uascan(start=8.846593322485353, reference=8.845516556767869, finish=7.230314497072729, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #345: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.88229216238651, 54.88229216238651]', per_step='None') #346: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844617390078055, 8.846417390078054]', per_step='None') #347: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.61919216238651, 54.61919216238651]', per_step='None') #348: uascan(start=8.846569989800148, reference=8.845493224082665, finish=7.230291164387524, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #349: uascan(start=8.846569989800148, reference=8.845493224082665, finish=7.230291164387524, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #350: uascan(start=8.846569989800148, reference=8.845493224082665, finish=7.230291164387524, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #351: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.628492162386515, 54.628492162386515]', per_step='None') #352: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84459239077248, 8.846392390772479]', per_step='None') #353: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.75919216238651, 55.75919216238651]', per_step='None') #354: uascan(start=8.846533601922035, reference=8.845456836204551, finish=7.230254776509411, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #355: uascan(start=8.846533601922035, reference=8.845456836204551, finish=7.230254776509411, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #356: uascan(start=8.846533601922035, reference=8.845456836204551, finish=7.230254776509411, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #357: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.870992162386514, 55.870992162386514]', per_step='None') #358: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844556002894365, 8.846356002894364]', per_step='None') #359: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.437792162386515, 56.437792162386515]', per_step='None') #360: uascan(start=8.846495547423547, reference=8.845418781706064, finish=7.2302167220109235, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #361: uascan(start=8.846495547423547, reference=8.845418781706064, finish=7.2302167220109235, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #362: uascan(start=8.846495547423547, reference=8.845418781706064, finish=7.2302167220109235, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #363: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.513592162386516, 56.513592162386516]', per_step='None') #364: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84451822616594, 8.84631822616594]', per_step='None') #365: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.24269216238651, 56.24269216238651]', per_step='None') #366: uascan(start=8.846487492091752, reference=8.845410726374269, finish=7.230208666679128, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #367: uascan(start=8.846487492091752, reference=8.845410726374269, finish=7.230208666679128, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #368: uascan(start=8.846487492091752, reference=8.845410726374269, finish=7.230208666679128, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #369: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.391992162386515, 56.391992162386515]', per_step='None') #370: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844510170834145, 8.846310170834144]', per_step='None') #371: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.08599216238652, 57.08599216238652]', per_step='None') #372: uascan(start=8.846463048326301, reference=8.845386282608818, finish=7.230184222913677, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #373: uascan(start=8.846463048326301, reference=8.845386282608818, finish=7.230184222913677, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #374: uascan(start=8.846463048326301, reference=8.845386282608818, finish=7.230184222913677, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1086.0, ax0=14.66, SAD_mm=254.0, exponent=1.1, intervals=300, count_time=0.6) #375: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.06209216238651, 57.06209216238651]', per_step='None') #376: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844485449298631, 8.84628544929863]', per_step='None') #377: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.156992162386516, 57.156992162386516]', per_step='None') #378: SAXS(detectors=['saxs_det'], num=1) #379: SAXS(detectors=['saxs_det'], num=1) #380: SAXS(detectors=['saxs_det'], num=1) #381: SAXS(detectors=['saxs_det'], num=1) #382: SAXS(detectors=['saxs_det'], num=1) #383: SAXS(detectors=['saxs_det'], num=1) #384: SAXS(detectors=['saxs_det'], num=1) #385: SAXS(detectors=['saxs_det'], num=1) #386: SAXS(detectors=['saxs_det'], num=1) #387: SAXS(detectors=['saxs_det'], num=1) #388: 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num=1) #412: SAXS(detectors=['saxs_det'], num=1) #413: SAXS(detectors=['saxs_det'], num=1) #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: WAXS(detectors=['waxs_det'], num=1) #435: WAXS(detectors=['waxs_det'], num=1) #436: WAXS(detectors=['waxs_det'], num=1) #437: WAXS(detectors=['waxs_det'], num=1) #438: WAXS(detectors=['waxs_det'], num=1) #439: WAXS(detectors=['waxs_det'], num=1) #440: WAXS(detectors=['waxs_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: WAXS(detectors=['waxs_det'], num=1) #469: WAXS(detectors=['waxs_det'], num=1) #470: WAXS(detectors=['waxs_det'], num=1) #471: WAXS(detectors=['waxs_det'], num=1) #472: WAXS(detectors=['waxs_det'], num=1) #473: WAXS(detectors=['waxs_det'], num=1) #474: WAXS(detectors=['waxs_det'], num=1) #475: WAXS(detectors=['waxs_det'], num=1) #476: WAXS(detectors=['waxs_det'], num=1) #477: WAXS(detectors=['waxs_det'], num=1) #478: WAXS(detectors=['waxs_det'], num=1) #479: WAXS(detectors=['waxs_det'], num=1) #480: WAXS(detectors=['waxs_det'], num=1) #481: WAXS(detectors=['waxs_det'], num=1) #482: 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