SPEC scans from: /share1/USAXS_data/2023-03/03_15_Plates/03_15_Plates.dat

spec file: /share1/USAXS_data/2023-03/03_15_Plates/03_15_Plates.dat
#2: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841260179744374, 8.846260179744373]', per_step='None') #3: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843123599344462, 8.844923599344462]', per_step='None') #4: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.96319216238651, 49.96319216238651]', per_step='None') #5: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.84129184641104, 8.84629184641104]', per_step='None') #6: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843401369406406, 8.845201369406405]', per_step='None') #7: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.281292162386514, 49.281292162386514]', per_step='None') #8: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841276013077707, 8.846276013077706]', per_step='None') #9: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843398036165663, 8.845198036165662]', per_step='None') #10: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.22489216238652, 49.22489216238652]', per_step='None') #11: documentation_run() #12: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.67469216238651, 49.67469216238651]', per_step='None') #13: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843169431404684, 8.844969431404683]', per_step='None') #14: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.71869216238652, 49.71869216238652]', per_step='None') #15: SAXS(detectors=['saxs_det'], num=1) #16: WAXS(detectors=['waxs_det'], num=1) #17: documentation_run() #18: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.332892162386514, 49.332892162386514]', per_step='None') #19: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84316748701425, 8.84496748701425]', per_step='None') #20: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.971792162386514, 49.971792162386514]', per_step='None') #21: uascan(start=8.845162030015697, reference=8.844085264298213, finish=7.228883204603073, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #22: uascan(start=8.845162030015697, reference=8.844085264298213, finish=7.228883204603073, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #23: uascan(start=8.845162030015697, reference=8.844085264298213, finish=7.228883204603073, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #24: uascan(start=8.845162030015697, reference=8.844085264298213, finish=7.228883204603073, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #25: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.16119216238651, 50.16119216238651]', per_step='None') #26: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843185264298214, 8.844985264298213]', per_step='None') #27: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.33819216238651, 50.33819216238651]', per_step='None') #28: uascan(start=8.845153141373716, reference=8.844076375656233, finish=7.228874315961092, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #29: uascan(start=8.845153141373716, reference=8.844076375656233, finish=7.228874315961092, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #30: uascan(start=8.845153141373716, reference=8.844076375656233, finish=7.228874315961092, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #31: uascan(start=8.845153141373716, reference=8.844076375656233, finish=7.228874315961092, minStep=2e-05, dx0=98.00668199999998, SDD_mm=180.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #32: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.84130184641104, 8.84630184641104]', per_step='None') #33: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843177764506542, 8.844977764506542]', per_step='None') #34: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.407192162386515, 50.407192162386515]', per_step='None') #35: documentation_run() #36: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.02389216238652, 50.02389216238652]', per_step='None') #37: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843175264575985, 8.844975264575984]', per_step='None') #38: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.039492162386516, 50.039492162386516]', per_step='None') #39: documentation_run() #40: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.23419216238651, 50.23419216238651]', per_step='None') #41: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84322054109608, 8.84502054109608]', per_step='None') #42: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.28229216238651, 50.28229216238651]', per_step='None') #43: uascan(start=8.845178418449352, reference=8.844101652731869, finish=7.228899593036728, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #44: uascan(start=8.845178418449352, reference=8.844101652731869, finish=7.228899593036728, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #45: uascan(start=8.845178418449352, reference=8.844101652731869, finish=7.228899593036728, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #46: uascan(start=8.845178418449352, reference=8.844101652731869, finish=7.228899593036728, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #47: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.13849216238651, 50.13849216238651]', per_step='None') #48: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843200819421684, 8.845000819421683]', per_step='None') #49: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.47619216238651, 50.47619216238651]', per_step='None') #50: uascan(start=8.845163418866008, reference=8.844086653148524, finish=7.228884593453384, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #51: uascan(start=8.845163418866008, reference=8.844086653148524, finish=7.228884593453384, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #52: uascan(start=8.845163418866008, reference=8.844086653148524, finish=7.228884593453384, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #53: uascan(start=8.845163418866008, reference=8.844086653148524, finish=7.228884593453384, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #54: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.44499216238651, 50.44499216238651]', per_step='None') #55: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843188041998834, 8.844988041998834]', per_step='None') #56: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.206192162386515, 50.206192162386515]', per_step='None') #57: uascan(start=8.845165085486379, reference=8.844088319768895, finish=7.228886260073755, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #58: uascan(start=8.845165085486379, reference=8.844088319768895, finish=7.228886260073755, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #59: uascan(start=8.845165085486379, reference=8.844088319768895, finish=7.228886260073755, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #60: uascan(start=8.845165085486379, reference=8.844088319768895, finish=7.228886260073755, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #61: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.174492162386514, 50.174492162386514]', per_step='None') #62: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843188319768895, 8.844988319768895]', per_step='None') #63: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.90349216238651, 50.90349216238651]', per_step='None') #64: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #65: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #66: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #67: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #68: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.866492162386514, 50.866492162386514]', per_step='None') #69: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843171931335242, 8.844971931335241]', per_step='None') #70: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.25259216238651, 50.25259216238651]', per_step='None') #71: uascan(start=8.84515953008514, reference=8.844082764367657, finish=7.228880704672517, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #72: uascan(start=8.84515953008514, reference=8.844082764367657, finish=7.228880704672517, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #73: uascan(start=8.84515953008514, reference=8.844082764367657, finish=7.228880704672517, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #74: uascan(start=8.84515953008514, reference=8.844082764367657, finish=7.228880704672517, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #75: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.24379216238651, 50.24379216238651]', per_step='None') #76: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843182764367658, 8.844982764367657]', per_step='None') #77: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.776592162386514, 50.776592162386514]', per_step='None') #78: uascan(start=8.8451481415126, reference=8.844071375795117, finish=7.228869316099977, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #79: uascan(start=8.8451481415126, reference=8.844071375795117, finish=7.228869316099977, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #80: uascan(start=8.8451481415126, reference=8.844071375795117, finish=7.228869316099977, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #81: uascan(start=8.8451481415126, reference=8.844071375795117, finish=7.228869316099977, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #82: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.81009216238652, 50.81009216238652]', per_step='None') #83: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843167764784312, 8.844967764784311]', per_step='None') #84: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.53059216238651, 50.53059216238651]', per_step='None') #85: uascan(start=8.845149252592849, reference=8.844072486875366, finish=7.228870427180225, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #86: uascan(start=8.845149252592849, reference=8.844072486875366, finish=7.228870427180225, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #87: uascan(start=8.845149252592849, reference=8.844072486875366, finish=7.228870427180225, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #88: uascan(start=8.845149252592849, reference=8.844072486875366, finish=7.228870427180225, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #89: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.43359216238652, 50.43359216238652]', per_step='None') #90: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843171931335242, 8.844971931335241]', per_step='None') #91: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.406992162386516, 50.406992162386516]', per_step='None') #92: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #93: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #94: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #95: uascan(start=8.845149808132971, reference=8.844073042415488, finish=7.2288709827203474, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #96: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.41779216238651, 50.41779216238651]', per_step='None') #97: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843173042415488, 8.844973042415488]', per_step='None') #98: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.728292162386516, 50.728292162386516]', per_step='None') #99: uascan(start=8.845144530501795, reference=8.844067764784311, finish=7.228865705089171, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #100: uascan(start=8.845144530501795, reference=8.844067764784311, finish=7.228865705089171, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #101: uascan(start=8.845144530501795, reference=8.844067764784311, finish=7.228865705089171, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #102: uascan(start=8.845144530501795, reference=8.844067764784311, finish=7.228865705089171, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #103: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.70609216238651, 50.70609216238651]', per_step='None') #104: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843166653704063, 8.844966653704063]', per_step='None') #105: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.45099216238651, 50.45099216238651]', per_step='None') #106: uascan(start=8.845160641165387, reference=8.844083875447904, finish=7.2288818157527635, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #107: uascan(start=8.845160641165387, reference=8.844083875447904, finish=7.2288818157527635, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #108: uascan(start=8.845160641165387, reference=8.844083875447904, finish=7.2288818157527635, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #109: uascan(start=8.845160641165387, reference=8.844083875447904, finish=7.2288818157527635, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #110: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.425592162386515, 50.425592162386515]', per_step='None') #111: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843183597677843, 8.844983597677842]', per_step='None') #112: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.30139216238651, 51.30139216238651]', per_step='None') #113: uascan(start=8.845140641720928, reference=8.844063876003444, finish=7.228861816308304, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #114: uascan(start=8.845140641720928, reference=8.844063876003444, finish=7.228861816308304, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #115: uascan(start=8.845140641720928, reference=8.844063876003444, finish=7.228861816308304, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #116: uascan(start=8.845140641720928, reference=8.844063876003444, finish=7.228861816308304, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #117: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.31849216238651, 51.31849216238651]', per_step='None') #118: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84316470931363, 8.84496470931363]', per_step='None') #119: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.65949216238651, 50.65949216238651]', per_step='None') #120: uascan(start=8.84515536353421, reference=8.844078597816727, finish=7.228876538121587, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #121: uascan(start=8.84515536353421, reference=8.844078597816727, finish=7.228876538121587, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #122: uascan(start=8.84515536353421, reference=8.844078597816727, finish=7.228876538121587, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #123: uascan(start=8.84515536353421, reference=8.844078597816727, finish=7.228876538121587, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #124: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.63209216238651, 50.63209216238651]', per_step='None') #125: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843177208966418, 8.844977208966418]', per_step='None') #126: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.79449216238651, 50.79449216238651]', per_step='None') #127: uascan(start=8.84514953036291, reference=8.844072764645427, finish=7.228870704950286, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #128: uascan(start=8.84514953036291, reference=8.844072764645427, finish=7.228870704950286, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #129: uascan(start=8.84514953036291, reference=8.844072764645427, finish=7.228870704950286, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #130: uascan(start=8.84514953036291, reference=8.844072764645427, finish=7.228870704950286, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #131: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.853892162386515, 50.853892162386515]', per_step='None') #132: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843171931335242, 8.844971931335241]', per_step='None') #133: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.03399216238651, 51.03399216238651]', per_step='None') #134: uascan(start=8.845144252731734, reference=8.84406748701425, finish=7.22886542731911, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #135: uascan(start=8.845144252731734, reference=8.84406748701425, finish=7.22886542731911, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #136: uascan(start=8.845144252731734, reference=8.84406748701425, finish=7.22886542731911, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3) #137: uascan(start=8.845144252731734, reference=8.84406748701425, finish=7.22886542731911, minStep=2e-05, dx0=98.00668199999998, SDD_mm=1080.0, ax0=14.66, SAD_mm=252.0, exponent=1.1, intervals=300, count_time=0.3)