SPEC scans from: /share1/USAXS_data/2023-02/02_10_Josh_Static2/02_10_Josh_Static2.dat

spec file: /share1/USAXS_data/2023-02/02_10_Josh_Static2/02_10_Josh_Static2.dat
#2: documentation_run() #3: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.782192162386515, 60.782192162386515]', per_step='None') #4: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843806857037306, 8.845606857037305]', per_step='None') #5: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.098992162386516, 60.098992162386516]', per_step='None') #6: SAXS(detectors=['saxs_det'], num=1) #7: WAXS(detectors=['waxs_det'], num=1) #8: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841015491785145, 8.846015491785144]', per_step='None') #9: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843811856898421, 8.84561185689842]', per_step='None') #10: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.12299216238652, 60.12299216238652]', per_step='None') #11: documentation_run() #12: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.44029216238651, 59.44029216238651]', per_step='None') #13: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843821301080526, 8.845621301080525]', per_step='None') #14: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 48.35509216238651, 60.35509216238651]', per_step='None') #15: uascan(start=8.845632793611154, reference=8.84455602789367, finish=7.22935396819853, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #16: uascan(start=8.845632793611154, reference=8.84455602789367, finish=7.22935396819853, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #17: uascan(start=8.845632793611154, reference=8.84455602789367, finish=7.22935396819853, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #18: uascan(start=8.845632793611154, reference=8.84455602789367, finish=7.22935396819853, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #19: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 47.66569216238651, 59.66569216238651]', per_step='None') #20: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843654916813422, 8.845454916813422]', per_step='None') #21: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.049492162386514, 58.049492162386514]', per_step='None') #22: uascan(start=8.845605294375021, reference=8.844528528657538, finish=7.229326468962397, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #23: uascan(start=8.845605294375021, reference=8.844528528657538, finish=7.229326468962397, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #24: uascan(start=8.845605294375021, reference=8.844528528657538, finish=7.229326468962397, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #25: uascan(start=8.845605294375021, reference=8.844528528657538, finish=7.229326468962397, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #26: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.951292162386515, 57.951292162386515]', per_step='None') #27: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843628806427601, 8.8454288064276]', per_step='None') #28: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.630192162386514, 57.630192162386514]', per_step='None') #29: uascan(start=8.845589183711429, reference=8.844512417993945, finish=7.229310358298805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #30: uascan(start=8.845589183711429, reference=8.844512417993945, finish=7.229310358298805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #31: uascan(start=8.845589183711429, reference=8.844512417993945, finish=7.229310358298805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #32: uascan(start=8.845589183711429, reference=8.844512417993945, finish=7.229310358298805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #33: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.621892162386516, 57.621892162386516]', per_step='None') #34: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843612140223884, 8.845412140223884]', per_step='None') #35: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.65109216238651, 57.65109216238651]', per_step='None') #36: uascan(start=8.84558807263118, reference=8.844511306913697, finish=7.2293092472185565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #37: uascan(start=8.84558807263118, reference=8.844511306913697, finish=7.2293092472185565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #38: uascan(start=8.84558807263118, reference=8.844511306913697, finish=7.2293092472185565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #39: uascan(start=8.84558807263118, reference=8.844511306913697, finish=7.2293092472185565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #40: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.58539216238651, 57.58539216238651]', per_step='None') #41: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84360880698314, 8.845408806983139]', per_step='None') #42: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.473092162386514, 57.473092162386514]', per_step='None') #43: uascan(start=8.845578350679013, reference=8.84450158496153, finish=7.229299525266389, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #44: uascan(start=8.845578350679013, reference=8.84450158496153, finish=7.229299525266389, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #45: uascan(start=8.845578350679013, reference=8.84450158496153, finish=7.229299525266389, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #46: uascan(start=8.845578350679013, reference=8.84450158496153, finish=7.229299525266389, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #47: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.604292162386514, 57.604292162386514]', per_step='None') #48: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843601029421405, 8.845401029421405]', per_step='None') #49: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.340792162386514, 57.340792162386514]', per_step='None') #50: uascan(start=8.845595294652792, reference=8.844518528935309, finish=7.229316469240168, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #51: uascan(start=8.845595294652792, reference=8.844518528935309, finish=7.229316469240168, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #52: uascan(start=8.845595294652792, reference=8.844518528935309, finish=7.229316469240168, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #53: uascan(start=8.845595294652792, reference=8.844518528935309, finish=7.229316469240168, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #54: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.16329216238651, 57.16329216238651]', per_step='None') #55: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843616306774813, 8.845416306774812]', per_step='None') #56: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.897592162386516, 56.897592162386516]', per_step='None') #57: uascan(start=8.845608905385827, reference=8.844532139668344, finish=7.229330079973203, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #58: uascan(start=8.845608905385827, reference=8.844532139668344, finish=7.229330079973203, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #59: uascan(start=8.845608905385827, reference=8.844532139668344, finish=7.229330079973203, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #60: uascan(start=8.845608905385827, reference=8.844532139668344, finish=7.229330079973203, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #61: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.783292162386516, 56.783292162386516]', per_step='None') #62: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843627973117414, 8.845427973117413]', per_step='None') #63: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.94319216238652, 56.94319216238652]', per_step='None') #64: uascan(start=8.84558057283951, reference=8.844503807122026, finish=7.229301747426885, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #65: uascan(start=8.84558057283951, reference=8.844503807122026, finish=7.229301747426885, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #66: uascan(start=8.84558057283951, reference=8.844503807122026, finish=7.229301747426885, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #67: uascan(start=8.84558057283951, reference=8.844503807122026, finish=7.229301747426885, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #68: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.10639216238651, 57.10639216238651]', per_step='None') #69: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843604640432211, 8.84540464043221]', per_step='None') #70: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.199792162386515, 57.199792162386515]', per_step='None') #71: uascan(start=8.845574739668209, reference=8.844497973950725, finish=7.229295914255585, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #72: uascan(start=8.845574739668209, reference=8.844497973950725, finish=7.229295914255585, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #73: uascan(start=8.845574739668209, reference=8.844497973950725, finish=7.229295914255585, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #74: uascan(start=8.845574739668209, reference=8.844497973950725, finish=7.229295914255585, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #75: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.190792162386515, 57.190792162386515]', per_step='None') #76: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843597418410601, 8.8453974184106]', per_step='None') #77: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.98049216238651, 56.98049216238651]', per_step='None') #78: uascan(start=8.8455850171605, reference=8.844508251443017, finish=7.2293061917478765, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #79: uascan(start=8.8455850171605, reference=8.844508251443017, finish=7.2293061917478765, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #80: uascan(start=8.8455850171605, reference=8.844508251443017, finish=7.2293061917478765, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #81: uascan(start=8.8455850171605, reference=8.844508251443017, finish=7.2293061917478765, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #82: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.882792162386515, 56.882792162386515]', per_step='None') #83: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843608529213078, 8.845408529213078]', per_step='None') #84: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.97619216238652, 57.97619216238652]', per_step='None') #85: uascan(start=8.845552240293191, reference=8.844475474575708, finish=7.229273414880567, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #86: uascan(start=8.845552240293191, reference=8.844475474575708, finish=7.229273414880567, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #87: uascan(start=8.845552240293191, reference=8.844475474575708, finish=7.229273414880567, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #88: uascan(start=8.845552240293191, reference=8.844475474575708, finish=7.229273414880567, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #89: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.985492162386514, 57.985492162386514]', per_step='None') #90: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843575474575708, 8.845375474575707]', per_step='None') #91: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.30409216238652, 58.30409216238652]', per_step='None') #92: uascan(start=8.845525574367244, reference=8.84444880864976, finish=7.22924674895462, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #93: uascan(start=8.845525574367244, reference=8.84444880864976, finish=7.22924674895462, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #94: uascan(start=8.845525574367244, reference=8.84444880864976, finish=7.22924674895462, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #95: uascan(start=8.845525574367244, reference=8.84444880864976, finish=7.22924674895462, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #96: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 46.31739216238651, 58.31739216238651]', per_step='None') #97: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843548253109637, 8.845348253109636]', per_step='None') #98: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.88779216238652, 57.88779216238652]', per_step='None') #99: uascan(start=8.845524741057059, reference=8.844447975339575, finish=7.229245915644435, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #100: uascan(start=8.845524741057059, reference=8.844447975339575, finish=7.229245915644435, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #101: SAXS(detectors=['saxs_det'], num=1) #102: SAXS(detectors=['saxs_det'], num=1) #103: SAXS(detectors=['saxs_det'], num=1) #104: SAXS(detectors=['saxs_det'], num=1) #105: SAXS(detectors=['saxs_det'], num=1) #106: SAXS(detectors=['saxs_det'], num=1) #107: SAXS(detectors=['saxs_det'], num=1) #108: SAXS(detectors=['saxs_det'], num=1) #109: SAXS(detectors=['saxs_det'], num=1) #110: SAXS(detectors=['saxs_det'], num=1) #111: SAXS(detectors=['saxs_det'], num=1) #112: SAXS(detectors=['saxs_det'], num=1) #113: SAXS(detectors=['saxs_det'], num=1) #114: SAXS(detectors=['saxs_det'], num=1) #115: SAXS(detectors=['saxs_det'], num=1) #116: SAXS(detectors=['saxs_det'], num=1) #117: SAXS(detectors=['saxs_det'], num=1) #118: SAXS(detectors=['saxs_det'], num=1) #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: SAXS(detectors=['saxs_det'], num=1) #128: SAXS(detectors=['saxs_det'], num=1) #129: SAXS(detectors=['saxs_det'], num=1) #130: SAXS(detectors=['saxs_det'], num=1) #131: SAXS(detectors=['saxs_det'], num=1) #132: SAXS(detectors=['saxs_det'], num=1) #133: SAXS(detectors=['saxs_det'], num=1) #134: SAXS(detectors=['saxs_det'], num=1) #135: SAXS(detectors=['saxs_det'], num=1) #136: SAXS(detectors=['saxs_det'], num=1) #137: SAXS(detectors=['saxs_det'], num=1) #138: SAXS(detectors=['saxs_det'], num=1) #139: SAXS(detectors=['saxs_det'], num=1) #140: SAXS(detectors=['saxs_det'], num=1) #141: SAXS(detectors=['saxs_det'], num=1) #142: SAXS(detectors=['saxs_det'], num=1) #143: SAXS(detectors=['saxs_det'], num=1) #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: WAXS(detectors=['waxs_det'], num=1) #152: WAXS(detectors=['waxs_det'], num=1) #153: WAXS(detectors=['waxs_det'], num=1) #154: WAXS(detectors=['waxs_det'], num=1) #155: WAXS(detectors=['waxs_det'], num=1) #156: WAXS(detectors=['waxs_det'], num=1) #157: WAXS(detectors=['waxs_det'], num=1) #158: WAXS(detectors=['waxs_det'], num=1) #159: WAXS(detectors=['waxs_det'], num=1) #160: WAXS(detectors=['waxs_det'], num=1) #161: WAXS(detectors=['waxs_det'], num=1) #162: WAXS(detectors=['waxs_det'], num=1) #163: WAXS(detectors=['waxs_det'], num=1) no plot: #164 WAXS(detectors=['waxs_det'], num=1) #165: WAXS(detectors=['waxs_det'], num=1) #166: WAXS(detectors=['waxs_det'], num=1) #167: WAXS(detectors=['waxs_det'], num=1) #168: WAXS(detectors=['waxs_det'], num=1) #169: WAXS(detectors=['waxs_det'], num=1) #170: WAXS(detectors=['waxs_det'], num=1) #171: WAXS(detectors=['waxs_det'], num=1) #172: WAXS(detectors=['waxs_det'], num=1) #173: WAXS(detectors=['waxs_det'], num=1) #174: WAXS(detectors=['waxs_det'], num=1) #175: WAXS(detectors=['waxs_det'], num=1) #176: WAXS(detectors=['waxs_det'], num=1) #177: WAXS(detectors=['waxs_det'], num=1) #178: WAXS(detectors=['waxs_det'], num=1) #179: WAXS(detectors=['waxs_det'], num=1) #180: WAXS(detectors=['waxs_det'], num=1) #181: WAXS(detectors=['waxs_det'], num=1) #182: WAXS(detectors=['waxs_det'], num=1) #183: WAXS(detectors=['waxs_det'], num=1) #184: WAXS(detectors=['waxs_det'], num=1) #185: WAXS(detectors=['waxs_det'], num=1) #186: WAXS(detectors=['waxs_det'], num=1) #187: WAXS(detectors=['waxs_det'], num=1) #188: WAXS(detectors=['waxs_det'], num=1) #189: WAXS(detectors=['waxs_det'], num=1) #190: WAXS(detectors=['waxs_det'], num=1) #191: WAXS(detectors=['waxs_det'], num=1) #192: WAXS(detectors=['waxs_det'], num=1) #193: WAXS(detectors=['waxs_det'], num=1) #194: WAXS(detectors=['waxs_det'], num=1) #195: WAXS(detectors=['waxs_det'], num=1) #196: WAXS(detectors=['waxs_det'], num=1) #197: WAXS(detectors=['waxs_det'], num=1) #198: WAXS(detectors=['waxs_det'], num=1) #199: WAXS(detectors=['waxs_det'], num=1) #200: WAXS(detectors=['waxs_det'], num=1) #201: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.899892162386514, 57.899892162386514]', per_step='None') #202: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843546586489266, 8.845346586489265]', per_step='None') #203: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.72209216238652, 57.72209216238652]', per_step='None') #204: uascan(start=8.845520018966004, reference=8.84444325324852, finish=7.2292411935533805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #205: uascan(start=8.845520018966004, reference=8.84444325324852, finish=7.2292411935533805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #206: uascan(start=8.845520018966004, reference=8.84444325324852, finish=7.2292411935533805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #207: uascan(start=8.845520018966004, reference=8.84444325324852, finish=7.2292411935533805, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #208: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.72239216238651, 57.72239216238651]', per_step='None') #209: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843542142168275, 8.845342142168274]', per_step='None') #210: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.350892162386515, 56.350892162386515]', per_step='None') #211: uascan(start=8.84556779541666, reference=8.844491029699176, finish=7.229288970004036, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #212: uascan(start=8.84556779541666, reference=8.844491029699176, finish=7.229288970004036, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #213: uascan(start=8.84556779541666, reference=8.844491029699176, finish=7.229288970004036, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #214: uascan(start=8.84556779541666, reference=8.844491029699176, finish=7.229288970004036, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #215: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.464992162386515, 56.464992162386515]', per_step='None') #216: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843593529629734, 8.845393529629733]', per_step='None') #217: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.326292162386515, 56.326292162386515]', per_step='None') #218: uascan(start=8.845590572561738, reference=8.844513806844255, finish=7.229311747149114, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #219: uascan(start=8.845590572561738, reference=8.844513806844255, finish=7.229311747149114, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #220: uascan(start=8.845590572561738, reference=8.844513806844255, finish=7.229311747149114, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #221: uascan(start=8.845590572561738, reference=8.844513806844255, finish=7.229311747149114, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #222: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.406792162386516, 56.406792162386516]', per_step='None') #223: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843614917924503, 8.845414917924503]', per_step='None') #224: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.19909216238651, 56.19909216238651]', per_step='None') #225: uascan(start=8.84558640601081, reference=8.844509640293326, finish=7.229307580598186, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #226: uascan(start=8.84558640601081, reference=8.844509640293326, finish=7.229307580598186, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #227: uascan(start=8.84558640601081, reference=8.844509640293326, finish=7.229307580598186, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #228: uascan(start=8.84558640601081, reference=8.844509640293326, finish=7.229307580598186, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #229: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.299292162386514, 56.299292162386514]', per_step='None') #230: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843611029143636, 8.845411029143635]', per_step='None') #231: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.97299216238651, 55.97299216238651]', per_step='None') #232: uascan(start=8.84560085005403, reference=8.844524084336546, finish=7.229322024641406, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #233: uascan(start=8.84560085005403, reference=8.844524084336546, finish=7.229322024641406, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #234: uascan(start=8.84560085005403, reference=8.844524084336546, finish=7.229322024641406, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #235: uascan(start=8.84560085005403, reference=8.844524084336546, finish=7.229322024641406, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #236: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.06509216238651, 56.06509216238651]', per_step='None') #237: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843622139946113, 8.845422139946113]', per_step='None') #238: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.912292162386514, 55.912292162386514]', per_step='None') #239: uascan(start=8.845618627337995, reference=8.844541861620511, finish=7.229339801925371, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #240: uascan(start=8.845618627337995, reference=8.844541861620511, finish=7.229339801925371, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #241: uascan(start=8.845618627337995, reference=8.844541861620511, finish=7.229339801925371, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #242: uascan(start=8.845618627337995, reference=8.844541861620511, finish=7.229339801925371, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #243: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.91929216238651, 55.91929216238651]', per_step='None') #244: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843641028310326, 8.845441028310326]', per_step='None') #245: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.87799216238651, 55.87799216238651]', per_step='None') #246: uascan(start=8.845621127268553, reference=8.844544361551069, finish=7.229342301855929, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #247: uascan(start=8.845621127268553, reference=8.844544361551069, finish=7.229342301855929, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #248: uascan(start=8.845621127268553, reference=8.844544361551069, finish=7.229342301855929, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #249: uascan(start=8.845621127268553, reference=8.844544361551069, finish=7.229342301855929, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #250: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.80049216238651, 55.80049216238651]', per_step='None') #251: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843643806010945, 8.845443806010945]', per_step='None') #252: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.74459216238652, 55.74459216238652]', per_step='None') #253: uascan(start=8.845615016327189, reference=8.844538250609705, finish=7.229336190914565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #254: uascan(start=8.845615016327189, reference=8.844538250609705, finish=7.229336190914565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #255: uascan(start=8.845615016327189, reference=8.844538250609705, finish=7.229336190914565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #256: uascan(start=8.845615016327189, reference=8.844538250609705, finish=7.229336190914565, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #257: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.93319216238651, 55.93319216238651]', per_step='None') #258: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843642694930697, 8.845442694930696]', per_step='None') #259: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.691192162386514, 55.691192162386514]', per_step='None') #260: uascan(start=8.84563362692134, reference=8.844556861203856, finish=7.229354801508715, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #261: uascan(start=8.84563362692134, reference=8.844556861203856, finish=7.229354801508715, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #262: uascan(start=8.84563362692134, reference=8.844556861203856, finish=7.229354801508715, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #263: uascan(start=8.84563362692134, reference=8.844556861203856, finish=7.229354801508715, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #264: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.576292162386515, 55.576292162386515]', per_step='None') #265: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843659083364352, 8.845459083364352]', per_step='None') #266: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.786892162386515, 55.786892162386515]', per_step='None') #267: uascan(start=8.845639737862703, reference=8.84456297214522, finish=7.229360912450079, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #268: uascan(start=8.845639737862703, reference=8.84456297214522, finish=7.229360912450079, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #269: uascan(start=8.845639737862703, reference=8.84456297214522, finish=7.229360912450079, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #270: uascan(start=8.845639737862703, reference=8.84456297214522, finish=7.229360912450079, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #271: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.65409216238651, 55.65409216238651]', per_step='None') #272: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843664083225468, 8.845464083225467]', per_step='None') #273: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.146892162386514, 57.146892162386514]', per_step='None') #274: uascan(start=8.84561223862657, reference=8.844535472909087, finish=7.229333413213946, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #275: uascan(start=8.84561223862657, reference=8.844535472909087, finish=7.229333413213946, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #276: uascan(start=8.84561223862657, reference=8.844535472909087, finish=7.229333413213946, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #277: uascan(start=8.84561223862657, reference=8.844535472909087, finish=7.229333413213946, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #278: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.97019216238652, 56.97019216238652]', per_step='None') #279: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843635195139026, 8.845435195139025]', per_step='None') #280: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.427992162386516, 57.427992162386516]', per_step='None') #281: uascan(start=8.845571684197527, reference=8.844494918480043, finish=7.229292858784903, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #282: uascan(start=8.845571684197527, reference=8.844494918480043, finish=7.229292858784903, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #283: uascan(start=8.845571684197527, reference=8.844494918480043, finish=7.229292858784903, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #284: uascan(start=8.845571684197527, reference=8.844494918480043, finish=7.229292858784903, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #285: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.43399216238652, 57.43399216238652]', per_step='None') #286: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843595474020168, 8.845395474020167]', per_step='None') #287: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 45.00109216238651, 57.00109216238651]', per_step='None') #288: uascan(start=8.84556085116511, reference=8.844484085447627, finish=7.229282025752487, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #289: uascan(start=8.84556085116511, reference=8.844484085447627, finish=7.229282025752487, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #290: SAXS(detectors=['saxs_det'], num=1) #291: SAXS(detectors=['saxs_det'], num=1) #292: SAXS(detectors=['saxs_det'], num=1) #293: SAXS(detectors=['saxs_det'], num=1) #294: SAXS(detectors=['saxs_det'], num=1) #295: SAXS(detectors=['saxs_det'], num=1) #296: SAXS(detectors=['saxs_det'], num=1) #297: SAXS(detectors=['saxs_det'], num=1) #298: SAXS(detectors=['saxs_det'], num=1) #299: SAXS(detectors=['saxs_det'], num=1) #300: SAXS(detectors=['saxs_det'], num=1) #301: SAXS(detectors=['saxs_det'], num=1) #302: SAXS(detectors=['saxs_det'], num=1) #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: SAXS(detectors=['saxs_det'], num=1) #331: SAXS(detectors=['saxs_det'], num=1) #332: SAXS(detectors=['saxs_det'], num=1) #333: SAXS(detectors=['saxs_det'], num=1) #334: SAXS(detectors=['saxs_det'], num=1) #335: SAXS(detectors=['saxs_det'], num=1) #336: SAXS(detectors=['saxs_det'], num=1) #337: SAXS(detectors=['saxs_det'], num=1) #338: SAXS(detectors=['saxs_det'], num=1) #339: SAXS(detectors=['saxs_det'], num=1) #340: WAXS(detectors=['waxs_det'], num=1) #341: WAXS(detectors=['waxs_det'], num=1) no plot: #342 WAXS(detectors=['waxs_det'], num=1) #343: WAXS(detectors=['waxs_det'], num=1) #344: WAXS(detectors=['waxs_det'], num=1) #345: WAXS(detectors=['waxs_det'], num=1) #346: WAXS(detectors=['waxs_det'], num=1) #347: WAXS(detectors=['waxs_det'], num=1) #348: WAXS(detectors=['waxs_det'], num=1) #349: WAXS(detectors=['waxs_det'], num=1) #350: WAXS(detectors=['waxs_det'], num=1) #351: WAXS(detectors=['waxs_det'], num=1) #352: WAXS(detectors=['waxs_det'], num=1) #353: WAXS(detectors=['waxs_det'], num=1) #354: WAXS(detectors=['waxs_det'], num=1) #355: WAXS(detectors=['waxs_det'], num=1) #356: WAXS(detectors=['waxs_det'], num=1) #357: WAXS(detectors=['waxs_det'], num=1) no plot: #358 WAXS(detectors=['waxs_det'], num=1) #359: WAXS(detectors=['waxs_det'], num=1) #360: WAXS(detectors=['waxs_det'], num=1) #361: WAXS(detectors=['waxs_det'], num=1) #362: WAXS(detectors=['waxs_det'], num=1) #363: WAXS(detectors=['waxs_det'], num=1) #364: WAXS(detectors=['waxs_det'], num=1) #365: WAXS(detectors=['waxs_det'], num=1) #366: WAXS(detectors=['waxs_det'], num=1) #367: WAXS(detectors=['waxs_det'], num=1) #368: WAXS(detectors=['waxs_det'], num=1) #369: WAXS(detectors=['waxs_det'], num=1) #370: WAXS(detectors=['waxs_det'], num=1) #371: WAXS(detectors=['waxs_det'], num=1) #372: WAXS(detectors=['waxs_det'], num=1) #373: WAXS(detectors=['waxs_det'], num=1) no plot: #374 WAXS(detectors=['waxs_det'], num=1) #375: WAXS(detectors=['waxs_det'], num=1) #376: WAXS(detectors=['waxs_det'], num=1) #377: WAXS(detectors=['waxs_det'], num=1) #378: WAXS(detectors=['waxs_det'], num=1) #379: WAXS(detectors=['waxs_det'], num=1) #380: WAXS(detectors=['waxs_det'], num=1) #381: WAXS(detectors=['waxs_det'], num=1) #382: WAXS(detectors=['waxs_det'], num=1) #383: WAXS(detectors=['waxs_det'], num=1) #384: WAXS(detectors=['waxs_det'], num=1) #385: WAXS(detectors=['waxs_det'], num=1) #386: WAXS(detectors=['waxs_det'], num=1) #387: WAXS(detectors=['waxs_det'], num=1) #388: WAXS(detectors=['waxs_det'], num=1) #389: WAXS(detectors=['waxs_det'], num=1) #390: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.91879216238652, 56.91879216238652]', per_step='None') #391: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843583252137442, 8.845383252137442]', per_step='None') #392: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.640292162386515, 56.640292162386515]', per_step='None') #393: uascan(start=8.845561406705235, reference=8.844484640987751, finish=7.229282581292611, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #394: uascan(start=8.845561406705235, reference=8.844484640987751, finish=7.229282581292611, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #395: uascan(start=8.845561406705235, reference=8.844484640987751, finish=7.229282581292611, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #396: uascan(start=8.845561406705235, reference=8.844484640987751, finish=7.229282581292611, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #397: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.62589216238651, 56.62589216238651]', per_step='None') #398: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843583529907503, 8.845383529907503]', per_step='None') #399: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.04049216238651, 55.04049216238651]', per_step='None') #400: uascan(start=8.845610294236137, reference=8.844533528518653, finish=7.229331468823513, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #401: uascan(start=8.845610294236137, reference=8.844533528518653, finish=7.229331468823513, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #402: uascan(start=8.845610294236137, reference=8.844533528518653, finish=7.229331468823513, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #403: uascan(start=8.845610294236137, reference=8.844533528518653, finish=7.229331468823513, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #404: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.98729216238652, 54.98729216238652]', per_step='None') #405: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843634084058777, 8.845434084058777]', per_step='None') #406: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.87799216238651, 54.87799216238651]', per_step='None') #407: uascan(start=8.845623349429047, reference=8.844546583711564, finish=7.229344524016423, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #408: uascan(start=8.845623349429047, reference=8.844546583711564, finish=7.229344524016423, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #409: uascan(start=8.845623349429047, reference=8.844546583711564, finish=7.229344524016423, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #410: uascan(start=8.845623349429047, reference=8.844546583711564, finish=7.229344524016423, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #411: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.05729216238652, 55.05729216238652]', per_step='None') #412: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843646583711564, 8.845446583711563]', per_step='None') #413: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.962592162386514, 54.962592162386514]', per_step='None') #414: uascan(start=8.845644459953755, reference=8.844567694236272, finish=7.229365634541131, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #415: uascan(start=8.845644459953755, reference=8.844567694236272, finish=7.229365634541131, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #416: uascan(start=8.845644459953755, reference=8.844567694236272, finish=7.229365634541131, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #417: uascan(start=8.845644459953755, reference=8.844567694236272, finish=7.229365634541131, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #418: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.92159216238652, 54.92159216238652]', per_step='None') #419: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843666860926087, 8.845466860926086]', per_step='None') #420: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.98709216238652, 54.98709216238652]', per_step='None') #421: uascan(start=8.845655292986171, reference=8.844578527268688, finish=7.229376467573547, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #422: uascan(start=8.845655292986171, reference=8.844578527268688, finish=7.229376467573547, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #423: uascan(start=8.845655292986171, reference=8.844578527268688, finish=7.229376467573547, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #424: uascan(start=8.845655292986171, reference=8.844578527268688, finish=7.229376467573547, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #425: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.77779216238651, 54.77779216238651]', per_step='None') #426: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84367741618844, 8.845477416188439]', per_step='None') #427: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.764192162386514, 54.764192162386514]', per_step='None') #428: uascan(start=8.84565223751549, reference=8.844575471798006, finish=7.229373412102865, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #429: uascan(start=8.84565223751549, reference=8.844575471798006, finish=7.229373412102865, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #430: uascan(start=8.84565223751549, reference=8.844575471798006, finish=7.229373412102865, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #431: uascan(start=8.84565223751549, reference=8.844575471798006, finish=7.229373412102865, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #432: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.734692162386516, 54.734692162386516]', per_step='None') #433: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84367574956807, 8.845475749568068]', per_step='None') #434: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.35849216238651, 54.35849216238651]', per_step='None') #435: uascan(start=8.845666126018587, reference=8.844589360301104, finish=7.229387300605963, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #436: uascan(start=8.845666126018587, reference=8.844589360301104, finish=7.229387300605963, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #437: uascan(start=8.845666126018587, reference=8.844589360301104, finish=7.229387300605963, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #438: uascan(start=8.845666126018587, reference=8.844589360301104, finish=7.229387300605963, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #439: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.52049216238652, 54.52049216238652]', per_step='None') #440: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843693526852032, 8.845493526852032]', per_step='None') #441: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.53229216238651, 54.53229216238651]', per_step='None') #442: uascan(start=8.845670014799454, reference=8.84459324908197, finish=7.22939118938683, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #443: uascan(start=8.845670014799454, reference=8.84459324908197, finish=7.22939118938683, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #444: uascan(start=8.845670014799454, reference=8.84459324908197, finish=7.22939118938683, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #445: uascan(start=8.845670014799454, reference=8.84459324908197, finish=7.22939118938683, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #446: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.513392162386516, 54.513392162386516]', per_step='None') #447: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843693804622095, 8.845493804622095]', per_step='None') #448: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.391792162386515, 54.391792162386515]', per_step='None') #449: uascan(start=8.84568223668218, reference=8.844605470964696, finish=7.229403411269556, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #450: uascan(start=8.84568223668218, reference=8.844605470964696, finish=7.229403411269556, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #451: uascan(start=8.84568223668218, reference=8.844605470964696, finish=7.229403411269556, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #452: uascan(start=8.84568223668218, reference=8.844605470964696, finish=7.229403411269556, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #453: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.33029216238651, 54.33029216238651]', per_step='None') #454: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843704082114387, 8.845504082114386]', per_step='None') #455: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.76089216238651, 54.76089216238651]', per_step='None') #456: uascan(start=8.845667792638958, reference=8.844591026921474, finish=7.229388967226334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #457: uascan(start=8.845667792638958, reference=8.844591026921474, finish=7.229388967226334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #458: uascan(start=8.845667792638958, reference=8.844591026921474, finish=7.229388967226334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #459: uascan(start=8.845667792638958, reference=8.844591026921474, finish=7.229388967226334, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #460: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.74509216238651, 54.74509216238651]', per_step='None') #461: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843687693680732, 8.845487693680731]', per_step='None') #462: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.63549216238651, 55.63549216238651]', per_step='None') #463: uascan(start=8.845629182600348, reference=8.844552416882864, finish=7.229350357187724, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #464: uascan(start=8.845629182600348, reference=8.844552416882864, finish=7.229350357187724, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #465: uascan(start=8.845629182600348, reference=8.844552416882864, finish=7.229350357187724, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #466: uascan(start=8.845629182600348, reference=8.844552416882864, finish=7.229350357187724, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #467: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.76799216238651, 55.76799216238651]', per_step='None') #468: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843653250193052, 8.845453250193051]', per_step='None') #469: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.167892162386515, 56.167892162386515]', per_step='None') #470: uascan(start=8.84560640545527, reference=8.844529639737786, finish=7.2293275800426455, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #471: uascan(start=8.84560640545527, reference=8.844529639737786, finish=7.2293275800426455, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #472: uascan(start=8.84560640545527, reference=8.844529639737786, finish=7.2293275800426455, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #473: uascan(start=8.84560640545527, reference=8.844529639737786, finish=7.2293275800426455, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #474: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 44.14039216238651, 56.14039216238651]', per_step='None') #475: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843630750818035, 8.845430750818034]', per_step='None') #476: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.911492162386516, 55.911492162386516]', per_step='None') #477: uascan(start=8.845596127962978, reference=8.844519362245494, finish=7.229317302550354, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #478: uascan(start=8.845596127962978, reference=8.844519362245494, finish=7.229317302550354, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #479: SAXS(detectors=['saxs_det'], num=1) #480: SAXS(detectors=['saxs_det'], num=1) #481: SAXS(detectors=['saxs_det'], num=1) #482: SAXS(detectors=['saxs_det'], num=1) #483: SAXS(detectors=['saxs_det'], num=1) #484: SAXS(detectors=['saxs_det'], num=1) #485: SAXS(detectors=['saxs_det'], num=1) #486: SAXS(detectors=['saxs_det'], num=1) #487: SAXS(detectors=['saxs_det'], num=1) #488: SAXS(detectors=['saxs_det'], num=1) #489: SAXS(detectors=['saxs_det'], num=1) #490: SAXS(detectors=['saxs_det'], num=1) #491: SAXS(detectors=['saxs_det'], num=1) #492: SAXS(detectors=['saxs_det'], num=1) #493: SAXS(detectors=['saxs_det'], num=1) #494: SAXS(detectors=['saxs_det'], num=1) #495: SAXS(detectors=['saxs_det'], num=1) #496: SAXS(detectors=['saxs_det'], num=1) #497: SAXS(detectors=['saxs_det'], num=1) #498: SAXS(detectors=['saxs_det'], num=1) #499: SAXS(detectors=['saxs_det'], num=1) #500: SAXS(detectors=['saxs_det'], num=1) #501: SAXS(detectors=['saxs_det'], num=1) #502: SAXS(detectors=['saxs_det'], num=1) #503: SAXS(detectors=['saxs_det'], num=1) #504: SAXS(detectors=['saxs_det'], num=1) #505: SAXS(detectors=['saxs_det'], num=1) #506: SAXS(detectors=['saxs_det'], num=1) #507: SAXS(detectors=['saxs_det'], num=1) #508: SAXS(detectors=['saxs_det'], num=1) #509: SAXS(detectors=['saxs_det'], num=1) #510: SAXS(detectors=['saxs_det'], num=1) #511: SAXS(detectors=['saxs_det'], num=1) #512: SAXS(detectors=['saxs_det'], num=1) #513: SAXS(detectors=['saxs_det'], num=1) #514: SAXS(detectors=['saxs_det'], num=1) #515: SAXS(detectors=['saxs_det'], num=1) #516: SAXS(detectors=['saxs_det'], num=1) #517: SAXS(detectors=['saxs_det'], num=1) #518: SAXS(detectors=['saxs_det'], num=1) #519: SAXS(detectors=['saxs_det'], num=1) #520: SAXS(detectors=['saxs_det'], num=1) #521: SAXS(detectors=['saxs_det'], num=1) #522: SAXS(detectors=['saxs_det'], num=1) #523: SAXS(detectors=['saxs_det'], num=1) #524: SAXS(detectors=['saxs_det'], num=1) #525: SAXS(detectors=['saxs_det'], num=1) #526: SAXS(detectors=['saxs_det'], num=1) #527: SAXS(detectors=['saxs_det'], num=1) #528: SAXS(detectors=['saxs_det'], num=1) #529: WAXS(detectors=['waxs_det'], num=1) #530: WAXS(detectors=['waxs_det'], num=1) #531: WAXS(detectors=['waxs_det'], num=1) #532: WAXS(detectors=['waxs_det'], num=1) #533: WAXS(detectors=['waxs_det'], num=1) #534: WAXS(detectors=['waxs_det'], num=1) #535: WAXS(detectors=['waxs_det'], num=1) #536: WAXS(detectors=['waxs_det'], num=1) #537: WAXS(detectors=['waxs_det'], num=1) #538: WAXS(detectors=['waxs_det'], num=1) #539: WAXS(detectors=['waxs_det'], num=1) #540: WAXS(detectors=['waxs_det'], num=1) #541: WAXS(detectors=['waxs_det'], num=1) #542: WAXS(detectors=['waxs_det'], num=1) #543: WAXS(detectors=['waxs_det'], num=1) #544: WAXS(detectors=['waxs_det'], num=1) #545: WAXS(detectors=['waxs_det'], num=1) #546: WAXS(detectors=['waxs_det'], num=1) #547: WAXS(detectors=['waxs_det'], num=1) #548: WAXS(detectors=['waxs_det'], num=1) #549: WAXS(detectors=['waxs_det'], num=1) #550: WAXS(detectors=['waxs_det'], num=1) #551: WAXS(detectors=['waxs_det'], num=1) #552: WAXS(detectors=['waxs_det'], num=1) #553: WAXS(detectors=['waxs_det'], num=1) #554: WAXS(detectors=['waxs_det'], num=1) #555: WAXS(detectors=['waxs_det'], num=1) #556: WAXS(detectors=['waxs_det'], num=1) #557: WAXS(detectors=['waxs_det'], num=1) #558: WAXS(detectors=['waxs_det'], num=1) #559: WAXS(detectors=['waxs_det'], num=1) #560: WAXS(detectors=['waxs_det'], num=1) #561: WAXS(detectors=['waxs_det'], num=1) #562: WAXS(detectors=['waxs_det'], num=1) #563: WAXS(detectors=['waxs_det'], num=1) #564: WAXS(detectors=['waxs_det'], num=1) #565: WAXS(detectors=['waxs_det'], num=1) #566: WAXS(detectors=['waxs_det'], num=1) #567: WAXS(detectors=['waxs_det'], num=1) #568: WAXS(detectors=['waxs_det'], num=1) #569: WAXS(detectors=['waxs_det'], num=1) #570: WAXS(detectors=['waxs_det'], num=1) #571: WAXS(detectors=['waxs_det'], num=1) #572: WAXS(detectors=['waxs_det'], num=1) #573: WAXS(detectors=['waxs_det'], num=1) #574: WAXS(detectors=['waxs_det'], num=1) #575: WAXS(detectors=['waxs_det'], num=1) #576: WAXS(detectors=['waxs_det'], num=1) #577: WAXS(detectors=['waxs_det'], num=1) #578: WAXS(detectors=['waxs_det'], num=1) #579: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.90619216238652, 55.90619216238652]', per_step='None') #580: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84361741785506, 8.84541741785506]', per_step='None') #581: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.687592162386515, 55.687592162386515]', per_step='None') #582: uascan(start=8.845593905802481, reference=8.844517140084998, finish=7.229315080389857, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #583: uascan(start=8.845593905802481, reference=8.844517140084998, finish=7.229315080389857, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #584: uascan(start=8.845593905802481, reference=8.844517140084998, finish=7.229315080389857, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #585: uascan(start=8.845593905802481, reference=8.844517140084998, finish=7.229315080389857, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #586: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 43.687592162386515, 55.687592162386515]', per_step='None') #587: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843618251165246, 8.845418251165245]', per_step='None') #588: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.33789216238652, 54.33789216238652]', per_step='None') #589: uascan(start=8.845654459675986, reference=8.844577693958502, finish=7.229375634263362, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #590: uascan(start=8.845654459675986, reference=8.844577693958502, finish=7.229375634263362, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #591: uascan(start=8.845654459675986, reference=8.844577693958502, finish=7.229375634263362, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #592: uascan(start=8.845654459675986, reference=8.844577693958502, finish=7.229375634263362, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #593: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.10569216238651, 54.10569216238651]', per_step='None') #594: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843678249498627, 8.845478249498626]', per_step='None') #595: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.89339216238651, 53.89339216238651]', per_step='None') #596: uascan(start=8.845680570061807, reference=8.844603804344324, finish=7.229401744649183, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #597: uascan(start=8.845680570061807, reference=8.844603804344324, finish=7.229401744649183, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #598: uascan(start=8.845680570061807, reference=8.844603804344324, finish=7.229401744649183, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #599: uascan(start=8.845680570061807, reference=8.844603804344324, finish=7.229401744649183, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #600: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.85769216238651, 53.85769216238651]', per_step='None') #601: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843702415494015, 8.845502415494014]', per_step='None') #602: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.123592162386515, 54.123592162386515]', per_step='None') #603: uascan(start=8.845684458842674, reference=8.844607693125191, finish=7.2294056334300505, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #604: uascan(start=8.845684458842674, reference=8.844607693125191, finish=7.2294056334300505, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #605: uascan(start=8.845684458842674, reference=8.844607693125191, finish=7.2294056334300505, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #606: uascan(start=8.845684458842674, reference=8.844607693125191, finish=7.2294056334300505, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #607: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.11019216238651, 54.11019216238651]', per_step='None') #608: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84370741535513, 8.84550741535513]', per_step='None') #609: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.94709216238651, 53.94709216238651]', per_step='None') #610: uascan(start=8.845672236959949, reference=8.844595471242465, finish=7.229393411547325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #611: uascan(start=8.845672236959949, reference=8.844595471242465, finish=7.229393411547325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #612: uascan(start=8.845672236959949, reference=8.844595471242465, finish=7.229393411547325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #613: uascan(start=8.845672236959949, reference=8.844595471242465, finish=7.229393411547325, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #614: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.934192162386516, 53.934192162386516]', per_step='None') #615: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843695749012529, 8.845495749012528]', per_step='None') #616: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.674092162386515, 53.674092162386515]', per_step='None') #617: uascan(start=8.845690292013977, reference=8.844613526296493, finish=7.229411466601353, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #618: uascan(start=8.845690292013977, reference=8.844613526296493, finish=7.229411466601353, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #619: uascan(start=8.845690292013977, reference=8.844613526296493, finish=7.229411466601353, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #620: uascan(start=8.845690292013977, reference=8.844613526296493, finish=7.229411466601353, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #621: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.66799216238651, 53.66799216238651]', per_step='None') #622: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84371297075637, 8.845512970756369]', per_step='None') #623: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.55369216238651, 53.55369216238651]', per_step='None') #624: uascan(start=8.84570223612664, reference=8.844625470409156, finish=7.229423410714015, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #625: uascan(start=8.84570223612664, reference=8.844625470409156, finish=7.229423410714015, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #626: uascan(start=8.84570223612664, reference=8.844625470409156, finish=7.229423410714015, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #627: uascan(start=8.84570223612664, reference=8.844625470409156, finish=7.229423410714015, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #628: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.51539216238651, 53.51539216238651]', per_step='None') #629: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843725192639095, 8.845525192639094]', per_step='None') #630: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.27419216238651, 53.27419216238651]', per_step='None') #631: uascan(start=8.845717791250108, reference=8.844641025532624, finish=7.229438965837484, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #632: uascan(start=8.845717791250108, reference=8.844641025532624, finish=7.229438965837484, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #633: uascan(start=8.845717791250108, reference=8.844641025532624, finish=7.229438965837484, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #634: uascan(start=8.845717791250108, reference=8.844641025532624, finish=7.229438965837484, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #635: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.29109216238651, 53.29109216238651]', per_step='None') #636: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843742969923058, 8.845542969923057]', per_step='None') #637: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.597492162386516, 53.597492162386516]', per_step='None') #638: uascan(start=8.84570668044763, reference=8.844629914730147, finish=7.229427855035007, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #639: uascan(start=8.84570668044763, reference=8.844629914730147, finish=7.229427855035007, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #640: uascan(start=8.84570668044763, reference=8.844629914730147, finish=7.229427855035007, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #641: uascan(start=8.84570668044763, reference=8.844629914730147, finish=7.229427855035007, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #642: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.534792162386516, 53.534792162386516]', per_step='None') #643: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843731303580457, 8.845531303580456]', per_step='None') #644: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.22409216238651, 53.22409216238651]', per_step='None') #645: uascan(start=8.84571390246924, reference=8.844637136751757, finish=7.229435077056617, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #646: uascan(start=8.84571390246924, reference=8.844637136751757, finish=7.229435077056617, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #647: uascan(start=8.84571390246924, reference=8.844637136751757, finish=7.229435077056617, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #648: uascan(start=8.84571390246924, reference=8.844637136751757, finish=7.229435077056617, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #649: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 41.18249216238652, 53.18249216238652]', per_step='None') #650: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84373741452182, 8.84553741452182]', per_step='None') #651: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.651592162386514, 54.651592162386514]', per_step='None') #652: uascan(start=8.845686403233108, reference=8.844609637515624, finish=7.229407577820484, minStep=2e-05, dx0=98.1964909999999, SDD_mm=1085.0, ax0=14.66, SAD_mm=255.0, exponent=1.1, intervals=300, count_time=0.3) #653: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.840656325118477, 8.845656325118476]', per_step='None') #654: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843709081975502, 8.845509081975502]', per_step='None') #655: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.715592162386514, 54.715592162386514]', per_step='None') #656: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.840867158451811, 8.84586715845181]', per_step='None') #657: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.843925464853756, 8.845725464853755]', per_step='None') #658: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 42.26859216238651, 54.26859216238651]', per_step='None') #659: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841096325118476, 8.846096325118475]', per_step='None') #660: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844480727207578, 8.846280727207578]', per_step='None') #661: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.966692162386515, 51.966692162386515]', per_step='None') #662: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841091325118477, 8.846091325118476]', per_step='None') #663: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.84438795200689, 8.84618795200689]', per_step='None') #664: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.556792162386515, 51.556792162386515]', per_step='None') #665: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841078825118478, 8.846078825118477]', per_step='None') #666: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844386840926642, 8.846186840926642]', per_step='None') #667: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.65499216238651, 51.65499216238651]', per_step='None') #668: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 8.841106325118478, 8.846106325118477]', per_step='None') #669: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 8.844474894036278, 8.846274894036277]', per_step='None') #670: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.16219216238652, 51.16219216238652]', per_step='None') #671: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.865011105014056, 6.870011105014057]', per_step='None') #672: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866604669370323, 6.868404669370323]', per_step='None') #673: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.183292162386515, 51.183292162386515]', per_step='None') #674: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.865275271680722, 6.870275271680723]', per_step='None') #675: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.865263605014056, 6.870263605014057]', per_step='None') #676: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.86660439160026, 6.86840439160026]', per_step='None') #677: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.16739216238651, 51.16739216238651]', per_step='None') #678: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.865266938347388, 6.870266938347389]', per_step='None') #679: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8664152301880765, 6.868215230188076]', per_step='None') #680: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.44449216238652, 51.44449216238652]', per_step='None') #681: tune_dx(detectors=('PD_USAXS',), num=35, args='['d_stage_x', 93.2599999999999, 104.2599999999999]', per_step='None') #682: tune_dy(detectors=('PD_USAXS',), num=35, args='['d_stage_y', -17.830537000000163, -11.830537000000163]', per_step='None') #683: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.18079216238652, 51.18079216238652]', per_step='None') #684: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866415785728202, 6.868215785728202]', per_step='None') #685: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.94309216238651, 50.94309216238651]', per_step='None') #686: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 39.05089216238651, 51.05089216238651]', per_step='None') #687: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866478839532261, 6.868278839532261]', per_step='None') #688: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.824992162386515, 50.824992162386515]', per_step='None') #689: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.782192162386515, 50.782192162386515]', per_step='None') #690: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866477450681954, 6.868277450681953]', per_step='None') #691: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.53079216238651, 50.53079216238651]', per_step='None') #692: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.592292162386514, 50.592292162386514]', per_step='None') #693: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866505227688146, 6.868305227688145]', per_step='None') #694: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.21759216238652, 50.21759216238652]', per_step='None') #695: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.29559216238651, 50.29559216238651]', per_step='None') #696: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8665149496403135, 6.868314949640313]', per_step='None') #697: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.280292162386516, 50.280292162386516]', per_step='None') #698: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.32209216238651, 50.32209216238651]', per_step='None') #699: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.86653411577459, 6.868334115774589]', per_step='None') #700: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.34399216238651, 50.34399216238651]', per_step='None') #701: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.38499216238652, 50.38499216238652]', per_step='None') #702: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866543559956694, 6.868343559956694]', per_step='None') #703: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.353292162386516, 50.353292162386516]', per_step='None') #704: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.287292162386514, 50.287292162386514]', per_step='None') #705: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8665432821866315, 6.868343282186631]', per_step='None') #706: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.16369216238651, 50.16369216238651]', per_step='None') #707: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.158692162386515, 50.158692162386515]', per_step='None') #708: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866554948529236, 6.868354948529236]', per_step='None') #709: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.17479216238652, 50.17479216238652]', per_step='None') #710: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 38.21079216238651, 50.21079216238651]', per_step='None') #711: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.86655439298911, 6.86835439298911]', per_step='None') #712: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.66329216238651, 48.66329216238651]', per_step='None') #713: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.725292162386516, 48.725292162386516]', per_step='None') #714: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866556337379544, 6.868356337379543]', per_step='None') #715: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.752692162386516, 48.752692162386516]', per_step='None') #716: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.83839216238651, 48.83839216238651]', per_step='None') #717: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8665799478348095, 6.868379947834809]', per_step='None') #718: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.79299216238651, 48.79299216238651]', per_step='None') #719: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.739392162386515, 48.739392162386515]', per_step='None') #720: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866583836615677, 6.868383836615676]', per_step='None') #721: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.76859216238651, 48.76859216238651]', per_step='None') #722: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.78549216238651, 48.78549216238651]', per_step='None') #723: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866597725118774, 6.868397725118774]', per_step='None') #724: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.89549216238652, 48.89549216238652]', per_step='None') #725: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.865266938347388, 6.870266938347389]', per_step='None') #726: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866594114107967, 6.868394114107966]', per_step='None') #727: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.867792162386515, 48.867792162386515]', per_step='None') #728: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863920271680722, 6.8689202716807225]', per_step='None') #729: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.866147737618425, 6.867947737618424]', per_step='None') #730: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.33749216238651, 49.33749216238651]', per_step='None') #731: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863764438347389, 6.86876443834739]', per_step='None') #732: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8653888698092, 6.867188869809199]', per_step='None') #733: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.97359216238652, 49.97359216238652]', per_step='None') #734: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863764438347389, 6.86876443834739]', per_step='None') #735: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865276095164051, 6.86707609516405]', per_step='None') #736: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.45989216238652, 49.45989216238652]', per_step='None') #737: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863759438347389, 6.86875943834739]', per_step='None') #738: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865279706174855, 6.867079706174854]', per_step='None') #739: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.48179216238651, 49.48179216238651]', per_step='None') #740: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863755271680723, 6.868755271680723]', per_step='None') #741: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865223041082219, 6.867023041082218]', per_step='None') #742: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.27949216238651, 49.27949216238651]', per_step='None') #743: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.06349216238652, 49.06349216238652]', per_step='None') #744: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865323038304519, 6.867123038304518]', per_step='None') #745: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.08619216238652, 49.08619216238652]', per_step='None') #746: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863890271680723, 6.868890271680724]', per_step='None') #747: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865327760395571, 6.8671277603955705]', per_step='None') #748: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 37.10909216238652, 49.10909216238652]', per_step='None') #749: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.656792162386516, 48.656792162386516]', per_step='None') #750: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8654216466765075, 6.867221646676507]', per_step='None') #751: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.62279216238652, 48.62279216238652]', per_step='None') #752: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.61999216238652, 48.61999216238652]', per_step='None') #753: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865418868975889, 6.867218868975888]', per_step='None') #754: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.60269216238651, 48.60269216238651]', per_step='None') #755: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.350292162386516, 48.350292162386516]', per_step='None') #756: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865362481653316, 6.867162481653315]', per_step='None') #757: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.33449216238652, 48.33449216238652]', per_step='None') #758: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863859438347389, 6.86885943834739]', per_step='None') #759: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865358870642508, 6.867158870642507]', per_step='None') #760: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 36.301492162386516, 48.301492162386516]', per_step='None') #761: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.86346443834739, 6.868464438347391]', per_step='None') #762: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865231929724201, 6.867031929724201]', per_step='None') #763: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.87219216238651, 45.87219216238651]', per_step='None') #764: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.391392162386516, 45.391392162386516]', per_step='None') #765: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865134432432461, 6.86693443243246]', per_step='None') #766: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.42139216238651, 45.42139216238651]', per_step='None') #767: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.369492162386514, 45.369492162386514]', per_step='None') no plot: #768 tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8651333213522125, 6.866933321352212]', per_step='None') #769: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.35639216238651, 45.35639216238651]', per_step='None') #770: tune_mr(detectors=('I0_USAXS',), num=31, args='['m_stage_r', 6.863460271680723, 6.868460271680724]', per_step='None') #771: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.865079711730258, 6.866879711730258]', per_step='None') #772: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 33.173892162386515, 45.173892162386515]', per_step='None') #773: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.960092162386516, 44.960092162386516]', per_step='None') #774: tune_ar(detectors=('PD_USAXS',), num=35, args='['a_stage_r', 6.8650749896392025, 6.866874989639202]', per_step='None') #775: tune_a2rp(detectors=('PD_USAXS',), num=31, args='['a_stage_r2p', 32.95329216238651, 44.95329216238651]', per_step='None')