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Hyper Gravity-Induced Transients in <i>Phycomyces</i>as Measured by Single Beam Spectrophotometer on the Sounding Rocket TEXUS 50
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作者 Werner Schmidt 《Journal of Modern Physics》 2018年第2期273-286,共14页
In the first paper of two referring to the TEXUS 50 campaign using micro dual wavelength spectrometers (MDWS) we kinetically determined the threshold1 for GIACs (gravity-induced absorption changes) in Phycomyces to be... In the first paper of two referring to the TEXUS 50 campaign using micro dual wavelength spectrometers (MDWS) we kinetically determined the threshold1 for GIACs (gravity-induced absorption changes) in Phycomyces to be lower than 25 × 10&minus;3 g (http://file.scirp.org/pdf/JMP_2015082810060783.pdf). In this second paper, we attended measurement of GIAC-spectra. Unexpectedly, during the upwards movement, i.e. the hypergravity phase up to top acceleration values reaching 11.6 g at 35.4 s after liftoff we observed transient GIAC-spectra ranging from 380 to 750 nm. In addition, during the whole acceleration phase of 68.2 s, another component near 700 nm develops which remains stable during the whole “free fall trajectory parabola” for 381.3 s. The subsequent reentry of the rocket leads to extraordinary deceleration values up 37.8 g, completely destroying Phycomyces sporangiophores excluding their spectral measurement. During the microgravity phase and by centrifuge operation we were unable to detect any GIAC-spectra (in contrast to kinetic MDWS-measurements, first paper). 展开更多
关键词 MDWS (Micro-Dual Wavelength spectrophotometer) single beam spectrophotometer (sbs) Diode Array Spectrometer (USB-2000+ Ocean Optics) GIAC (Gravity-Induced Absorption Change) PHYCOMYCES blakesleeanus Sporangiophore Micro- and Hypergravity Texus 50 Sounding Rocket Graviperception. HYPER Gravity-Induced Transients
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建筑玻璃遮阳系数检测仪控制系统设计
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作者 王影 李莉 贾爽 《天津职业技术师范大学学报》 2023年第4期30-35,共6页
建筑玻璃遮阳系数检测仪大多基于双光束分光光度计。针对双光束分光光度计体积较大、成本较高的问题,设计了基于单光束分光光度计的建筑玻璃遮阳系数检测仪的硬件电路及软件控制部分。实验结果表明:紫外可见光区滤光片标准物质的透射率... 建筑玻璃遮阳系数检测仪大多基于双光束分光光度计。针对双光束分光光度计体积较大、成本较高的问题,设计了基于单光束分光光度计的建筑玻璃遮阳系数检测仪的硬件电路及软件控制部分。实验结果表明:紫外可见光区滤光片标准物质的透射率误差在±0.3%以内,紫外可见近红外光区的误差在±0.5%以内,透射率的重复性均在0.15%以内。该设计实现了降低成本、缩小体积的目的,且达到基于双光束分光光度计检测仪的指标要求。 展开更多
关键词 单光束分光光度计 硬件电路 软件设计 建筑玻璃
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