A machine placed behind the cuvette detects this absorption pattern and translates it into the appropriate string of ones and zeroes.
放置在试管后面的机器可检测吸收图形,并把它转换成适当的一列含有“1”和“0”的数字。
During pattern formation like a holographic grating, the local temperature increase, especially in thin films, is up to date a subject of estimation from absorption and dissipation data.
在图案(如全息光栅)的形成过程中,由吸收和消耗的数据估计局部温度、特别是在薄膜中温度的上升已经成为当今研究的主题。
Because of the nonlinear effect caused by flow pattern, oil diameter and absorption coefficient etc, it is difficult to establish the measurement model.
但由于受流型、油泡直径及吸收系数等因素的非线性影响,使得测量模型难于建立。
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