研究表明,该系统的透过率随入射光强变化。
The transmission factor of this cavity was found to vary with the incident light power.
这些光谱的光强变化反映了燃烧过程的规律。
The optical intensity variation of these spectra reflects the law of combustion process.
喜树幼苗叶片次生代谢产物对光强变化的响应程度最大,根次之,茎最小。
The responses of the secondary metabolites in leaves of Camptotheca acuminate seedlings to different light intensity were the most obvious. Those in roots were second to them.
So that should mean that the energy that's transferred to the electron should be greater, but that's not what you saw at all, and what you saw is that if you kept the frequency constant there was absolutely no change in the kinetic energy of the electrons, no matter how high up you had the intensity of the light go.
所以这意味着转移到电子,上的能量也越大,但这并不是,我们观测到的现象,我们所看到的是,如果固定光的频率不变,不管光强如何变化,电子的动能没有任何变化。
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