• Its accuracy and optical resolution may be influenced by atmospheric absorption bands.

    它的精密度和光学分辨力将受大气中吸收频带的影响。

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  • Visible light absorbing compounds can also occur from one electronic atom to another atom arising from the transition charge transfer absorption bands in charge transitions.

    化合物吸收可见光还可以发生电子从一个原子到另一个原子的跃迁而产生荷移吸收带发生电荷跃迁。

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  • The UV-visible spectra show two bands corresponding to the transverse and longitudinal surface plasmon (SP) absorption at 532 and 720 nm, respectively, for the colloidal GNFs.

    可见紫外线光谱分析显示,胶状纳米金花的横向和纵向表面等离子体(SP)的吸收波段分别是532和720纳米。

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  • The peaks and absorption bands of infrared and Raman spectra were assigned.

    对红外光谱和拉曼光谱中的各吸收谱带和特征峰进行了归属。

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  • The K, f, r, m and some other absorption bands were reasonably resolved from the absorption spectra of the colored crystals, and their spectral parameters were accura.

    用解谱的方法,分别从着色氯化钾和溴化钾晶体吸收光谱中合理地分解出k、F、R、M和一些其它吸收带,并精确确定这些吸收带的光谱参数。

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  • Atoms and molecules absorb certain wavelengths and so remove them from a complete spectrum; the resulting absorption spectrum contains dark lines or bands at these wavelengths.

    原子和分子吸收某些波长,因此把这些波长从完整的光谱中除去,剩下来的吸收光谱在这些波长上就呈现出黑线或黑带。

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  • Additionally, absorption bands of the two methyl substituents at different positions of the thiophene are clearly distinguished.

    另外,在一维红外谱图中无法分辨的不同取代位置的甲基,在二维相关谱图中,可以清楚地区分开来。

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  • The FTIR spectra of White Peony Root wasn't affected by different processes, but the wave numbers of absorption bands weren't all the same.

    煮制、蒸制、去皮和不去皮等不同方法组合加工杭白芍的FTIR光谱基本相似,但各种特征吸收峰的波数略有不同。

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  • The FTIR spectra of White Peony Root wasn't affected by different processes, but the wave numbers of absorption bands weren't all the same.

    煮制、蒸制、去皮和不去皮等不同方法组合加工杭白芍的FTIR光谱基本相似,但各种特征吸收峰的波数略有不同。

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