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1)  Ultraviolet spectrum
紫外光谱
1.
Simultaneous determination cyanide used ultraviolet spectrum;
氰化物紫外光谱在线检测
2.
Chemical modification and ultraviolet spectrum of acid phosphatase from wheat grem;
麦芽酸性磷酸酶的化学修饰及紫外光谱
3.
Calculating the productivity contribution of single zone in commingled producing wells using ultraviolet spectrum technique.
应用紫外光谱技术计算合采井单层产能贡献
2)  UV spectrum
紫外光谱
1.
UV spectrum property and ab initio calculation of Zn-Al composite oxide;
锌铝复合氧化物的紫外光谱特性及量子化学
2.
Quantum Chemistry CNDO/2 Study On the UV Spectrum of Anthraquinone Dyestuff;
蒽醌染料紫外光谱的量子化学CNDO/2研究
3.
Quantum Chemistry Study on the UV Spectrum of Olefin Hydrocarbon Homologous Compound;
烯烃同系物紫外光谱的量子化学研究
3)  UV spectra
紫外光谱
1.
Inclusion interaction of cyclodextrins and 2,4-dichlorprop methyl ester enantiomers by UV spectra.;
紫外光谱法研究环糊精对2,4-滴丙酸甲酯对映体的包合作用
2.
DCA on medicinal materials of three species of Isodon Kudo based on their UV spectra;
三种香茶菜药材紫外光谱的除趋势对应分析
3.
Analysis of contents of microelements in flower, pedicel and peel of pomegranate and their TLC , UV spectra;
石榴花、蒂、皮微量元素、薄层层析及紫外光谱分析
4)  UV
紫外光谱
1.
Characterization of Metallic Complexes of New Lariat Crown Ethers by UV and MS;
新型套索冠醚-金属离子络合性能的紫外光谱法与质谱法研究
2.
Studies of the Interaction between Gd(Ⅲ)-aminopolycarboxglicacid Complexes and BSA by UV;
Gd(Ⅲ)—氨基多羧酸配合物与蛋白质相互作用的紫外光谱研究
3.
Synthesis and Analysis of IR、UV to the Coordination compoundof the the rare earth ion Nd~(3+) 、Pr~(3+) and Tannin Acid;
稀土离子Pr~(3+)、Nd~(3+)与单宁酸配合物的合成及其红外、紫外光谱分析
5)  Ultraviolet spectra
紫外光谱
1.
Study on Preparation of H_2SO_4-HAc-GIC and the Analysis of X-Ray Diffraction Spectra and Ultraviolet Spectra;
H_2SO_4-HAc-GIC的合成及其X射线衍射光谱和紫外光谱研究
2.
The Studies on Infrared and Ultraviolet Spectra of the Heteropoly Blues with Lanthanide Complexes of Double 1:11 Series;
镧系元素双1:11系列杂多蓝的红外光谱和紫外光谱研究
6)  UV-vis spectra
紫外光谱
1.
UV-vis spectra of the interaction of quercetin and xanthine oxidase
槲皮素与黄嘌呤氧化酶相互作用的紫外光谱性质研究
2.
The effects of substitution on A and B sites on the structure and properties have been studied by the analysis of dielectric properties, body conductance ratio and XRD, SEM, IR, UV-vis spectra.
掺杂离子的半径和电负性的变化也会影响到紫外光谱吸收边的位置。
补充资料:紫外光谱
分子式:
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性质:电磁波谱中紫外波段范围内的发射及吸收光谱,波段从10nm至380nm。为原子外层电子跃迁,能量在1~20eV。吸收光谱不仅用于无机物定性、定量分析;主要用于有机物的鉴定及结构分析,还可对同分异构体进行鉴别。

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