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1)  Ar-HCl molecules
Ar-HCl分子
2)  Ne HCl complex
Ne-HCl分子
3)  HCl molecule
HCl分子
1.
Study on the potential energy function for the Ground state of HCl molecule by quantum chemistry methods
耦合簇方法对HCl分子基态势能函数的研究
2.
The equilibrium structure and dissociation energy of H2 and HCl molecules at the ground state are calculated and optimized using quantum chemistry methods QCISD at the 6-311++G(3df,3pd)basis set.
运用电子相关耦合簇方法QCISD和基组6-311++G(3df,3pd)优化计算了H2,HCl分子基态的平衡间距、能量、离解能。
3.
The equilibrium structure and dissociation energy of HCl molecule at the ground state are calculated and optimized using quantum chemistry methods CCSD(T)and QCISD(T) at the 6-311++G** and cc-pvdz basis set.
全部计算采用从头计算的耦合簇方法CCSD(T)和QCISD(T),分别在大基组6-311++G**和两阶的基组cc-pvdz下,优化计算了HCl分子基态的平衡结构和离解能,得到的平衡核间距与实验值吻合良好。
4)  Hydrogen chloride
HCl
1.
Application of high - purity hydrogen chloride-byproduct from potassium sulfate production in polyvinyl chloride production;
K_2SO_4装置副产高纯度HCl在PVC生产中的应用
2.
It was identified by IR, MS, and IR-tracking that the main product of the reaction was 1,5-naphthalene diisocyanate (NDI), and the by-products were hydrogen chloride, 1,5-naphthalenediamine hydrochlorate and urea.
采用红外光谱、质谱和红外跟踪等分析方法, 确定了反应主产物为 NDI, 主要副产物为 HCl、NDA盐酸盐和脲。
5)  HCI
HCl
1.
The results of the study show that the reaction rate of HF and quarz sand is in proportion to the secondary power of HF concentration, but has nothing to do with HCI c.
实验结果证明 :HF在石英上的反应速率与 HCl的浓度无关 ,与 HF浓度成二次方关系 ;酸化流动模拟试验中流速对酸化效果是有影响的 ,高流速下的酸化可解除储层深部的伤害 ,在砂岩基质酸化的施工工艺上建议采用“最大排量压差法”。
6)  Argon [英]['ɑ:ɡɔn]  [美]['ɑrgɑn]
Ar原子
1.
Study of Binding Energy Spectrum of Argon and Electron Momentum Spectrum of Argon 3p;
Ar原子电离能谱和Ar3p电子动量谱研究
补充资料:ar,ar-diethyl-ar-methylbenzenediamine
CAS:68479-98-1
分子式:C11H18N2
中文名称:二乙基甲苯二胺;芳基,芳基二乙基-芳基-甲基苯二胺
英文名称:ar,ar-diethyl-ar-methyl-Benzenediamine;Diethyltoluenediamine;ar,ar-diethyl-ar-methylbenzenediamine;ar,ar-diethyl-ar-methyl-benzenediamin;diethyl tolamine
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