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1)  H~2(T~n)
H2(Tn)
2)  H_2
H2
1.
The mechanism of reaction between CH_2(singlet state) and Fe(quintet and triplet states) was discussed in detail.
采用密度泛函理论(DFT)中的UB3LYP方法在6-311+G(2d,2p)水平上研究了五重态和三重态的Fe与单重态CH2反应的机理,在UB3LYP结构优化的基础上用耦合簇理论方法UCCSD(T)在相同水平下对各驻点进行了单点能校正。
2.
The separation of H_2-CO gas mixture by pressure swing adsorption (PSA) process was studied.
采用变压吸附法进行H2 CO气体混合物的分离研究。
3.
At a fixed frequency of input voltage,as hydrogen addition(H_2%) increases,both the firing and sustaining voltages change accordingly;and both the voltages minimize at an optimized H_2%.
使用AC-PDP宏放电单元测试了AC-PDP放电单元加入少量H2对Ne-Xe混合气体放电性能的影响。
3)  H 2
H2
1.
Using DFT method at B3LYP/6-311G ** level, the possible electronic states of RuH 2 and RuN 2 have been calculated, including the chemical adsorption and physical adsorption.
用量子化学从头算方法在B3LYP/6 311G 的水平上 ,研究了RuH2 和RuN2 可能的电子组态和光谱性质 。
2.
The catalytic reduction of NOwith H 2 was carried out over Al 2 O 3 and CuO/Al 2 O 3 catalyst.
 采用 -Al2O3和CuO/ -Al2O3作为H2催化还原氮氧化物的催化剂,考察了反应温度、活性组分添加、原料配比以及原料气空速等对NO转化率的影响。
3.
The present work devotes to calculate the transition matrix elements μ on , oscillator strengths f, Einstein A no and B on coefficients of H 2 from ground state X 1∑ + g to six of different excited states by CIS method and consider the effect of H 2 under the electric field 0,±36.
本文计算H2 从基态到激发态的跃迁矩阵元 ( μ) 0n,振子强度f0n,自发辐射系数An0 和吸收系数B0n(n=1- 6 ) ,还计算了在电场 →E =- 72 。
4)  tenascin (TN)
Tenascin(TN)
5)  L~∞(T~n)
L∞(Tn)
6)  TN method
TN法
1.
The paper introduced TN method and data envelopment analysis (DEA) together into the development and design of FAEDSS.
第二章论述了将因素识别与分析评价DEMATEL模型、协调分析模型、层次分析AHP模型等综合集成于一体的TN法体系,初步提出了多目标变权协调分析的数学模型,探讨了TN法在吉林省软件产业发展问题中的应用。
补充资料:alugel 34tn
CAS:637-12-7
分子式:C54H105AlO6
分子质量:877.40144
中文名称:十八酸铝盐;硬脂酸铝;十八酸铝

英文名称:Octadecanoic acid, aluminium salt;Aluminium stearate;stearic acid, aluminum salt;alugel 34tn;aluminium tristearate;aluminum stearate;aluminum tristearate;monoaluminum stearate

性状描述:白色粉末。不溶于水、乙醇、乙醚,溶于碱、松节油、矿油、石油、煤油及苯等溶剂中。遇强酸分解成硬脂酸和相应的盐

用途:本产品用于金属防锈剂的原料、建筑材料的防水剂、油墨的抛光剂、化妆品的增稠剂等。硬脂酸铝在涂料中,用作平滑剂及增稠剂,同时还具有改进涂膜触变性的效果。
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