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- Sanderson, R. T., "Chemical Bonds and Bond Energy, "Academic Press (1971). 此处之能障分类论点系由清华大学储三阳教授指导提出。
- In this paper. We further expound the relationships between thermochemical bond energy P. E and E and f2 through analysing the properties of chemical bond and molecular structures. 本文通过对化学键与分子结构性质的分析;对分子的热化学键能与电子激发能、成键能力之间的关系作了进一步的阐明.
- Keywords iron;complex carbonyl;property of chemical bond;bond energy EAB;strength of bond; 铁;羰基络合物;化学键特性;键能;键强度;
- Keywords Si(CH_3)2Cl_2;Syrchrotron radiation;Photoionization;Ionization potential;Chemical bond energy; 同步辐射;光电离;电离电势;化学键键能;
- 104.Sanderson, R. T., "Chemical Bonds and Bond Energy, " Academic Press (1971). 此处之能障分类论点系由清华大学储三阳教授指导提出。
- Tending to attract electrons to form a chemical bond. 负电极的有吸引电子以形成化学键的倾向的
- What's the nature of chemical bond? 什么是化学键的本质?
- A chemical bond or link created by cross-linking. 交键通过交联形成的化学键
- chemical bond energy 化学键能量
- Tending to release electrons to form a chemical bond. 有释放电子以形成化学键倾向的
- The flame retardant fundamentals were discussed based on the flame retardant chemical reactions, bond energy, heat transfer and reaction kinetics aspects. 本文从阻燃化学反应、化学键能、热传递和反应动力学角度分析卤素类阻燃剂的阻燃机理。
- IR spectrum showed that the chemical bond was formed between PU and EP. 傅立叶红外光谱分析显示出了环氧树脂与水性聚氨酯之间存在化学键的连接。
- We seem to be considering chemical bonding solely in terms of potential energy. 我们似乎只用势能来考虑化学成键。
- A chemical bond. 化学黏合剂
- The composition of butadiene polyperoxide is analyzed.The energy of explosion reactions is calculated by bond energy method. 分析了丁二烯聚过氧化物的组成,用键能法计算了爆炸反应能量,结果与实例相符。
- The adsorption energy of H~+ on different coal surface, along with correlated chemical bond length, order, and net charge distribution were obtained by means of ZINDO quantum chemical calculation of model compounds. 通过对模型化合物的ZINDO量子化学理论计算 ;得到了H+ 在煤表面的吸附能、相关化学键的键级、键长和净电荷分布 .
- Compounds with bond energy of 180-260 kJ/mol were considered as good initiators for initiated cracking of n-heptane and nitroethane was the best in the used initiators. 以正庚烷为高碳烃的模型化合物,在微反装置上对正庚烷的引发裂解进行了研究。
- Nanotubes are stronger than metal because the chemical bond holding them together is stronger. 纳管之所以比金属硬,是因为把碳原子连在一起的化学键更强。
- The nature of chemical bond of halide and chalcogenide glasses was discussed in terms of the che-mical bond approach. 本文采用化学键方法对卤化物及硫卤玻璃的化学键特性进行了探讨。
- The FT-IR indicated that the modifers were combined to the surface of anhydrite powder by chemical bond. FT-IR分析表明,硬脂酸与硬石膏的表面以化学键结合。