... dissociation, energy 能解离 bond dissociation energy 键的离解能 ; 键离解能 ; 解离能 ; 键裂解能 Molecular Dissociation Energy 分子离解能 ...
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... dissociation, energy 能解离 bond dissociation energy 键的离解能 ; 键离解能 ; 解离能 ; 键裂解能 Molecular Dissociation Energy 分子离解能 ...
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单电子转移反应和氢转移反应几乎总是同时发生,两种反应的进行主要取决于 键解离能 ( bond dissociation energy )和离子化能(ionization potential),又由抗氧化物质的结构、性质、溶解度、分配系数以及系统溶剂等因素决定。
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There's a bond dissociation energy going from the lowest available level in each molecule to the dissociation limit where we pulled the atoms apart.
我们把每个分子从最低能量把原子拉开,所需要的能量,叫裂解键能。
In contrast, the dissociation energy of a bond for hydrogen, and molecular hydrogen is everywhere around us, we see 432 kilojoules per mole.
相反,氢分子在我们周围到处都是,一个氢分子的离解能,是432千焦每摩尔。
So what we can actually directly compare is the dissociation energy or the bond strength of nitrogen versus hydrogen.
因此实际上我们可以直接进行比较,对氮分子与氢分子的离解能,或键的强度。
So, there's actually another way to graph it where we can directly graph the dissociation energy or the bond strengths.
其实,还有另外一种画这个曲线的方式,可以直接画出离解能的大小,或者键的强度。
So what we can actually directly compare is the dissociation energy or the bond strength of nitrogen versus hydrogen.
因此实际上我们可以直接进行比较,对氮分子与氢分子的离解能,或键的强度。
In contrast, the dissociation energy of a bond for hydrogen, and molecular hydrogen is everywhere around us, we see 432 kilojoules per mole.
相反,氢分子在我们周围到处都是,一个氢分子的离解能,是432千焦每摩尔。
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