binding-energy formula结合能公式
binding free energy结合自由能
binding free energy landscape能全景图
binding g energy结合能
predicted binding free energy预测结合自由能
binding-energy束缚能
binding g energy per nucleon每个核子的结合能
binding g energy of nucleus核结合能
binding g energy per proton每个质子的结合能
Zinc oxide (ZnO) is an interesting wide band gap (3.3 eV) semiconductor material with a binding energy of 60 meV.
氧化锌是一种重要的宽禁带隙(3.3 eV)半导体材料,它的激子束缚能高达60 meV。
The factors to affect the binding energy are discussed.
3.讨论了影响量子点施主杂质结合能的多种因素。
参考来源 - 球形量子点中类氢施主杂质电子结构的研究The results show that the temperature can affect mechanical properties but influence little on binding energy.
结果表明,温度对力学性能影响较大,而对结合能(Ebind)影响较小。
参考来源 - 高能体系结构和性能的分子动力学研究Zinc Oxide (ZnO) is a wide band-gap semiconductor (3.37eV at room temperature) with the high exciton binding energy of 60 meV.
氧化锌是宽禁带(3.3ev)直接带隙n型半导体材料,并且具有较高的激子束缚能(60ev)。
参考来源 - ZnO荧光薄膜的制备与硫化研究N(名词) the energy that must be supplied to a stable nucleus before it can undergo fission. It is equal to the mass defect 结合能 [physics]