...)能量 h=Planck constant ( 6.62 x 10 -34 J s ), v - frequency (Hz) BE=电子键能或结合能、电离能(Electron Binding Energy) KE=电子动能 (Electron Kinetic Energy) spec = 谱学功函数或电子反冲能 (Spectrometer Work Function),谱学功函数极小...
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... alpha particle binding energy 粒子结合能 electron binding energy 电子结合能 ; 释义电子结合能 binding energy,proton 释义质子结合能 ; 质子结合能 ...
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In fact, if any electron comes in their midst, they'll capture it because the binding energy is so high.
事实上,如果电子从中间进来,它们会捕获它,因为束缚能很大。
What is the binding energy of the ground state electron in hydrogen?
氢在基态的情况下,它的电子结合能是多少?
So we have the operationon the wave function in terms of r, theta, and phi and remember this e is just our binding energy for the electron, and we get back out this wave function.
我们用r,θ,φ来表示,将算符作用于波函数,而且记住e仅仅是电子结合能,然后后面加上波函数。
And, in fact, if any electron comes in their midst, they'll capture it because the binding energy is so high.
事实上,如果电子从中间进来,它们会捕获它,因为束缚能是如此之大。
So when you operate on the wave function, what you end up with is getting the binding energy of the electron, and the wave function back out.
所以当你将它作用于波函数时,你得到的是电子的结合能,和后面的波函数。
What is the binding energy of the ground state electron in hydrogen?
氢在基态的情况下,它的电子结合能是多少?
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