That's what we're going to cover in terms of the energy portion of the Schrodinger equation.
这就是我们要讨论的关于薛定谔方程的能量部分。
The one problem that we run into is as we go to more and more atoms on the table, as we add on electrons, the Schrodinger equation is going to get more complicated.
我们将会遇到的一个问题,是当我们处理周期表中越来越多的原子时,当我们增加了电子,薛定谔方程,变得愈加复杂。
Schrodinger came up with an equation that said: "you tell me the forces acting on the electron, and I can tell you what its wave is doing at any point in space and time."
薛定谔建立了一个方程并宣称:“只要你告诉我作用于电子的力,我就能告诉你它在任意时空位置的波函数行为。”
Schrodinger had really been too timid in giving up his first relativistic equation which was not in agreement with the observations of the hydrogen spectrum.
薛定谔还是太胆小地放弃了他一开始得到的那个不符合氢原子光谱的相对论性方程。
After working on this for some time, schrodinger was able to arrive at an equation, a very neat and beautiful equation, which seemed to be correct from a general point of view.
在这个课题上工作了一段时间后,薛定谔得到了一个方程,一个简洁而美观的方程,而且从一个一般的视角看它似乎是正确的。
Also, when we're looking at the Schrodinger equation, it allows us to explain a stable hydrogen atom, which is something that classical mechanics did not allow us to do.
当我们看一个薛定谔方程的时候,它给出一个稳定的氢原子,这是在经典力学中做不到的。
We're going to be looking at the solutions to the Schrodinger equation for a hydrogen atom, and specifically we'll be looking at the binding energy of the electron to the nucleus.
我们将研究下氢原子薛定谔方程的解,特别是电子和核子的结合能,我们将研究这部分。
All right, so that's what we're going to cover in terms of the energy portion of the Schrodinger equation.
好,这就是我们要讲的,关于薛定谔方程能量的部分。
And on Monday what we were discussing was the solution to the Schrodinger equation for the wave function.
周一我们讨论了,薛定谔方程解的波函数。
When we first introduced the Schrodinger equation, what I told you was think of psi as being some representation of what an electron is.
当我们第一次介绍,薛定谔方程的时候,我说你们,可以,把psi看做是,电子位置的代表。
Klein and Gordon published the relativistic equation which was really the same as the equation which schrodinger had discovered previously.
克莱因和戈登发表的相对论性方程与薛定谔之前得到的方程实际上是一样的。
The transfer matrix and transmission coefficient through a parabolic quantum well are obtained by solving schrodinger equation .
文中通过求解薛定谔方程得到抛物形量子阱的变换矩阵与透射系数。
Characteristics of materials depend not only the interaction terms in solution by Schrodinger equation but also more on the boundary condition at the border and interfaces of different specimens.
材料特性不仅取决于薛定谔方程的相互作用项,也决定于自由表面和不同材料界面处的边界条件。
This paper will use small signal analysis and split-step Fourier to solve the complex nonlinear Schrodinger equation (NLSE).
本文将结合分步傅里叶方法和小信号分析法来求解复杂的非线性薛定谔方程(NLSE)。
In this paper, several study methods on PMD are analyzed, such as Jones matrix, Stokes vector and the coupled nonlinear Schrodinger equation.
主要分析讨论了PMD的几种研究方法:琼斯矩阵法、斯托克斯空间法和耦合非线性薛定谔方程。
Then the formula for the scalar product of angular momentum operators is used to deduce the Schrodinger equation for one particle in spherical coordinate.
在量子力学中求解球对称辏力场中的薛定锷方程时,角动量算符的几个代表关系起着关键作用。
The Schrodinger equation of time - dependent harmonic oscillator is solved by the time space transformation, and its application in physics is presented.
利用时空变换法求解含时谐振子的薛定谔方程,并对这类问题在物理上的应用作了说明。
I tackle the perturbation problem of the nonlinear Schrodinger equation because of its importance.
本人首先用此方法处理了自散焦非线性薛定谔方程的孤子微扰问题。
Modulation instability resulted from cross phase modulation(XPM) in decreasing dispersion fiber(DDF) is presented from nonlinear Schrodinger equation.
从非线性薛定谔方程出发得到了色散缓变光纤(DDF)中交叉相位调制(XPM)不稳定增益谱。
In terms of the Schrodinger equation, we now can write it in terms of our polar coordinates here.
在薛定谔方程中,我们现在可以用,极坐标的方式来表示了。
If you look in your book there's a whole table of different solutions to the Schrodinger equation for several different wave functions.
如果你们看书的话,上面有一整张,许多,不同波函数,薛定谔方程解的表。
The electronic configuration, all it is is the shorthand notation for that one electron approximation for the Schrodinger equation for lithium .
电子构型就是,对于锂的薛定谔方程,的单电子近似的,简化形式。
And when you solved the relativistic form of the Schrodinger equation, what you end up with is that you can have two possible values for the magnetic spin quantum number.
当你们解相对论形式的,薛定谔方程,你们最后会得到两个,可能的自旋磁量子数的值。
The interaction between two optical soliton is derived from nonlinear Schrodinger equation by variational approach.
本文利用变分原理,通过非线性薛定谔方程,导出光纤中传输的光学孤子相互作用。
The nonlinear Schrodinger equation (NLSE) is quite useful in the optical communication field, and has been applied widely to the optical communication systems simulation.
非线性薛定谔方程(NLSE)是光通信领域中常用的传输方程,广泛应用于光纤通信系统的仿真研究。
The derivative nonlinear Schrodinger equation (DNLSE) is an integrable equation of many physical applications.
微商非线性薛定谔方程(DNLSE)是有众多物理应用的可积方程。
And it turns out that the Schrodinger equation is an equation of motion in which you're describing a particle by describing it as a wave.
结果是薛定谔方程,用描述粒子波动性的方式,来描述这个粒子。
Applying complex variables, the usual forms of Hamilton equation and Schrodinger equation can be changed into a same form, etc.
引入复变数哈密顿方程和薛定谔方程可以变换为相同的形式。
The Schrodinger equation acts on the entire probability amplitude, not merely its absolute value.
方程作用于整个概率振幅,而不只是其绝对值。
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