## Shrodinger Equation Applications [ENDORSED]

$H_{\psi }=E_{\psi }$

1-D: $E_{TOTAL}\psi (x)=E_{k}\psi (x)+V(x)\psi(x)=-\frac{h^{2}}{8\pi ^{2}m}\frac{d^{2}\psi(x)}{dx^{2}}+V(x)\psi(x)$

Jared Smith 1E
Posts: 51
Joined: Fri Sep 29, 2017 7:04 am

### Shrodinger Equation Applications

Two questions in one here, first do we need to know how to use/derive the shrodinger equation for the exam?
Also, I know in class that the professor said that the solutions for the equation are the electron orbitals, is that all the equation is used for?

Lianna Kishi 1A
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Joined: Thu Jul 27, 2017 3:00 am

### Re: Shrodinger Equation Applications

No we do not need to know how to derive it. Yes that's all we use it for in this class.

diangelosoriano
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Joined: Fri Sep 29, 2017 7:07 am

### Re: Shrodinger Equation Applications

I'm also curious as to what the equation can be applied to in real life situations. Can anyone elaborate on that?

Chem_Mod
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### Re: Shrodinger Equation Applications

The equation is only used for predicting orbital shapes. That is the main real-world application.

Kaileigh Yang 2I
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### Re: Shrodinger Equation Applications

Doesn't the Shrodinger equation only apply to particle in a box and certain laws of conservation of energy?

Chem_Mod
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### Re: Shrodinger Equation Applications

The Schrodinger equation is simplified to apply to the particle in a box type computations, but it can be used to predict orbital shapes for more complicated situations. The conservation of energy factors into the actual computations for the equation. However, most applications for the equation are far beyond the scope of this class.

905022356
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### Re: Shrodinger Equation Applications

Hi! I have a question, does the wave function work as a visual representation of what atomic orbitals look like? In other words, do atomic orbitals look like their respective wave functions?

Chem_Mod
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### Re: Shrodinger Equation Applications  [ENDORSED]

Yes, that is true.