- #1
Ackbach
Gold Member
MHB
- 4,155
- 92
Here is this week's POTW:
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The time-independent Schrödinger equation in one spatial dimension is
$$E \, \psi(x)=\left[-\frac{\hbar^2}{2m} \, \frac{d^2}{dx^2}+V(x)\right]\psi(x).$$
Show that $E$ must exceed the minimum value of $V(x)$ for every normalizable solution.
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Remember to read the http://www.mathhelpboards.com/showthread.php?772-Problem-of-the-Week-%28POTW%29-Procedure-and-Guidelines to find out how to http://www.mathhelpboards.com/forms.php?do=form&fid=2!
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The time-independent Schrödinger equation in one spatial dimension is
$$E \, \psi(x)=\left[-\frac{\hbar^2}{2m} \, \frac{d^2}{dx^2}+V(x)\right]\psi(x).$$
Show that $E$ must exceed the minimum value of $V(x)$ for every normalizable solution.
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Remember to read the http://www.mathhelpboards.com/showthread.php?772-Problem-of-the-Week-%28POTW%29-Procedure-and-Guidelines to find out how to http://www.mathhelpboards.com/forms.php?do=form&fid=2!