Exercise Physics Wiki: Difference between revisions

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<math> G_{\mu\nu} + \Lambda g_{\mu\nu} = \frac{8 \pi G}{c^{4}}T_{\mu\nu} </math> Scott Miller
<math> G_{\mu\nu} + \Lambda g_{\mu\nu} = \frac{8 \pi G}{c^{4}}T_{\mu\nu} </math> Scott Miller
<math>\ e^{i\pi}+1=0 </math>    Kyle Serniak
<math>i\hbar\frac{\partial}{\partial t} \Psi = \hat H \Psi </math>    Hang Chen
<math>pi^{hbar*c}+1 = Psi</math>  Robert Bebeau
<math>\Delta x\Delta p\geq \frac{\hbar}{2} </math> Taylor Hynds
<math>E^{2}=p^{2}c^{2}+m^{2}c^{4}</math>  Jordon Adams
<math>V=IR</math>  Brett Israels
<math>I=I_{0}e^\tau</math> Ben Sadler
<math>e = \lim_{n\to\infty} \left( 1 + \frac{1}{n} \right)^n</math> Suhib Kiswani

Latest revision as of 22:56, 24 January 2011

Example:

Paul Dragulin

Scott Miller

Kyle Serniak

Hang Chen


Robert Bebeau

Taylor Hynds

Jordon Adams

Brett Israels

Ben Sadler

Suhib Kiswani