Difference between revisions of "HomeWork Simulations of Particle Interactions with Matter"
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Line 18: | Line 18: | ||
;Note | ;Note | ||
: <math>< \left ( v - <v>\right)^2> = <v^2 - 2v<v> + <v>^2> = <v^2> - (<v>)^2</math> | : <math>< \left ( v - <v>\right)^2> = <v^2 - 2v<v> + <v>^2> = <v^2> - (<v>)^2</math> | ||
− | : | + | : <math>= \frac{3kT}{m} - \frac{8kT}{m}</math> = velocity fluctuation |
: <math>\frac{m^2}{4} < \left ( v^2 - <v^2>\right)^2> = \frac{m}{4}\left ( <v^4> - (<v^2>)^2 \right )</math> | : <math>\frac{m^2}{4} < \left ( v^2 - <v^2>\right)^2> = \frac{m}{4}\left ( <v^4> - (<v^2>)^2 \right )</math> | ||
:<math>=\frac{1}{4} \left ( 15(kT)^2 - (3kT)^2\right)</math> | :<math>=\frac{1}{4} \left ( 15(kT)^2 - (3kT)^2\right)</math> |
Revision as of 21:12, 27 September 2007
Homework 1
1.) Mawell Boltzmann
Given the Maxwell -Boltzmann Distribution
a.) Show <v>
Show that
b.) Energy Fluctuation
Show that the energy fluctuation is
- Note
- = velocity fluctuation
2.) MC calculation of Pi
Calculate \pi using the Monte Carlo method described in the Notes