User:Erik: Difference between revisions

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(enjoy an Integral Equation)
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Web: [http://sl1200.org/~erik/ http://sl1200s.org/~erik/]<br>
Web: [http://sl1200.org/~erik/ http://sl1200s.org/~erik/]<br>
IRC: [irc://frop.taphouse.org/ Taphouse Cabal] [irc://irc.efnet.org/ EFnet] [irc://chat.freenode.net/ The Freenode Network]<br>
IRC: [irc://frop.taphouse.org/ Taphouse Cabal] [irc://irc.efnet.org/ EFnet] [irc://chat.freenode.net/ The Freenode Network]<br>


<math>\phi_n(\kappa) = \frac{1}{4\pi^2\kappa^2} \int_0^\infty \frac{\sin(\kappa R)}{\kappa R} \frac{\partial}{\partial R}\left[R^2\frac{\partial D_n(R)}{\partial R}\right]\,dR</math>
<math>\phi_n(\kappa) = \frac{1}{4\pi^2\kappa^2} \int_0^\infty \frac{\sin(\kappa R)}{\kappa R} \frac{\partial}{\partial R}\left[R^2\frac{\partial D_n(R)}{\partial R}\right]\,dR</math>

Revision as of 19:09, 27 January 2012

Name: Erik Hanson
Web: http://sl1200s.org/~erik/
IRC: Taphouse Cabal EFnet The Freenode Network


<math>\phi_n(\kappa) = \frac{1}{4\pi^2\kappa^2} \int_0^\infty \frac{\sin(\kappa R)}{\kappa R} \frac{\partial}{\partial R}\left[R^2\frac{\partial D_n(R)}{\partial R}\right]\,dR</math>