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Larson Lovdal edited section_Solving_for_the_e__1.tex
over 8 years ago
Commit id: 3f8d2565236bc83fe9b25ae16e05ef9c7cbe6bed
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diff --git a/section_Solving_for_the_e__1.tex b/section_Solving_for_the_e__1.tex
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\begin{equation}\label{eq7}
\frac{q}{m}=\frac{125\textit{V}\textit{R}^2}{{32\mu_0^2\textit{I}^2\textit{r}^2\textit{N}^2}}
\end{equation}
Using the numerical values from our experimental set up $\textit{R} = 0.33$ (m) $\textit{N} = 72$ turns and $\mu_0=4\pi\times10^-7
(\frac{N}{A^2})$ (\frac{\text{N}}{\text{A^2}})$ the equation becomes: