Lindsey Yue edited section_Reflection_Coefficients_The_reflection__.tex  almost 8 years ago

Commit id: 2af3348fe4bacb7e1f8a31d4053e26aea289645b

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where the upper sign applies to incident and transmitted waves, and the lower sign applies to reflected waves.  %  \begin{equation}  H_{\perp\mathrm{i}} \left( \mathbf{H}_{0\mathrm{i}}  + H_{\perp\mathrm{r}} \mathbf{H}_{0\mathrm{r}} \right) \times \mathbf{\hat{n}}  = H_{\perp\mathrm{t}} \mathbf{H}_{0\mathrm{t}} \times \mathbf{\hat{n}}  \end{equation}  %  \begin{equation}  \left( \dfrac{m}{c_{0} \mu} \left( E_{\parallel\mathrm{i}} \mathbf{\hat{e}}_{\perp} - E_{\perp\mathrm{i}} \mathbf{\hat{e}}_{\parallel} \right) - \dfrac{m}{c_{0} \mu} \left( E_{\parallel\mathrm{r}} \mathbf{\hat{e}}_{\perp} - E_{\perp\mathrm{r}} \mathbf{\hat{e}}_{\parallel} \right) \right) \times \mathbf{\hat{n}} = \dfrac{m}{c_{0} \mu} \left( E_{\parallel\mathrm{t}} \mathbf{\hat{e}}_{\perp} - E_{\perp\mathrm{e}} \mathbf{\hat{e}}_{\parallel} \right) \times \mathbf{\hat{n}}  \end{equation}