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#LaTeX #Biophotonics #Equations
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\begin{equation}\label{Eq-red_scat_coef} | |
$\mu _{s}^{'}=\mu _{s}(1-g)$ | |
\end{equation} | |
\begin{equation}\label{Eq-tot_attnt_coef} | |
$\mu _{t}=\mu_{a}+\mu_{s}$ | |
\end{equation} | |
\begin{equation}\label{Eq-mod_lambert_beer} | |
I={{I}_{0}}{{e}^{-{{\mu }_{eff}}z}} | |
\end{equation} | |
\begin{equation}\label{Eq-eff_attnt_coef} | |
\mu_{eff}=\frac{1}\delta | |
\end{equation | |
\begin{equation}\label{Eq-mean_pen_dpth} | |
\delta ={{\left[ 3{{\mu }_{a}}({{\mu }_{a}}+\mu _{s}^{'}) \right]}^{1/2}} | |
\end{equation} | |
\begin{equation}\label{Eq-abs_coeff_atlam} | |
{{\mu }_{a}}(\lambda )=2.3\cdot c\cdot \left[ \alpha \cdot \varepsilon Hb{{O}_{2}}(\lambda )+(1-\alpha )\cdot \varepsilon Hbb(\lambda ) \right]\cdot \left[ C{{O}_{2}} \right] | |
\end{equation} |
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