# s11_47 - \documentclass[12pt]cfw_article \textheight 9.0in...

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\documentclass[12pt]{article} \textheight 9.0in \textwidth 6.0in \topmargin -0.4in \headsep 0.4in \oddsidemargin 0.25in \evensidemargin 0.25in \def\pmbf#1{{\mbox{\boldmath${#1}$}}} \def\sqr#1#2{{\vcenter{\hrule height.#2pt \hbox{\vrule width.#2pt height#1pt \kern#1pt \vrule width.#2pt} \hrule height.#2pt}}} \def\square{{\mathchoice\sqr64\sqr64\sqr{4.2}3\sqr{3.0}3}} \def\undertext#1{$\underline{\smash{\hbox{#1}}}$} \pagestyle{empty} \begin{document} %----------------------------------------------------% %%%%%%%%%%%%%%%%% %%%%%%%%%%%%%%%% %----------------------------------------------------% \centerline{\bf PROBLEM 47} \medskip \smallskip The Matrix $L$ is defined by: \begin{center} $L=\left( \begin{array}{cccc} l_{\ 0}^{0} & l_{\ 1}^{0} & l_{\ 2}^{0} & l_{\ 3}^{0} \\ l_{\ 0}^{1} & l_{\ 1}^{1} & l_{\ 2}^{1} & l_{\ 3}^{1} \\ l_{\ 0}^{2} & l_{\ 1}^{2} & l_{\ 2}^{2} & l_{\ 3}^{2} \\ \end{array} \right) .$ \bigskip \end{center} (a)--Calculate $-gL$. \ (b)--Write down the transpose matrix $\widetilde{L}$.\ (c)--Calculate$\widetilde{L}g$. \ (d)--Compare

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## This note was uploaded on 11/10/2011 for the course PHY 4241 taught by Professor Berg during the Spring '11 term at University of Florida.

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s11_47 - \documentclass[12pt]cfw_article \textheight 9.0in...

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