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\BOOKMARK [2][-]{subsection.0.1}{My question from last class}{}% 1
\BOOKMARK [2][-]{subsection.0.2}{Your questions from last class}{}% 2
\BOOKMARK [1][-]{section.1}{Markdown examples}{}% 3
\BOOKMARK [2][-]{subsection.1.1}{Condition of a matrix}{section.1}% 4
\BOOKMARK [3][-]{subsubsection.1.1.1}{just checked in to see what condition my condition was in}{subsection.1.1}% 5
\BOOKMARK [3][-]{subsubsection.1.1.2}{Matrix norms}{subsection.1.1}% 6
\BOOKMARK [3][-]{subsubsection.1.1.3}{Condition of Matrix}{subsection.1.1}% 7
\BOOKMARK [2][-]{subsection.1.2}{P=2 norm is ratio of biggest eigenvalue to smallest eigenvalue!}{section.1}% 8
\BOOKMARK [1][-]{section.2}{Iterative Methods}{}% 9
\BOOKMARK [2][-]{subsection.2.1}{Gauss-Seidel method}{section.2}% 10
\BOOKMARK [3][-]{subsubsection.2.1.1}{Gauss-Seidel Iterative approach}{subsection.2.1}% 11
\BOOKMARK [3][-]{subsubsection.2.1.2}{Jacobi method}{subsection.2.1}% 12
\BOOKMARK [2][-]{subsection.2.2}{Gauss-Seidel with Relaxation}{section.2}% 13
\BOOKMARK [2][-]{subsection.2.3}{Nonlinear Systems}{section.2}% 14
\BOOKMARK [2][-]{subsection.2.4}{Newton-Raphson part II}{section.2}% 15
\BOOKMARK [3][-]{subsubsection.2.4.1}{Solution is again in the form Ax=b}{subsection.2.4}% 16
\BOOKMARK [2][-]{subsection.2.5}{Example of Jacobian calculation}{section.2}% 17
\BOOKMARK [3][-]{subsubsection.2.5.1}{Nonlinear springs supporting two masses in series}{subsection.2.5}% 18