<divid="projectbrief">The final aim of our program is to implement numerical methods for the calculation of the eigenvalues and eigenvectors of a matrix.</div>
<tr><tdclass="entry"><aclass="el"href="class_matrix.html#ae0bb7d862099f287b92e91aca8048671">inversePowerMethod</a>(double **matrix, int size, double tol, double shift_amount)</td><tdclass="entry"><aclass="el"href="class_matrix.html">Matrix</a></td><tdclass="entry"></td></tr>
<trclass="even"><tdclass="entry"><aclass="el"href="class_matrix.html#ac867d86cbc3be78de23405d705f148a6">LUPDecompose</a>(double **A, int N, double Tol, int *P)</td><tdclass="entry"><aclass="el"href="class_matrix.html">Matrix</a></td><tdclass="entry"></td></tr>
<tr><tdclass="entry"><aclass="el"href="class_matrix.html#a49cbcea74e3453738df7127817ae4dd7">LUPSolve</a>(double **A, int *P, double *b, int N, double *x)</td><tdclass="entry"><aclass="el"href="class_matrix.html">Matrix</a></td><tdclass="entry"></td></tr>
<tr><tdclass="entry"><aclass="el"href="class_matrix.html#a1de096de305701dc6eb63c56eed18cfb">powerMethod</a>(double **m, int size, double tol, double shift_amount)</td><tdclass="entry"><aclass="el"href="class_matrix.html">Matrix</a></td><tdclass="entry"></td></tr>
<trclass="even"><tdclass="entry"><aclass="el"href="class_matrix.html#a5ecdee507bf406c65889542907874eee">printMatrix</a>(double **matrix, int size)</td><tdclass="entry"><aclass="el"href="class_matrix.html">Matrix</a></td><tdclass="entry"></td></tr>
<tr><tdclass="entry"><aclass="el"href="class_matrix.html#a568fbdaf8c09b0d2584328b5940affe2">shift</a>(double **A, int size, double shift)</td><tdclass="entry"><aclass="el"href="class_matrix.html">Matrix</a></td><tdclass="entry"></td></tr>