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Documentation for 15ce8ac92d
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@@ -216,7 +216,8 @@ solve-a-rat-in-a-maze-c-java-pytho/">Rat in a Maze</a> algorithm </td></tr>
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<tr id="row_11_12_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><a href="d4/d68/qr__decompose_8h_source.html"><span class="icondoc"></span></a><a class="el" href="d4/d68/qr__decompose_8h.html" target="_self">qr_decompose.h</a></td><td class="desc">Library functions to compute <a href="https://en.wikipedia.org/wiki/QR_decomposition">QR decomposition</a> of a given matrix </td></tr>
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<tr id="row_11_13_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="d3/d24/qr__decomposition_8cpp.html" target="_self">qr_decomposition.cpp</a></td><td class="desc">Program to compute the <a href="https://en.wikipedia.org/wiki/QR_decomposition">QR decomposition</a> of a given matrix </td></tr>
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<tr id="row_11_14_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="de/d75/qr__eigen__values_8cpp.html" target="_self">qr_eigen_values.cpp</a></td><td class="desc">Compute real eigen values and eigen vectors of a symmetric matrix using <a href="https://en.wikipedia.org/wiki/QR_decomposition">QR decomposition</a> method </td></tr>
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<tr id="row_11_15_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="df/dc8/successive__approximation_8cpp.html" target="_self">successive_approximation.cpp</a></td><td class="desc">Method of successive approximations using <a href="https://en.wikipedia.org/wiki/Fixed-point_iteration">fixed-point iteration</a> method </td></tr>
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<tr id="row_11_15_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="d1/da6/rungekutta_8cpp.html" target="_self">rungekutta.cpp</a></td><td class="desc"><a href="https://en.wikipedia.org/wiki/Runge%E2%80%93Kutta_methods">Runge Kutta fourth order</a> method implementation </td></tr>
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<tr id="row_11_16_" class="even" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="df/dc8/successive__approximation_8cpp.html" target="_self">successive_approximation.cpp</a></td><td class="desc">Method of successive approximations using <a href="https://en.wikipedia.org/wiki/Fixed-point_iteration">fixed-point iteration</a> method </td></tr>
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<tr id="row_12_" class="even"><td class="entry"><span style="width:0px;display:inline-block;"> </span><span id="arr_12_" class="arrow" onclick="toggleFolder('12_')">►</span><span id="img_12_" class="iconfclosed" onclick="toggleFolder('12_')"> </span><a class="el" href="dir_9510827d0b234b3cc54b29892f217477.html" target="_self">others</a></td><td class="desc"></td></tr>
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<tr id="row_12_0_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="d1/d76/buzz__number_8cpp.html" target="_self">buzz_number.cpp</a></td><td class="desc">A buzz number is a number that is either divisible by 7 or has last digit as 7 </td></tr>
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<tr id="row_12_1_" style="display:none;"><td class="entry"><span style="width:32px;display:inline-block;"> </span><span class="icondoc"></span><a class="el" href="df/d06/decimal__to__binary_8cpp.html" target="_self">decimal_to_binary.cpp</a></td><td class="desc">Function to convert decimal number to binary representation </td></tr>
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