awips2/pythonPackages/scientific/Doc/Reference/Scientific.Geometry-module.html
root a02aeb236c Initial revision of AWIPS2 11.9.0-7p5
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<a href="Scientific-module.html">Package&nbsp;Scientific</a> ::
Package&nbsp;Geometry
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<!-- ==================== PACKAGE DESCRIPTION ==================== -->
<h1 class="epydoc">Package Geometry</h1><p class="nomargin-top"></p>
<p>Geometrical quantities and objects</p>
<p>The geometrical quantities are vectors and tensors, transformations,
and quaternions as descriptions of rotations. There are also tensor
fields, which were included here (rather than in <a
href="Scientific.Functions-module.html"
class="link">Scientific.Functions</a>) because they are most often used
in a geometric context. Finally, there are classes for elementary
geometrical objects such as spheres and planes.</p>
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<ul class="nomargin">
<li> <strong class="uidlink"><a href="Scientific.Geometry.Objects3D-module.html">Scientific.Geometry.Objects3D</a></strong>: <em class="summary">Geometrical objects in 3D space</em> </li>
<li> <strong class="uidlink"><a href="Scientific.Geometry.Quaternion-module.html">Scientific.Geometry.Quaternion</a></strong>: <em class="summary">Quaternions as representations of rotations in 3D space</em> </li>
<li> <strong class="uidlink"><a href="Scientific.Geometry.TensorAnalysis-module.html">Scientific.Geometry.TensorAnalysis</a></strong>: <em class="summary">Vector and tensor fields with derivatives</em> </li>
<li> <strong class="uidlink"><a href="Scientific.Geometry.Transformation-module.html">Scientific.Geometry.Transformation</a></strong>: <em class="summary">Linear transformations in 3D space</em> </li>
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<span class="summary-type">&nbsp;</span>
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<a href="Scientific.Geometry.Tensor-class.html" class="summary-name">Tensor</a><br />
Tensor in 3D space
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<span class="summary-type">&nbsp;</span>
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Vector in 3D space
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<span class="table-header">Variables</span></td>
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<span class="summary-type">&nbsp;</span>
</td><td class="summary">
<a href="Scientific.Geometry-module.html#delta" class="summary-name">delta</a> = <code title="Tensor([[1 0 0]
[0 1 0]
[0 0 1]])">Tensor([[1 0<code class="variable-ellipsis">...</code></code>
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<span class="summary-type">&nbsp;</span>
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<a href="Scientific.Geometry-module.html#epsilon" class="summary-name">epsilon</a> = <code title="Tensor([[[ 0 0 0]
[ 0 0 1]
[ 0 -1 0]]
[[ 0 0 -1]
[ 0 0 0]
[ 1 0 0]]
[[ 0 1 0]
[-1 0 0]
...">Tensor([[[ 0 0 <code class="variable-ellipsis">...</code></code>
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<span class="summary-type">&nbsp;</span>
</td><td class="summary">
<a name="ex"></a><span class="summary-name">ex</span> = <code title="Vector(1.000000,0.000000,0.000000)">Vector(1.000000,0.000000,0.000000)</code>
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<span class="summary-type">&nbsp;</span>
</td><td class="summary">
<a name="ey"></a><span class="summary-name">ey</span> = <code title="Vector(0.000000,1.000000,0.000000)">Vector(0.000000,1.000000,0.000000)</code>
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<td width="15%" align="right" valign="top" class="summary">
<span class="summary-type">&nbsp;</span>
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<a name="ez"></a><span class="summary-name">ez</span> = <code title="Vector(0.000000,0.000000,1.000000)">Vector(0.000000,0.000000,1.000000)</code>
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<td width="15%" align="right" valign="top" class="summary">
<span class="summary-type">&nbsp;</span>
</td><td class="summary">
<a name="nullVector"></a><span class="summary-name">nullVector</span> = <code title="Vector(0.000000,0.000000,0.000000)">Vector(0.000000,0.000000,0.000000)</code>
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<!-- ==================== VARIABLES DETAILS ==================== -->
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<span class="table-header">Variables Details</span></td>
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<h3 class="epydoc">delta</h3>
<dl class="fields">
</dl>
<dl class="fields">
<dt>Value:</dt>
<dd><table><tr><td><pre class="variable">
Tensor([[1 0 0]
[0 1 0]
[0 0 1]])
</pre></td></tr></table>
</dd>
</dl>
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<h3 class="epydoc">epsilon</h3>
<dl class="fields">
</dl>
<dl class="fields">
<dt>Value:</dt>
<dd><table><tr><td><pre class="variable">
Tensor([[[ 0 0 0]
[ 0 0 1]
[ 0 -1 0]]
[[ 0 0 -1]
[ 0 0 0]
[ 1 0 0]]
[[ 0 1 0]
[-1 0 0]
<code class="variable-ellipsis">...</code>
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