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222 lines
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<a href="../MathNet.Numerics.Integration/DoubleExponentialTransformation.htm" class="current">DoubleExponentialTransformation</a>
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<a href="../MathNet.Numerics.Integration/GaussKronrodRule.htm">GaussKronrodRule</a>
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<div class="header">
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<p class="class"><strong>Type</strong> DoubleExponentialTransformation</p>
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<p><strong>Namespace</strong> MathNet.Numerics.Integration</p>
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</div>
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<div class="sub-header">
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<div id="summary">Analytic integration algorithm for smooth functions with no discontinuities
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or derivative discontinuities and no poles inside the interval.
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</div>
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<h3 class="section">Static Functions</h3>
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<ul>
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<li><a href="../MathNet.Numerics.Integration/DoubleExponentialTransformation.htm#ContourIntegrate">ContourIntegrate</a></li>
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<li><a href="../MathNet.Numerics.Integration/DoubleExponentialTransformation.htm#Integrate">Integrate</a></li>
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</ul>
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<h3 class="section">Public Static Functions</h3>
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<div id="ContourIntegrate" class="method">
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<h4><span title="System.Numerics.Complex">Complex</span> <strong>ContourIntegrate</strong>(<span title="System.Func<double, Complex>">Func<double, Complex></span> f, <span title="System.double">double</span> intervalBegin, <span title="System.double">double</span> intervalEnd, <span title="System.double">double</span> targetRelativeError)</h4>
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<div class="content">Approximate the integral by the double exponential transformation
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<div class="parameters">
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<h5>Parameters</h5>
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<h6><code><span title="System.Func<double, Complex>">Func<double, Complex></span></code> f</h6>
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<p class="comments">The analytic smooth complex function to integrate, defined on the real domain. </p>
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<h6><code><span title="System.double">double</span></code> intervalBegin</h6>
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<p class="comments">Where the interval starts, inclusive and finite. </p>
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<h6><code><span title="System.double">double</span></code> intervalEnd</h6>
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<p class="comments">Where the interval stops, inclusive and finite. </p>
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<h6><code><span title="System.double">double</span></code> targetRelativeError</h6>
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<p class="comments">The expected relative accuracy of the approximation. </p>
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</div>
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<div class="return">
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<h5>Return</h5>
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<h6><code><span title="System.Numerics.Complex">Complex</span></code></h6>
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<p>Approximation of the finite integral in the given interval. </p>
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</div>
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</div>
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</div>
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<div id="Integrate" class="method">
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<h4><span title="System.double">double</span> <strong>Integrate</strong>(<span title="System.Func<double, double>">Func<double, double></span> f, <span title="System.double">double</span> intervalBegin, <span title="System.double">double</span> intervalEnd, <span title="System.double">double</span> targetRelativeError)</h4>
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<div class="content">Approximate the integral by the double exponential transformation
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<div class="parameters">
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<h5>Parameters</h5>
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<h6><code><span title="System.Func<double, double>">Func<double, double></span></code> f</h6>
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<p class="comments">The analytic smooth function to integrate. </p>
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<h6><code><span title="System.double">double</span></code> intervalBegin</h6>
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<p class="comments">Where the interval starts, inclusive and finite. </p>
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<h6><code><span title="System.double">double</span></code> intervalEnd</h6>
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<p class="comments">Where the interval stops, inclusive and finite. </p>
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<h6><code><span title="System.double">double</span></code> targetRelativeError</h6>
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<p class="comments">The expected relative accuracy of the approximation. </p>
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</div>
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<div class="return">
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<h5>Return</h5>
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<h6><code><span title="System.double">double</span></code></h6>
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<p>Approximation of the finite integral in the given interval. </p>
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</div>
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<p>Based on v5.0.0.0 of MathNet.Numerics (Math.NET Numerics)</p>
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