Fix javadoc issues - had to use CSS to simulate nested <sup> tags
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@ -46,7 +46,6 @@ import org.apache.commons.math4.util.FastMath;
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* indicates that unless otherwise stated in the code, all FORTRAN functions in
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* indicates that unless otherwise stated in the code, all FORTRAN functions in
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* this library are license free. Since no such notice appears in the code these
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* this library are license free. Since no such notice appears in the code these
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* functions can safely be ported to Commons-Math.
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* functions can safely be ported to Commons-Math.
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* </p>
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*/
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*/
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public class Beta {
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public class Beta {
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/** Maximum allowed numerical error. */
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/** Maximum allowed numerical error. */
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@ -379,7 +378,7 @@ public class Beta {
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}
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}
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/**
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/**
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* Returns the value of log B(p, q) for 0 ≤ x ≤ 1 and p, q > 0. Based on the
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* Returns the value of {@code log B(p, q)} for {@code 0 ≤ x ≤ 1} and {@code p, q > 0}. Based on the
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* <em>NSWC Library of Mathematics Subroutines</em> implementation,
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* <em>NSWC Library of Mathematics Subroutines</em> implementation,
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* {@code DBETLN}.
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* {@code DBETLN}.
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*
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*
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@ -45,7 +45,7 @@ public class Erf {
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/**
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/**
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* Returns the error function.
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* Returns the error function.
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*
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*
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* <p>erf(x) = 2/√π <sub>0</sub>∫<sup>x</sup> e<sup>-t<sup>2</sup></sup>dt </p>
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* <p>erf(x) = 2/√π <sub>0</sub>∫<sup>x</sup> e<sup>-t<span style="position: relative; top: -.5em">2</span></sup>dt </p>
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*
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*
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* <p>This implementation computes erf(x) using the
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* <p>This implementation computes erf(x) using the
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* {@link Gamma#regularizedGammaP(double, double, double, int) regularized gamma function},
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* {@link Gamma#regularizedGammaP(double, double, double, int) regularized gamma function},
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@ -73,7 +73,7 @@ public class Erf {
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/**
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/**
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* Returns the complementary error function.
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* Returns the complementary error function.
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*
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*
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* <p>erfc(x) = 2/√π <sub>x</sub>∫<sup>∞</sup> e<sup>-t<sup>2</sup></sup>dt
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* <p>erfc(x) = 2/√π <sub>x</sub>∫<sup>∞</sup> e<sup>-t<span style="position: relative; top: -.5em">2</span></sup>dt
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* <br>
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* <br>
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* = 1 - {@link #erf(double) erf(x)} </p>
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* = 1 - {@link #erf(double) erf(x)} </p>
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*
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*
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