Evaluation of the Carlson elliptic integrals and the incomplete elliptic integrals with complex arguments. The implementations use Carlson's algorithms <doi:10.1007/BF02198293>. Applications of elliptic integrals include probability distributions, geometry, physics, mechanics, electrodynamics, statistical mechanics, astronomy, geodesy, geodesics on conics, and magnetic field calculations.
Version: | 1.1.0 |
Suggests: | gsl, testthat |
Published: | 2022-06-28 |
Author: | Stéphane Laurent |
Maintainer: | Stéphane Laurent <laurent_step at outlook.fr> |
BugReports: | https://github.com/stla/Carlson/issues |
License: | GPL-3 |
URL: | https://github.com/stla/Carlson |
NeedsCompilation: | no |
Materials: | NEWS |
In views: | NumericalMathematics |
CRAN checks: | Carlson results |
Reference manual: | Carlson.pdf |
Package source: | Carlson_1.1.0.tar.gz |
Windows binaries: | r-devel: Carlson_1.1.0.zip, r-release: Carlson_1.1.0.zip, r-oldrel: Carlson_1.1.0.zip |
macOS binaries: | r-release (arm64): Carlson_1.1.0.tgz, r-oldrel (arm64): Carlson_1.1.0.tgz, r-release (x86_64): Carlson_1.1.0.tgz, r-oldrel (x86_64): Carlson_1.1.0.tgz |
Old sources: | Carlson archive |
Reverse imports: | jacobi |
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