gnu: Add r-rootsolve.
* gnu/packages/cran.scm (r-rootsolve): New variable.
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@ -4813,3 +4813,37 @@ receiver operating characteristic (ROC curves). The area under the
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curve (AUC) can be compared with statistical tests based on U-statistics or
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curve (AUC) can be compared with statistical tests based on U-statistics or
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bootstrap. Confidence intervals can be computed for (p)AUC or ROC curves.")
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bootstrap. Confidence intervals can be computed for (p)AUC or ROC curves.")
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(license license:gpl3+)))
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(license license:gpl3+)))
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(define-public r-rootsolve
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(package
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(name "r-rootsolve")
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(version "1.7")
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(source
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(origin
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(method url-fetch)
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(uri (cran-uri "rootSolve" version))
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(sha256
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(base32
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"08ic6ggcc5dw4nv9xsqkm3vnvswmxyhnqnv1rdjv1h2gy1ivpcq8"))))
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(properties `((upstream-name . "rootSolve")))
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(build-system r-build-system)
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(native-inputs `(("gfortran" ,gfortran)))
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(home-page "https://cran.r-project.org/web/packages/rootSolve/")
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(synopsis "Tools for the analysis of ordinary differential equations")
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(description
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"This package provides routines to find the root of nonlinear functions,
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and to perform steady-state and equilibrium analysis of @dfn{ordinary
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differential equations} (ODE). It includes routines that:
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@enumerate
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@item generate gradient and jacobian matrices (full and banded),
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@item find roots of non-linear equations by the Newton-Raphson method,
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@item estimate steady-state conditions of a system of (differential) equations
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in full, banded or sparse form, using the Newton-Raphson method, or by
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dynamically running,
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@item solve the steady-state conditions for uni- and multicomponent 1-D, 2-D,
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and 3-D partial differential equations, that have been converted to ordinary
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differential equations by numerical differencing (using the method-of-lines
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approach).
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@end enumerate\n")
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(license license:gpl2+)))
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