How to Install and Uninstall librheolef-dev Package on Ubuntu 21.10 (Impish Indri)

Last updated: May 18,2024

1. Install "librheolef-dev" package

In this section, we are going to explain the necessary steps to install librheolef-dev on Ubuntu 21.10 (Impish Indri)

$ sudo apt update $ sudo apt install librheolef-dev

2. Uninstall "librheolef-dev" package

Please follow the instructions below to uninstall librheolef-dev on Ubuntu 21.10 (Impish Indri):

$ sudo apt remove librheolef-dev $ sudo apt autoclean && sudo apt autoremove

3. Information about the librheolef-dev package on Ubuntu 21.10 (Impish Indri)

Package: librheolef-dev
Architecture: amd64
Version: 7.1-6
Priority: optional
Section: universe/libdevel
Source: rheolef
Origin: Ubuntu
Maintainer: Ubuntu Developers
Original-Maintainer: Debian Science Maintainers
Bugs: https://bugs.launchpad.net/ubuntu/+filebug
Installed-Size: 2192
Depends: librheolef1 (= 7.1-6), g++, make, libboost-dev, libboost-mpi-dev, libboost-iostreams-dev, libcgal-dev, libeigen3-dev, libsuitesparse-dev, liblapack-dev, libscotch-dev, libptscotch-dev, libmumps-scotch-dev, libmumps-ptscotch-dev
Recommends: rheolef-doc (= 7.1-6)
Breaks: rheolef (<< 7.1-6~)
Replaces: rheolef (<< 7.1-6~)
Filename: pool/universe/r/rheolef/librheolef-dev_7.1-6_amd64.deb
Size: 339024
MD5sum: 96de52890e434e0b0458b82307f69fb5
SHA1: 7227947c2c3cd7910271693332e5d26dc82ea9ae
SHA256: 20616c035b4f98d7391bc162aebb8af39d6071f5fe8805282d68a314e9d0f5d0
SHA512: e958811131b802f0f502f95d9117198d4a6e4c1f1f1c5cf9e8f52161433edd1643709a8901968fc38c8d2a9d9028e9674cd6d8a368980538a494152fc4a7dd8e
Homepage: http://ljk.imag.fr/membres/Pierre.Saramito/rheolef
Description-en: efficient Finite Element environment - development files
Rheolef is a computer environment that serves as a convenient laboratory for
computations in applied mathematics involving finite element-like methods.
It provides a set of commands and C++ algorithms and containers.
.
Most basically, containers cover the classic graph data structure for sparse
matrix formats and finite element meshes. At a higher level of abstraction,
they can handle approximate finite element spaces, discrete fields.
Flexible and powerful expressions are used to specify bilinear forms.
.
Current applications include:
* massively distributed memory finite element environment, based on MPI;
* elasticity, Stokes and Navier-Stokes problems in 2D and 3D;
* complex fluids applications: viscoplasticity, viscoelasticity, wall slip;
* nonlinear problems with fixed-point, Newton and continuation methods;
* high order polynomials, mixed elements and discontinuous Galerkin methods;
* auto-adaptive mesh approaches;
* axisymmetric problems;
* multi-regions and variable coefficient problems.
.
This package provides the headers required for development.
Description-md5: b57cb7ed615e9036ae6ab40459f7f80f