How to Install and Uninstall xcfun.i686 Package on Fedora 36
Last updated: November 25,2024
1. Install "xcfun.i686" package
Please follow the guidelines below to install xcfun.i686 on Fedora 36
$
sudo dnf update
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$
sudo dnf install
xcfun.i686
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2. Uninstall "xcfun.i686" package
Please follow the guidance below to uninstall xcfun.i686 on Fedora 36:
$
sudo dnf remove
xcfun.i686
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$
sudo dnf autoremove
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3. Information about the xcfun.i686 package on Fedora 36
Last metadata expiration check: 1:10:52 ago on Thu Sep 8 02:05:26 2022.
Available Packages
Name : xcfun
Version : 2.1.1
Release : 5.fc36
Architecture : i686
Size : 706 k
Source : xcfun-2.1.1-5.fc36.src.rpm
Repository : fedora
Summary : A library of approximate exchange-correlation functionals
URL : https://xcfun.readthedocs.io
License : MPLv2.0
Description : XCFun is a library of approximate exchange-correlation functionals,
: used in the Density Functional Theory description of electronic
: structure. Because XCFun is based on automatic differentiation the
: library can provide arbitrary order derivatives of all supported
: functionals. Only the exchange-correlation energy expression needs to
: be implemented, which is a huge gain in productivity (and also
: efficiency). For this reason the library is very well suited for high
: order time dependent DFT or for the development of new functionals.
Available Packages
Name : xcfun
Version : 2.1.1
Release : 5.fc36
Architecture : i686
Size : 706 k
Source : xcfun-2.1.1-5.fc36.src.rpm
Repository : fedora
Summary : A library of approximate exchange-correlation functionals
URL : https://xcfun.readthedocs.io
License : MPLv2.0
Description : XCFun is a library of approximate exchange-correlation functionals,
: used in the Density Functional Theory description of electronic
: structure. Because XCFun is based on automatic differentiation the
: library can provide arbitrary order derivatives of all supported
: functionals. Only the exchange-correlation energy expression needs to
: be implemented, which is a huge gain in productivity (and also
: efficiency). For this reason the library is very well suited for high
: order time dependent DFT or for the development of new functionals.