How to Install and Uninstall python39-kwant Package on openSuSE Tumbleweed
Last updated: November 26,2024
1. Install "python39-kwant" package
Please follow the guidance below to install python39-kwant on openSuSE Tumbleweed
$
sudo zypper refresh
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$
sudo zypper install
python39-kwant
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2. Uninstall "python39-kwant" package
Learn how to uninstall python39-kwant on openSuSE Tumbleweed:
$
sudo zypper remove
python39-kwant
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3. Information about the python39-kwant package on openSuSE Tumbleweed
Information for package python39-kwant:
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Repository : openSUSE-Tumbleweed-Oss
Name : python39-kwant
Version : 1.4.4-1.2
Arch : x86_64
Vendor : openSUSE
Installed Size : 4.8 MiB
Installed : No
Status : not installed
Source package : python-kwant-1.4.4-1.2.src
Upstream URL : https://kwant-project.org/
Summary : Python library for numerical quantum transport calculations
Description :
Kwant is a Python library for numerical calculations on tight-binding
models with a strong focus on quantum transport. Kwant can be used to
simulate a variety of systems and phenomena in quantum physics
including: metals, graphene, topological insulators, quantum Hall
effect, superconductivity, spintronics, molecular electronics, any
combination of the above, and many other things. Kwant can calculate
transport properties (conductance, noise, scattering matrix),
dispersion relations, modes, wave functions, various Green’s
functions, out-of-equilibrium local quantities.
---------------------------------------
Repository : openSUSE-Tumbleweed-Oss
Name : python39-kwant
Version : 1.4.4-1.2
Arch : x86_64
Vendor : openSUSE
Installed Size : 4.8 MiB
Installed : No
Status : not installed
Source package : python-kwant-1.4.4-1.2.src
Upstream URL : https://kwant-project.org/
Summary : Python library for numerical quantum transport calculations
Description :
Kwant is a Python library for numerical calculations on tight-binding
models with a strong focus on quantum transport. Kwant can be used to
simulate a variety of systems and phenomena in quantum physics
including: metals, graphene, topological insulators, quantum Hall
effect, superconductivity, spintronics, molecular electronics, any
combination of the above, and many other things. Kwant can calculate
transport properties (conductance, noise, scattering matrix),
dispersion relations, modes, wave functions, various Green’s
functions, out-of-equilibrium local quantities.