How to Install and Uninstall mmc.x86_64 Package on Fedora 35
Last updated: December 24,2024
1. Install "mmc.x86_64" package
Please follow the instructions below to install mmc.x86_64 on Fedora 35
$
sudo dnf update
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$
sudo dnf install
mmc.x86_64
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2. Uninstall "mmc.x86_64" package
Please follow the steps below to uninstall mmc.x86_64 on Fedora 35:
$
sudo dnf remove
mmc.x86_64
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$
sudo dnf autoremove
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3. Information about the mmc.x86_64 package on Fedora 35
Last metadata expiration check: 4:39:45 ago on Wed Sep 7 02:25:42 2022.
Available Packages
Name : mmc
Version : 1.7.9
Release : 5.fc35
Architecture : x86_64
Size : 99 k
Source : mmc-1.7.9-5.fc35.src.rpm
Repository : fedora
Summary : A GPU-based mesh-based Monte Carlo (MMC) photon simulator
URL : http://mcx.space/mmc
License : GPLv3+
Description : Mesh-based Monte Carlo (MMC) is a 3D Monte Carlo (MC) simulation software
: for photon transport in complex turbid media. MMC combines the strengths
: of the MC-based technique and the finite-element (FE) method: on the
: one hand, it can handle general media, including low-scattering ones,
: as in the MC method; on the other hand, it can use an FE-like tetrahedral
: mesh to represent curved boundaries and complex structures, making it
: even more accurate, flexible, and memory efficient. MMC uses the
: state-of-the-art ray-tracing techniques to simulate photon propagation in
: a mesh space. It has been extensively optimized for excellent computational
: efficiency and portability. MMC currently supports both multi-threaded
: parallel computing and GPU to maximize performance on modern processors.
Available Packages
Name : mmc
Version : 1.7.9
Release : 5.fc35
Architecture : x86_64
Size : 99 k
Source : mmc-1.7.9-5.fc35.src.rpm
Repository : fedora
Summary : A GPU-based mesh-based Monte Carlo (MMC) photon simulator
URL : http://mcx.space/mmc
License : GPLv3+
Description : Mesh-based Monte Carlo (MMC) is a 3D Monte Carlo (MC) simulation software
: for photon transport in complex turbid media. MMC combines the strengths
: of the MC-based technique and the finite-element (FE) method: on the
: one hand, it can handle general media, including low-scattering ones,
: as in the MC method; on the other hand, it can use an FE-like tetrahedral
: mesh to represent curved boundaries and complex structures, making it
: even more accurate, flexible, and memory efficient. MMC uses the
: state-of-the-art ray-tracing techniques to simulate photon propagation in
: a mesh space. It has been extensively optimized for excellent computational
: efficiency and portability. MMC currently supports both multi-threaded
: parallel computing and GPU to maximize performance on modern processors.