[ Pakiet źródłowy: debian-science ]
Pakiet: science-physics-dev (1.14.6)
Odnośniki dla science-physics-dev
Zasoby systemu Debian:
- Raporty o błędach
- Developer Information
- Dziennik zmian w systemie Debian
- Informacje nt. praw autorskich
Pobieranie pakietu źródłowego debian-science:
Opiekunowie:
- Debian Science Team (Strona QA, Archiwum e-mail)
- Andreas Tille (Strona QA)
- Ole Streicher (Strona QA)
Zasoby zewnętrzne:
- Strona internetowa [wiki.debian.org]
Podobne pakiety:
"Debian Science" - pakiety do tworzenia programów matematycznych
Ten metapakiet instaluje pakiety z projektu "Debian Science", które mogą być przydatne do opracowywania programów matematycznych.
Warto również zwrócić uwagę na metapakiet science-physics.
Inne pakiety związane z science-physics-dev
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- dep: science-config (= 1.14.6)
- "Debian Science" - pakiet konfiguracyjny projektu
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- dep: science-tasks (= 1.14.6)
- "Debian Science" - zadania dla narzędzia tasksel
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- rec: fftw-dev
- library for computing Fast Fourier Transforms
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- rec: libasl-dev
- development files for ASL
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- rec: libbasix-dev
- Finite Element Basis Function Definition Runtime Library (development headers)
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- rec: libdeal.ii-dev
- Differential Equations Analysis Library - development files
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- rec: libdolfinx-dev
- Shared links and header files for DOLFIN
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- rec: libfclib-dev
- read and write problems from the Friction Contact Library (headers)
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- rec: libfftw3-dev
- Library for computing Fast Fourier Transforms - development
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- rec: libopenctm-dev
- Library headers for compression of 3D triangle meshes
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- rec: libp4est-dev
- Algorithms for Parallel Adaptive Mesh Refinement - development files
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- rec: libspfft-dev
- Sparse 3D FFT library with MPI, OpenMP, CUDA / ROCm support (development files)
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- rec: libxray-absorption-perl
- x-ray absorption data for the elements
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- rec: libxray-scattering-perl
- x-ray scattering data for the elements
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- rec: libxray-spacegroup-perl
- symmetry operations for the crystal space groups
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- rec: pyfai
- Fast Azimuthal Integration scripts
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- rec: python3-basix
- Finite Element Basis Function Definition Runtime Library (Python 3)
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- rec: python3-dmsh
- High-quality 2D mesh generator based on distmesh
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- rec: python3-dolfinx
- Python interface for DOLFIN (Python 3)
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- rec: python3-ffcx
- next-gen compiler for finite element variational forms (Python 3)
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- rec: python3-gpyfft
- Wrapper for the OpenCL FFT library clFFT (Python 3)
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- rec: python3-ltfatpy
- Large Time-Frequency Toolbox (LTFAT) in Python
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- rec: python3-meshplex
- fast tools for simplex meshes (Python 3)
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- rec: python3-meshzoo
- simple geometric meshes (Python 3)
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- rec: python3-multipletau
- multiple-tau algorithm for Python3/NumPy
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- rec: python3-pygalmesh
- Python 3 frontend to CGAL's 3D mesh generators
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- rec: python3-pyode
- Python bindings for The Open Dynamics Engine
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- rec: python3-quantities
- Library for computation of physical quantities with units, based on numpy
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- rec: sfftw-dev
- library for computing Fast Fourier Transforms
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- rec: trilinos-all-dev
- object-oriented framework for large-scale problems - development files (ALL)
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- sug: fenics
- Automated Solution of Differential Equations
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- sug: libfeel++-dev
- Pakiet niedostępny
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- sug: libnfft3-dev
- development files for the NFFT library
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- sug: libopm-common-dev
- Tools for Eclipse reservoir simulation files -- development files
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- sug: libopm-grid-dev
- DUNE grid implementations for reservoir simulation -- development files
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- sug: libopm-material-dev
- Pakiet przejściowy
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- sug: libopm-models-dev
- Pakiet przejściowy
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- sug: libopm-simulators-dev
- Parallel porous media / reservoir simulators -- development files
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- sug: libopm-upscaling-dev
- Porous media upscaling tools -- development files
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- sug: libplb-dev
- CFD solver based on the lattice Boltzmann method. Development files
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- sug: libtriangle-dev
- High-quality 2-D mesh generator -- development files
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- sug: python3-dolfin
- Podstawowy interfejs Pythona dla DOLFIN (Python 3)
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- sug: python3-opm-common
- Tools for Eclipse reservoir simulation files -- Python wrappers
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- sug: python3-opm-simulators
- Python wrappers for the Open porous media / reservoir simulators
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- sug: python3-pyfftw
- Pythonic wrapper around FFTW - Python 3
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- sug: python3-pynfft
- Python bindings for the NFFT3 library - Python 3
Pobieranie science-physics-dev
Architektura | Rozmiar pakietu | Rozmiar po instalacji | Pliki |
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all | 10,1 KiB | 30,0 KiB | [lista plików] |