CIA OpacitiesĀ of Various Molecular Complexes
Applied to planetary and stellar atmospheres, by Aleksandra Borysow.
CMBFAST
Computes cosmic microwave background anisotropy, polarization and matter power spectra.
Code for Anisotropies in the Microwave Background (CAMB)
Fortran 90 code by Antony Lewis and Antony Challinor.
Community Climate System Model (CCSM)
Fortran 90 code for climate modelling.
Computational Physics
Codes in Fortran and Basic from book by Steven Koonin and Dawn Meredith.
Computational Physics
Fortran 77 codes by J. M. Thijssen to accompany his book.
Computational Physics
Fortran 90 and HPF Programs Related to the Book "An Introduction to Computational Physics", by Tao Pang, Cambridge University Press (1997).
Computational Physics
Codes from course by David Tomanek.
Computational Physics
Fortran 90 codes from course by Dale Ostlie.
Computational Physics
Programs from the book by Rubin Landau.
Computational Quantum Dynamics
Fortran 77 programs by Toshiaki Iitaka.
Computational Quantum Mechanics
Codes for course by Richard M. Martin.
Computer Simulation Methods in Physics
Fortran 90 codes for course taught by Ari Harju.
Coulomb Blockade
Model of two tunnel junctions. Each junction has a resistance and a capacitance. By John K. Tomfohr and Otto Sankey.
Coupled Ocean/Atmosphere Mesoscale Prediction System (COAMPS)
Used operationally by the U.S. Navy for short-term numerical weather prediction for various regions around the world. Parts of the code can be downloaded from the site, with registration.
CP2K: Atomistic Simulations
Fortran 95 modules to do atomistic and molecular simulations of solid state, liquid, molecular and biological systems. The methods included range from first principles ab initio density functional methods to parametrised, classical pair- and many-body potentials.
CubeWorld
Fortran 90 code by Jim Ferry describing the gravitational field on the surface of a planet-sized cube.
2-D Lattice Monte Carlo
Simulates ferromagnets and anti-ferromagnets.
Dacapo
Total energy program based on density functional theory. It uses a plane wave basis for the valence electronic states and describes the core-electron interactions with Vanderbilt ultrasoft pseudo-potentials.
DDSCAT
Code by Bruce T. Draine to study the scattering and absorption of light by small particles.
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