CamCASP: Difference between revisions

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[[ Anthony & Alston ]] => [[ CamCASP ]]
[[ Anthony & Alston ]] => [[ CamCASP ]]


CamCASP is a suite of programs designed to calculate interaction energies
between pairs of molecules, molecular properties (multipoles and
frequency-dependent polarizabilities) in single-site and distributed form,
and thence to construct atom--atom potentials.

Here's a partial list of the capabilities of the program:
# Interaction energies of dimers using SAPT(DFT) --- a symmetry-adapted perturbation theory based on density functional theory and time-dependent density functional theory.
# Molecular properties:
## Distributed multipole moments
## Distributed frequency-dependent polarizabilities
## Point-to-point frequency-dependent polarizabilities
## Distributed dispersion models
# Energy scans
# Atom--atom potentials
==Notes about CamCASP and related programs==
==Notes about CamCASP and related programs==


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* [[ CamCASP/ToDo | CamCASP To-Do list ]]
* [[ CamCASP/ToDo | CamCASP To-Do list ]]

* [[ CamCASP/Programming | Programming ]]

* [[ CamCASP/Compilation | Compilation ]]

* [[ CamCASP/Numerical | Numerical Issues ]]

* [[ CamCASP/Releases | Releases and Branches ]]

* [[ CamCASP/PFIT | PFIT ]]

* [[ CamCASP/BasisSets | Basis Sets ]]

* [[ CamCASP/Interfaces | Interfaces ]]

Latest revision as of 11:14, 1 December 2011

Anthony & Alston => CamCASP

CamCASP is a suite of programs designed to calculate interaction energies between pairs of molecules, molecular properties (multipoles and frequency-dependent polarizabilities) in single-site and distributed form, and thence to construct atom--atom potentials.

Here's a partial list of the capabilities of the program:

  1. Interaction energies of dimers using SAPT(DFT) --- a symmetry-adapted perturbation theory based on density functional theory and time-dependent density functional theory.
  2. Molecular properties:
    1. Distributed multipole moments
    2. Distributed frequency-dependent polarizabilities
    3. Point-to-point frequency-dependent polarizabilities
    4. Distributed dispersion models
  3. Energy scans
  4. Atom--atom potentials

Notes about CamCASP and related programs