git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@15133 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -1521,7 +1521,7 @@ The current list of user-contributed packages is as follows:
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+--------------------------------------------+------------------------------------------------+-------------------------------------------------+---------------------------------------------------------+------------------+-------------------------+-------------+
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| :ref:`USER-DIFFRACTION <USER-DIFFRACTION>` | virutal x-ray and electron diffraction | Shawn Coleman (ARL) | :doc:`compute xrd <compute_xrd>` | USER/diffraction | - | - |
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+--------------------------------------------+------------------------------------------------+-------------------------------------------------+---------------------------------------------------------+------------------+-------------------------+-------------+
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| :ref:`USER-DPD <USER-DPD>` | dissipative particle dynamics (DPD) | Larentzos & Mattox & Brennan (5) | src/USER-DPD/README | USER/dpd | - | - |
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| :ref:`USER-DPD <USER-DPD>` | reactive dissipative particle dynamics (DPD) | Larentzos & Mattox & Brennan (5) | src/USER-DPD/README | USER/dpd | - | - |
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+--------------------------------------------+------------------------------------------------+-------------------------------------------------+---------------------------------------------------------+------------------+-------------------------+-------------+
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| :ref:`USER-DRUDE <USER-DRUDE>` | Drude oscillators | Dequidt & Devemy & Padua (3) | :doc:`tutorial <tutorial_drude>` | USER/drude | - | - |
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+--------------------------------------------+------------------------------------------------+-------------------------------------------------+---------------------------------------------------------+------------------+-------------------------+-------------+
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@ -1779,9 +1779,11 @@ USER-DPD package
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Contents: DPD stands for dissipative particle dynamics, This package
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implements DPD for isothermal, isoenergetic, isobaric and isenthalpic
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conditions. The DPD equations of motion are integrated efficiently
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through the Shardlow splitting algorithm. See src/USER-DPD/README for
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more details.
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conditions. It also has extensions for performing reactive DPD, where
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each particle has internal state for multiple species and a coupled
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set of chemical reaction ODEs are integrated each timestep. The DPD
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equations of motion are integrated efficiently through the Shardlow
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splitting algorithm. See src/USER-DPD/README for more details.
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Supporting info: /src/USER-DPD/README, :doc:`compute dpd <compute_dpd>`
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:doc:`compute dpd/atom <compute_dpd_atom>`
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