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About

LAMMPS, the Large-scale Atomic/Molecular Massively Parallel Simulator, is a classical molecular dynamics code with a focus on materials modeling. It models ensembles of particles in liquid, solid, or gaseous states and can simulate atomic, polymeric, biological, solid-state, granular, coarse-grained, mesoscopic, or macroscopic systems using many interatomic potentials, force fields, and boundary conditions. LAMMPS can model systems in two or three dimensions, from only a few particles up to billions, and is designed to run efficiently on parallel computers while remaining easy to extend and modify. It includes potentials for solid-state materials such as metals and semiconductors, soft matter such as biomolecules and polymers, and coarse-grained or mesoscopic systems. It can be used to model atoms or, more generally, as a parallel particle simulator at atomic, meso, or continuum scale.

About

Use our proprietary machine learning algorithms and APIs to predict experiment results, material properties, and manage all your data in one place. Let your data accelerate your research. Built to accelerate research and scale with you. Polymerize’s mission is to accelerate the development of high-performing materials. We do this by providing a comprehensive informatics platform to guide your R&D on the right path. Upload historical data and past experiments. Get predictions on material properties and formulations. Evaluate your results and personalize the algorithm. Manage all your data in a single connected workspace. Discover more insights from all your data. Propagate innovation across the organization with just one platform. Drive innovation for everyone using a single, unified workspace. Drive research forward together and eliminate silos. Manage and forecast with confidence. Propagate innovation across one platform.

Platforms Supported

Windows Supported
Mac Supported
Linux Supported
Cloud Not Supported
On-Premises Not Supported
iPhone Not Supported
iPad Not Supported
Android Not Supported
Chromebook Not Supported

Platforms Supported

Windows Not Supported
Mac Not Supported
Linux Not Supported
Cloud Supported
On-Premises Not Supported
iPhone Not Supported
iPad Not Supported
Android Not Supported
Chromebook Not Supported

Audience

Scientists wanting a parallel simulator for molecular dynamics, particle systems, and multiscale materials researc

Audience

Researchers and companies looking for a solution to predict, manage and evaluate their experiment results and data

Support

Phone Support Not Supported
24/7 Live Support Not Supported
Online Supported

Support

Phone Support Not Supported
24/7 Live Support Supported
Online Supported

API

Offers API Not Supported

API

Offers API Supported

Screenshots and Videos

Screenshots and Videos

Pricing

Free
Free Version Supported
Free Trial Not Supported

Pricing

No information available.
Free Version Not Supported
Free Trial Not Supported

Reviews/Ratings

Overall 0.0 / 5
ease 0.0 / 5
features 0.0 / 5
design 0.0 / 5
support 0.0 / 5

This software hasn't been reviewed yet. Be the first to provide a review:

Review this Software

Reviews/Ratings

Overall 0.0 / 5
ease 0.0 / 5
features 0.0 / 5
design 0.0 / 5
support 0.0 / 5

This software hasn't been reviewed yet. Be the first to provide a review:

Review this Software

Training

Documentation Supported
Webinars Not Supported
Live Online Not Supported
In Person Not Supported

Training

Documentation Supported
Webinars Not Supported
Live Online Supported
In Person Not Supported

Company Information

LAMMPS
United States
www.lammps.org

Company Information

Polymerize
Singapore
polymerize.io

Alternatives

Alternatives

BIOVIA

BIOVIA

Dassault Systèmes
LIGGGHTS

LIGGGHTS

CFDEM
BIOVIA COSMO-RS

BIOVIA COSMO-RS

Dassault Systèmes
MFiX

MFiX

National Energy Technology Laboratory

Categories

Categories

Chemical Supported

Integrations

No info available.

Integrations

No info available.
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