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What is MercuryDPM?

MercuryDPM is a versatile open-source software tailored for discrete particle simulations, allowing researchers to explore the movement of particles or atoms in response to various forces and torques, including gravitational and magnetic fields, as well as particle interaction laws. Specifically, when examining granular particles, the software focuses on contact forces, which can encompass elastic, plastic, viscous, and frictional interactions, while in molecular simulations, it may employ interaction potentials like Lennard-Jones. Built on a robust, object-oriented C++ architecture, MercuryDPM prioritizes clarity, flexibility, and extensibility, catering to the diverse requirements of engineers and researchers developing innovative simulation models. Although its primary emphasis is on granular materials, the software's design ensures it can manage a wide array of particle-based systems and complex long-range interaction cases. Comprehensive documentation is available to assist users from installation through to executing simulations, visualizing outcomes, and analyzing results, as well as in creating personalized MercuryDPM codes for specific simulation needs. In summary, MercuryDPM is a crucial resource that significantly enhances the comprehension of particle dynamics, making it an invaluable asset across multiple scientific disciplines. Its adaptability and ease of use further underscore its importance in advancing research efforts in this field.

What is Mercury 2.5?

Mercury 2.5 exemplifies the ultimate achievement in production models from Inception, showcasing a significant quality improvement over its predecessor, Mercury 2, while maintaining an outstanding low-latency performance. This model is recognized as the most sophisticated diffusion language model currently on the market and is claimed by Inception to be the largest diffusion LLM ever created. With a remarkable 40% increase in intelligence compared to Mercury 2, its capabilities closely mirror those of economical frontier models such as GPT-5.6 Luna (Low), Gemini 3.5 Flash-Lite, and Claude Haiku 4.5. It features an impressive generation rate of 1,107 tokens per second on widely used NVIDIA GPUs and can handle a substantial 260K-token context window. Among its many attributes are customizable reasoning abilities, concurrent tool executions, and JSON compatibility with schemas. Designed specifically for tasks sensitive to latency, it excels in environments that require multiple model calls during one interaction. In various applications, including search agents and RAG pipelines, Mercury 2.5 performs exceptionally well in activities such as planning, query rewriting, re-ranking, fact structuring, source summarization, and answer verification. This efficiency ensures swift response times, making it a vital asset for developers aiming to enhance their workflow productivity. As technology continues to evolve, models like Mercury 2.5 will likely set new benchmarks in the industry.

Media

Media

Integrations Supported

C++
JSON

Integrations Supported

C++
JSON

API Availability

Has API

API Availability

Has API

Pricing Information

Free
Free Version
Free Trial Offered?

Pricing Information

Pricing not provided
Free Version
Free Trial Offered?

Supported Platforms

SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux

Supported Platforms

SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux

Customer Service / Support

Standard Support
24 Hour Support
Web-Based Support

Customer Service / Support

Standard Support
24 Hour Support
Web-Based Support

Training Options

Documentation Hub
Webinars
Online Training
On-Site Training

Training Options

Documentation Hub
Webinars
Online Training
On-Site Training

Company Facts

Organization Name

MercuryDPM

Date Founded

2009

Company Location

United States

Company Website

www.mercurydpm.org

Company Facts

Organization Name

Inception

Company Location

United States

Company Website

www.inceptionlabs.ai/blog/introducing-mercury-2-5

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