About the job
About CuspAI
CuspAI stands at the forefront of artificial intelligence, dedicated to pioneering breakthrough materials that will drive human advancement. While nature has taken eons to refine molecules, we are leveraging AI to achieve material breakthroughs worth trillions in mere months. Our founding team is among the most cited globally, composed of top-tier researchers in AI, chemistry, and engineering.
We tackle some of the most formidable and crucial challenges, including energy, clean water access, the future of computing, and carbon capture. This is just a glimpse of what our innovative 'search engine' for next-generation materials will unveil.
Join a diverse and inventive team at the intersection of AI and materials science, as we forge impactful partnerships that foster innovation, scalability, and industry collaboration. Your contributions will truly matter in this transformative journey.
We're on the brink of the on-demand materials revolution. Be part of it.
The Role
In response to our expansion into a new domain, we are looking for an Application Scientist (Mesoscale / Coarse-Grained Force Fields) to connect our cutting-edge AI models with real-world industrial material challenges.
Your Impact
In this pivotal role, you will be developing mesoscale simulation frameworks and coarse-grained force field methodologies that link molecular discovery to macroscopic material performance. This is essential for delivering high-impact, actionable breakthroughs to our global clientele.
Initially, your primary focus will be on leading technical delivery for 1-2 key client projects, serving as the subject matter expert in mesoscale phenomena. Over time, you will play a key role in enhancing our ML platform’s capabilities from atomic levels to larger-scale structures necessary for next-generation polymers, membranes, and complex fluids.
What You Will Do
Method Development & Research
Design and execute innovative coarse-graining strategies to facilitate the simulation of extensive material systems.
Create and optimize mesoscale force fields, particularly utilizing Martini 3 and related frameworks.
Collaborate with our AI Research team to integrate machine learning (ML) models into mesoscale simulation workflows.
Partner Project Execution
Engage closely with our early partners to understand their needs and deliver tailored solutions.

