Multiphysics Modeling Scientist
Solid Power Inc - 486 S. Pierce Ave, Suite E, Louisville, CO 80027
Posted Jun 5, 2026
Benefits
- Parental leave
- Not verified
- Non-birth-parent leave
- Not verified
- Family-building benefits
-
- Fertility benefits: Not verified
- Adoption assistance: Not verified
- Surrogacy assistance: Not verified
- Mental health support
- Not verified
- Relocation assistance
- Not verified
- Childcare support
- Not verified
- Learning budget
- Not verified
- Verification
- Not verified checked Jun 7, 2026
- Salary
- $105K-$140K From the posting source checked Jun 20, 2026
- 401(k) match
- Reported from DOL Form 5500 industry filing (not employer-specific)
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Market context
- U.S. role benchmark (BLS OEWS)
- $116,543 U.S. median for this role
- Projected growth (BLS Employment Projections)
- +9.8% - Much faster than average
U.S. benchmark only; posted salary is not compared across countries or currencies.
Matched to SOC 15-1252 - Software Engineering aggregate by role bucket.
Source: U.S. Bureau of Labor Statistics, OEWS, May 2024 and Employment Projections, 2024-2034.
Role
Schedule
- Shift type
- Not verified
- Weekend work
- Not verified
Company
Application
- Cover letter
- Not verified
- Assessment
- Not verified
- Deadline
- Not stated
Where they hire
State eligibility is not yet verified.
About this role
Multiphysics Modeling Scientist 486 S. Pierce Ave, Suite E, Louisville, CO 80027 Position Overview: Solid Power is seeking a Multiphysics Modeling Scientist to join our t alented team working to revolutionize the battery industry through the development of next - generation , all solid - state rechargeable batteries. Solid Power is a dynamic, fast - paced, collaborative, and innovative team environment. The preferred candidate will hav e significant experience working with and using m ultiphysics simulations to model chemical systems, heat transfer dynamics , and electrochemical device behavior s . The candidate will be expected to guide synthetic approaches for dry, inorganic powders by modeling conditions in high-throughput powder reactors. They will also work to update existing t hermal abuse models that integrate atomic-scale reaction kinetic s with continuum - scale heat transfer dynamics . The candidate should be comfortable building P2D / P4D DFN models and using the se approaches to guide experimental planning , especially as it relates to battery formulation improvements . Job Duties: - Develop continuum-scale reactor models for dry inorganic powder synthesis, coupling heat transfer, gas flow, mass transport, and reaction kinetics to guide reactor conditions and experimental planning. - Upgrade existing COMSOL-based implementations for thermal abuse modeling of ASSB cells. - Develop and validate mathematical models (both fundamental physics-based and data driven) to predict thermal, mechanical, and electrochemical behavior of ASSB materials, sub-assemblies, and finished cells. - Work with subject matter experts to develop experimental plans to isolate and quantify key model parameters, while
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