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Computational Physics Jobs in Missouri (NOW HIRING)

Demonstrated technical knowledge, mathematical and computational ability necessary for health physics evaluations. * Ability to interact with a wide variety of individuals, and communicate technical ...

Product Management Lead

California, MO · On-site

$100 - $130/hr

Our computational methods research platform - the data, analysis and pipelining platform that powers new physics and AI methods development. * You will own the product roadmap, prioritize initiatives ...

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Computational Physics information

See Missouri salary details

$132.9K

$157.5K

$179.6K

How much do computational physics jobs pay per year?

As of Aug 29, 2026, the average yearly pay for computational physics in Missouri is $157,501.00, according to ZipRecruiter salary data. Most workers in this role earn between $145,100.00 and $169,800.00 per year, depending on experience, location, and employer.

What is computational physics?

Computational physics is a branch of physics that uses computational methods and algorithms to solve complex physical problems that are difficult or impossible to address analytically. It combines physics, computer science, and applied mathematics to simulate physical systems, analyze data, and predict the behavior of matter and energy. Computational physicists often develop and use software to model phenomena such as quantum mechanics, fluid dynamics, material properties, and astrophysics. This field is essential for advancing scientific research in areas where experiments are too costly, dangerous, or impractical.

What are the key skills and qualifications needed to thrive as a computational physicist, and why are they important?

To thrive as a Computational Physicist, you need a solid background in physics, advanced mathematics, and computer science, typically supported by a relevant degree (such as a PhD or MSc). Proficiency in programming languages like Python, C++, or Fortran, as well as experience with simulation software and high-performance computing, is essential. Strong problem-solving abilities, attention to detail, and effective communication skills help you collaborate and present complex findings clearly. These skills enable accurate modeling, efficient data analysis, and successful teamwork on complex scientific projects.

What are some common challenges faced by computational physicists when working on interdisciplinary projects?

Computational physicists often collaborate with researchers from fields like engineering, chemistry, or biology, which can introduce challenges related to differing terminologies, methodologies, and priorities. Adapting complex physics models to suit the needs and constraints of other disciplines may require significant adjustments and clear communication. Additionally, integrating diverse data types and software tools can be technically demanding, but overcoming these challenges helps foster innovation and leads to broader scientific impact.

What is the difference between Computational Physics vs Data Scientist?

AspectComputational PhysicsData Scientist
Required CredentialsPhysics degree, computational skills, programmingStatistics, programming, data analysis
Work EnvironmentResearch labs, academia, scientific institutionsTech companies, finance, healthcare
Industry UsageScientific research, simulations, modelingBusiness insights, predictive analytics
Common Search/ComparisonComputational Physics vs Data Scientist

Computational Physics focuses on applying computational methods to solve physical problems, often in research or academia. Data Scientists analyze large datasets to extract insights across various industries. While both roles require programming skills, their applications and work environments differ significantly.

Is computational physics in demand?

Computational physics is in demand across industries such as research, aerospace, finance, and technology, where modeling and simulation are essential. Professionals with strong programming skills in languages like Python, C++, or Fortran and experience with high-performance computing are highly sought after. The field offers opportunities in academia, government labs, and private sector companies focused on scientific and technological innovation.

What can you do with a computational physics degree?

A computational physics degree prepares individuals for roles in research, data analysis, simulation development, and modeling across industries such as aerospace, energy, finance, and technology. Graduates often work as physicists, data scientists, software developers, or in technical consulting, utilizing programming skills and scientific knowledge to solve complex problems. Advanced positions may require additional specialization or experience with tools like Python, C++, or MATLAB.

Who hires computational physicists?

Computational physicists are hired by research institutions, government laboratories, universities, and private industry companies involved in scientific research, technology development, and data analysis. They often work in environments that require strong programming skills and knowledge of physics, using tools like simulation software and high-performance computing systems.

What are popular job titles related to Computational Physics jobs in Missouri?

For Computational Physics jobs in Missouri, the most frequently searched job titles are:

Infographic showing various Computational Physics job openings in Missouri as of August 2026, with employment types broken down into 1% As Needed, 79% Full Time, 19% Part Time, and 1% Contract. Highlights an 73% Physical, 3% Hybrid, and 24% Remote job distribution, with an average salary of $157,501 per year, or $75.7 per hour.

Senior Solutions Architect, AI - Accelerated Physics

NVIDIA Gruppe

California, MO • On-site

$184 - $287.50/hr

Other

Posted 11 days ago


Nvidia rating

9.6

Company rating: 9.6 out of 10

Based on 18 frontline employees who took The Breakroom Quiz

7th of 246 rated software companies


Job description

At NVIDIA, we believe that accelerated computing is key to solving the world’s most significant scientific and engineering challenges. We are looking for a Solutions Architect to join our Higher Education and Research Team, where you will serve as a technical partner to the visionaries shaping the future of discovery!

In this role, you will be an integral part of a team supporting higher education universities and research institutes across the nation, with a focus on computational physics, engineering simulation, scientific AI, and high-performance computing. You will help researchers harness NVIDIA platforms to accelerate simulation, build trusted AI surrogates, train scientific foundation models, and unlock new workflows in areas such as fluid dynamics, multiphysics simulation, engineering design exploration, and physics-based modeling at scale.

What you'll be doing:
  • Partner with research universities and institutes to co-create innovative HPC and AI solutions using NVIDIA’s accelerated computing platform
  • Collaborate with engineering, product, and business teams to align NVIDIA’s technical roadmap with the evolving strategies and complex workflows of the scientific and engineering research community
  • Engage with developers and researchers to architect ground‑breaking solutions in areas such as computational physics, multiphysics simulation, engineering design exploration, and the next generation of Scientific Foundation Models
  • Help researchers move from high‑fidelity simulation data to AI‑enabled workflows, including surrogate models, neural operators, physics‑informed models, reduced‑order models, differentiable simulation, and real‑time inference
  • Profile and optimize the performance of scientific applications, AI training, and inference workloads so sophisticated research workflows reach their full potential on accelerated systems
  • Travel requirement up to 20%
What we need to see:
  • BS, MS or PhD in Computational Physics, Engineering, Computer Science, Applied Mathematics, or a related field, or equivalent experience
  • 8+ years of hands‑on experience in accelerated computing and knowledge of parallel computing with GPUs
  • Experience porting and/or optimizing scientific or engineering applications targeting GPUs
  • Strong fundamentals in programming and software design, especially in Python and C++
  • Familiarity with computational physics or engineering simulation workflows, including numerical methods, model validation, uncertainty/error analysis, or simulation‑data pipelines
  • Excellent knowledge of the theory and practice of AI at scale, especially as applied to scientific, simulation, or physics‑based workloads
  • A dedication to clear and inclusive communication with a deep desire to partner with the academic community to help others succeed in their research goals
Ways to stand out from the crowd:
  • Excellent GPU programming skills, including debugging, profiling, code optimization, performance analysis, and test design
  • Experience supporting HPC, AI, computational physics, engineering simulation, or scientific computing workflows
  • Familiarity with NVIDIA scientific computing and AI tools such as PhysicsNeMo, NVIDIA Warp, PyTorch, JAX, or related frameworks
  • Experience building AI‑enabled simulation workflows using neural operators, physics‑informed models, graph neural networks, and/or reduced‑order models
  • A desire to learn and grow within an encouraging, forward‑thinking community dedicated to solving the world’s most significant computational science and engineering challenges

We offer highly competitive salaries and a comprehensive benefits package. The base salary range is 184,000 USD – 287,500 USD, and you will also be eligible for equity and benefits.

NVIDIA is committed to fostering an inclusive work environment and proud to be an equal‑opportunity employer. We do not discriminate on the basis of race, religion, color, national origin, gender, gender expression, sexual orientation, age, marital status, veteran status, disability status, or any other characteristic protected by law.

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What Nvidia employees say

Pay

Benefits

Hours and flexibility

Workplace

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About Nvidia

Sourced by ZipRecruiter

NVIDIA has been transforming computer graphics, PC gaming, and accelerated computing for more than 25 years. It's a unique legacy of innovation that's fueled by great technology--and amazing people. Today, we're tapping into the unlimited potential of AI to define the next era of computing. An era in which our GPU acts as the brains of computers, robots, and self-driving cars that can understand the world. Doing what's never been done before takes vision, innovation, and the world's best talent.

Industry

Computer and electronic product manufacturing

Company size

10,000+ Employees

Headquarters location

Santa Clara, CA, US