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Computational Physics Jobs in Wisconsin (NOW HIRING)

Senior Director of Physics Analysis Your role in the mission: Type One Energy is seeking Computational Physicists to contribute to the development of high-fidelity models and simulations supporting ...

This Scientist will contribute to several theoretical and computational projects to advance the physics basis for the high-field axisymmetric magnetic mirror. This work will include development and ...

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This Scientist will contribute to several theoretical and computational projects to advance the physics basis for the high-field axisymmetric magnetic mirror. This work will include development and ...

New

... computational, mathematical, and health sciences. Instructional Academic Staff play an essential ... Physics Required Qualifications: * Master's Degree in a field appropriate to the needs of the ...

This Scientist will contribute to several theoretical and computational projects to advance the physics basis for the high-field axisymmetric magnetic mirror. This work will include validation of ...

This Scientist will contribute to several theoretical and computational projects to advance the physics basis for the high-field axisymmetric magnetic mirror. This work will include validation of ...

This Scientist will contribute to several theoretical and computational projects to advance the physics basis for the high-field axisymmetric magnetic mirror. This work will include validation of ...

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Showing results 1-20

Computational Physics information

See Wisconsin salary details

$140.8K

$166.8K

$190.1K

How much do computational physics jobs pay per year?

As of Jul 29, 2026, the average yearly pay for computational physics in Wisconsin is $166,771.00, according to ZipRecruiter salary data. Most workers in this role earn between $153,600.00 and $179,800.00 per year, depending on experience, location, and employer.

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.

Does NASA hire physicists?

Yes, NASA hires physicists for roles involving research, data analysis, and mission support. These positions often require a strong background in physics, experience with programming and modeling tools, and relevant advanced degrees. Physicists at NASA contribute to space exploration, aeronautics, and scientific research projects.

Who hires computational physicists?

Computational physicists are hired by research institutions, government laboratories, universities, and private industry companies such as technology firms, aerospace, and energy companies. They often work in environments that require advanced programming skills, knowledge of physics, and experience with simulation tools and high-performance computing systems.

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 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.

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.

How much do computational physicists make in the US?

Computational physicists in the US typically earn between $70,000 and $130,000 annually, with salaries varying based on experience, education, and industry. Entry-level positions may start around $60,000, while experienced professionals or those in specialized fields can earn over $150,000. Advanced skills in programming, numerical methods, and data analysis are often required for higher-paying roles.

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 popular job titles related to Computational Physics jobs in Wisconsin? For Computational Physics jobs in Wisconsin, the most frequently searched job titles are:
What cities in Wisconsin are hiring for Computational Physics jobs? Cities in Wisconsin with the most Computational Physics job openings:
Infographic showing various Computational Physics job openings in Wisconsin as of July 2026, with employment types broken down into 69% Full Time, 29% Part Time, and 2% Contract. Highlights an 71% Physical, 2% Hybrid, and 27% Remote job distribution, with an average salary of $166,771 per year, or $80.2 per hour.

Computational Physicist

Type One Energy

Madison, WI • On-site

Full-time

Retirement

Re-posted 5 days ago


Job description

Join us in our mission to commercialize fusion energy
About Type One Energy
Type One Energy Group is mission-driven to provide sustainable, affordable fusion power to the world. Established in 2019 and venture-backed in 2023, the company is led by a team of globally recognized fusion scientists with a strong track record of building state-of-the-art stellarator fusion machines, together with veteran business leaders experienced in scaling companies and commercializing energy technologies.
If you are searching for the best new ideas and share our vision, join us as a ". This is what you need to know:
Location: Knoxville TN, Madison WI or Vancouver BC
Salary: Highly Competitive Plus Benefits
Contract: Permanent, full time
Reporting to: Senior Director of Physics Analysis
Your role in the mission:
Type One Energy is seeking Computational Physicists to contribute to the development of high-fidelity models and simulations supporting stellarator design and operation. These roles will focus on predictive modeling of plasma behavior across core, edge, and boundary regions, enabling data-driven design decisions and advancing fusion performance.
This is an opportunity to work at the intersection of theory, simulation, and engineering, contributing directly to the realization of commercial fusion energy.
You will work closely with Engineers and Scientists and will also be responsible for:
  • Developing and execute integrated modeling frameworks to simulate and predict plasma operational scenarios
  • Performing plasma profile and fusion performance predictions using gyrokinetic turbulence simulations and reduced models
  • Contribute to the development and validation of simulation tools for divertor and boundary plasma physics
  • Support integrated core-edge modeling and analysis to evaluate plasma performance and stability
  • Model a range of plasma phenomena, including:
    • Neoclassical transport
    • Energetic particle transport
    • Plasma-neutral interactions and boundary physics
    • MHD equilibrium and stability
    • Pellet fueling
    • Electron cyclotron heating (ECH)
  • Collaborate cross-functionally with engineering teams to provide physics-based insights that inform system design and optimization
  • Analyze simulation outputs and experimental data to validate models and improve predictive capability
  • Document findings through technical reports, presentations, and peer-reviewed publications

What you'll need:
  • PhD in Plasma Physics, Computational Physics, Nuclear Engineering, or a related field
  • Strong background in plasma physics theory and numerical simulation methods
  • Experience with one or more of the following:

Gyrokinetic simulation codes
MHD equilibrium and stability tools
Edge/divertor modeling simulation code experience
Integrated modeling codes
  • Proficiency in scientific programming (e.g., Python, C++, Fortran) and high-performance computing (HPC) environments
  • Experience with data analysis and visualization tools
  • Demonstrated ability to work in collaborative, multidisciplinary teams

Preferred Qualifications
  • Experience with stellarator physics and optimization
  • Familiarity with core-edge coupling and integrated simulation workflows
  • Prior involvement in fusion experiments or large-scale simulation projects
  • Track record of peer-reviewed publications in relevant fields

We offer:
In addition to a basic salary and yearly bonus, you will also get...
  • A hybrid work policy
  • Stock options
  • Relocation allowance
  • Insurance plans
  • Retirement options
  • And many more great voluntary benefits

Type One Energy applies proven advanced manufacturing methods, modern computational physics and high-field superconducting magnets to develop its optimized stellarator fusion energy system. Our FusionDirect development program pursues the lowest-risk, shortest-schedule path to a fusion power plant over the coming decade, using a partner-intensive and capital-efficient strategy.
Type One Energy is committed to community engagement in the development and deployment of its clean energy technology. For more information, visit www.typeoneenergy.com or follow us on LinkedIn.
Equal Opportunity Statement
Export Control Compliance Notice
This position may require access to technology, technical data, software, or other information that is subject to U.S. export control laws and regulations. Any offer of employment will be contingent upon the Company's ability to comply with applicable U.S. Export Control Laws, including obtaining any required government authorizations.
Type One Energy is a Global, U.S.-based company that develops and utilizes technologies subject to U.S. export control and trade compliance regulations. Certain positions may require access to controlled technologies, technical data, software, or other information regulated by U.S. Export Control Laws.
For positions involving access to export-controlled technology or information, the Company may be required to determine whether any government authorization or license is needed before such access can be provided. Any offer of employment for such positions may be contingent upon the Company's ability to comply with applicable U.S. Export Control Laws and obtain any required government authorizations.
U.S. Employment Eligibility Verification
For positions based in the United States, Type One Energy participates in E-Verify and verifies the identity and employment authorization of newly hired employees in accordance with applicable federal law. Employees hired to work in the United States will be required to complete the Form I-9 employment eligibility verification process upon hire.
Equal Employment Opportunity
Type One Energy is an equal opportunity employer. Employment decisions are made based on qualifications, merit, business needs, and compliance with applicable laws and regulations.
Candidate Privacy
Type One Energy collects personal information from applicants for recruitment, hiring, and related business purposes. We process applicant information in accordance with applicable privacy and data protection laws and take reasonable measures to protect the confidentiality and security of personal information. By applying for a position, you acknowledge that your personal information may be collected, used, stored, transferred, and disclosed as necessary to evaluate your candidacy, conduct pre-employment screenings where permitted by law, and comply with legal and regulatory requirements.