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Computational Physics Jobs in Wisconsin (NOW HIRING)

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 ...

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 ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Applied Mathematics Tutor

Madison, WI · Remote

$18 - $40/hr

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

WI · On-site

$79 - $142/hr

M.Sc. or equivalent in mechanical engineering, computational mechanics, computer science, or a comparable physics-based discipline * Hands-on experience developing CFD solvers in commercial or ...

New

AP Calculus BC Tutor

Milwaukee, WI · Remote

$18 - $40/hr

Emphasizes recognizing when to apply specific techniques and connects advanced calculus to physics, engineering, and computational mathematics applications. * Curriculum Awareness & Adaptive ...

AP Calculus BC Tutor

Madison, WI · Remote

$18 - $40/hr

Emphasizes recognizing when to apply specific techniques and connects advanced calculus to physics, engineering, and computational mathematics applications. * Curriculum Awareness & Adaptive ...

Performance & Computational Solutions (Accuracy + Responsiveness) * Participate in decisions ... Strong mathematics and/or physics background. * Experience with Medical Device development or other ...

Performance & Computational Solutions (Accuracy + Responsiveness) * Participate in decisions ... Strong mathematics and/or physics background. * Experience with Medical Device development or other ...

Performance & Computational Solutions (Accuracy + Responsiveness) * Participate in decisions ... Strong mathematics and/or physics background. * Experience developing software in multi-threaded ...

Performance & Computational Solutions (Accuracy + Responsiveness) * Participate in decisions ... Strong mathematics and/or physics background. * Experience developing software in multi-threaded ...

Showing results 21-36

Computational Physics information

See Wisconsin salary details

$140.8K

$166.8K

$190.1K

How much do computational physics jobs pay per year?

As of Aug 8, 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.

Is computational physics in demand?

Computational physics is in demand across industries such as research, aerospace, and finance, where advanced modeling and simulation skills are valued. Professionals in this field often work with programming languages like Python or C++ and may require a strong background in physics and mathematics. Job growth is driven by increasing reliance on data analysis and high-performance computing.

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 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. The degree also provides a foundation for advanced study or specialized certifications in computational methods and software tools.

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.

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 August 2026, with employment types broken down into 67% Full Time, 30% Part Time, and 3% Contract. Highlights an 83% Physical, 1% Hybrid, and 16% Remote job distribution, with an average salary of $166,771 per year, or $80.2 per hour.

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 26 days ago


Job description

Join Realta Fusion and help shape the future of fusion energy through advanced theory and computation. As a Research Scientist, you'll bridge simulation and experiment to drive groundbreaking progress on our next-generation magnetic mirror devices.

Realta Fusion is a rapidly growing start-up developing compact magnetic mirror fusion energy systems to address the biggest challenge of our time -tackling global climate change while ensuring a sufficient energy supply for at least ten billion people on (and off) earth. We are building a team with diverse talents dedicated to making fusion energy a real solution to humanity's most pressing problem.

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 computational models with experimental data from the currently operating Wisconsin HTS Axisymmetric Mirror (WHAM) at the University of Wisconsin-Madison, proposing new experimental campaigns and plasma diagnostics to be fielded on WHAM to aid in validation efforts, and using computational modelling to guide the design of future axisymmetric mirror device at Realta Fusion called Hammir. This role will include participating in collaborations with external research groups at both national laboratories and universities, publishing work in peer-reviewed journals and disseminating results at conferences.

Responsibilities

1. Lead and participate in theoretical and computational projects to advance the physics basis for the axisymmetric mirror, with a focus on model validation.

2. Bridge experimental data analysis and modelling results for the purposes of high-fidelity model validation and uncertainty quantification.

3. Employ state-of-the-art computational models to understand and explain experimental observations & trends.

4. Conduct literature reviews, prepare reports and materials and disseminate information to appropriate entities.

5. Identify, write, or assist in developing grant opportunities, grant applications, proposals and other materials to secure funding in a startup-environment.

6. Publish and present results to advance research and ensure credibility for our work in the field of plasma physics & fusion energy.

7. Serve as an institutional subject matter expert and liaison with key internal and external stakeholders providing expert level information and representing the interests of a specialized research area.

8. Culture and Values: Foster a positive and inclusive work environment that aligns with the company's mission, values, and sustainability goals, promoting innovation, collaboration, and employee engagement.

Required Qualifications

1. Education: PhD in Plasma Physics, or a related field + minimum of 3 years' experience in theoretical and computational plasma physics research.

2. Experience with computational model validation and uncertainty quantification.

3. Strong familiarity with experimental plasma diagnostics (e.g. bolometers, electrostatic ion energy analyzers, interferometers, magnetic measurements) and analysis techniques.

4. Understanding of magnetically confined fusion plasma heating and technologies, such as bias-induced rotation, electron cyclotron heating, neutral beam injection, and RF heating.

5. Collaboration: Exceptional interpersonal and communication skills (written and verbal) to collaborate effectively with colleagues, external partners, and stakeholders.

6. Demonstration of innovation capacity through IP generated and/or publications in the field.

Compensation & Benefits

What we are working on is hard... and hugely important. Realta Fusion is assembling a talented team bound together by a passion to solve humanity's biggest challenge with first-of-a-kind technology.

Additionally, Realta offers:

  • Competitive compensation package, including equity stock options
  • Comprehensive benefits including health, dental, and vision insurance, plus a 401(k)
  • Flexible paid time off (PTO) to support work-life balance
  • Work and live in Madison, Wisconsin - one of America's most livable and vibrant cities

We value diversity as a critical factor in innovation and believe a diverse team is necessary to solve the toughest problems. We aim to create an inclusive environment that unleashes the full creativity of our team members from a wide variety of backgrounds and experiences. We provide equal employment opportunities to all individuals based on merit and without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, veteran status, or any other protected status under applicable laws.