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Mathematical Physics Jobs in Ohio (NOW HIRING)

High Energy Physics, Mathematical Physics, Biophysics, Statistical Physics, Condensed Matter ... including moiré systems, magnetism, PXP/Rydberg), AMO/Quantum Optics, Gravitation, Cosmology ...

Critically evaluate and review physics solutions, mathematical derivations, and theoretical arguments generated by researchers or AI platforms. * Detect errors, unjustified steps, missing assumptions ...

Critically evaluate and review physics solutions, mathematical derivations, and theoretical arguments generated by researchers or AI platforms. * Detect errors, unjustified steps, missing assumptions ...

Critically evaluate and review physics solutions, mathematical derivations, and theoretical arguments generated by researchers or AI platforms. * Detect errors, unjustified steps, missing assumptions ...

Critically evaluate and review physics solutions, mathematical derivations, and theoretical arguments generated by researchers or AI platforms. * Detect errors, unjustified steps, missing assumptions ...

Showing results 21-40

Mathematical Physics information

See Ohio salary details

$10.5K

$58.1K

$89.8K

How much do mathematical physics jobs pay per year?

As of Aug 17, 2026, the average yearly pay for mathematical physics in Ohio is $58,144.00, according to ZipRecruiter salary data. Most workers in this role earn between $43,700.00 and $61,300.00 per year, depending on experience, location, and employer.

What kinds of projects or research areas do mathematical physicists typically work on?

Mathematical Physicists often engage in projects that explore the mathematical foundations of physical theories, such as quantum mechanics, statistical mechanics, or general relativity. Their work can involve developing new theoretical models, simulating physical systems, or solving complex equations that describe real-world phenomena. Many Mathematical Physicists collaborate with other scientists or engineers on interdisciplinary teams, and may contribute to advances in fields like materials science, computational physics, or even finance. These roles offer opportunities to publish research, present at conferences, and sometimes to teach or mentor students, depending on the work environment.

What can I do with a mathematical physics degree?

A mathematical physics degree prepares individuals for careers in research, academia, data analysis, and engineering. Graduates often work as physicists, quantitative analysts, software developers, or in technical consulting, utilizing strong problem-solving, mathematical, and programming skills. Many roles require knowledge of advanced mathematics, programming languages, and scientific tools.

What is a mathematical physicist?

A Mathematical Physics job involves using advanced mathematical methods to solve complex problems in physics. Professionals in this field work on theoretical models, analyze physical systems, and develop mathematical frameworks to describe fundamental forces and particles. They may contribute to areas like quantum mechanics, relativity, statistical mechanics, or computational physics. Careers in mathematical physics can be found in academia, research institutions, technology companies, or financial industries where analytical modeling is essential.

What jobs can you do with mathematical physics?

Mathematical physics graduates can pursue careers as research scientists, data analysts, quantitative analysts, or computational physicists. They often work in academia, government labs, or industries such as aerospace, finance, or technology, utilizing skills in advanced mathematics, programming, and problem-solving.

Is mathematical physics a good degree?

Mathematical physics is a rigorous degree that combines advanced mathematics and physics, preparing graduates for research, academia, or roles in industries like engineering, data analysis, and technology. It develops strong problem-solving, analytical, and quantitative skills, which are highly valued in various scientific and technical careers.

What does a mathematical physicist do?

A mathematical physicist applies advanced mathematical methods to solve problems in physics, often working on theoretical models, quantum mechanics, or relativity. They develop mathematical frameworks, analyze complex systems, and may work in research institutions, academia, or industry using tools like differential equations and computational software.

What are the key skills and qualifications needed to thrive as a mathematical physicist?

Excelling in Mathematical Physics requires a robust background in advanced mathematics, theoretical physics, and typically a master's or Ph.D. in a related discipline. Familiarity with programming languages such as Python or MATLAB, experience with computational modeling, and data analysis tools are highly valuable. Strong problem-solving abilities, critical thinking, and effective communication help professionals explain complex concepts to both technical and non-technical audiences. These competencies are essential for developing innovative models, conducting rigorous research, and collaborating effectively with interdisciplinary teams.

What are the most commonly searched types of Mathematical Physics jobs in Ohio?

The most popular types of Mathematical Physics jobs in Ohio are:

What are popular job titles related to Mathematical Physics jobs in Ohio?

For Mathematical Physics jobs in Ohio, the most frequently searched job titles are:

What job categories do people searching Mathematical Physics jobs in Ohio look for?

The top searched job categories for Mathematical Physics jobs in Ohio are:

Infographic showing various Mathematical Physics job openings in Ohio as of July 2026, with employment types broken down into 44% Full Time, 50% Part Time, and 6% Contract. Highlights an 100% In-person job distribution, with an average salary of $58,144 per year, or $28 per hour.

Research Consultant - Physics AI

micro1 AI

Cincinnati, OH • Remote

$80 - $140/hr

Part-time

Posted 14 days ago


Job description

Role Title: Physics Expert (PhD / Postdoc)


Role Type: Contractor.


Location: Remote


micro1 is engaging Physics Experts (PhD / Postdoc) to contribute deep scientific knowledge and problem-solving skills to a high-impact customer project. In this role, you'll apply your expertise to help train next-generation AI systems. Your work will shape how models learn, reason, and perform through high-quality, real-world input. No prior experience in AI is required — your domain knowledge is what matters.


Scope of Work

  1. Solve advanced physics problems from your specialization, delivering rigorous, well-documented derivations and analyses.
  2. Produce technically precise, clearly written solutions, detailing all assumptions, approximations, and final results using LaTeX mathematical notation.
  3. Utilize SymPy, Python, and Jupyter for symbolic or numerical verification and clear computational workflows where relevant.
  4. Identify and articulate subtleties in problem statements, including special cases, boundary conditions, and dimensional consistency.
  5. Flag ambiguities in project materials, proposing well-reasoned interpretations and clarifications as needed.
  6. Iterate on submitted solutions in response to feedback from project reviewers, ensuring corrections are cleanly integrated.
  7. Uphold rigorous standards in documentation and reproducibility consistent with professional research practice.


Preferred Qualifications

  1. PhD in physics or advanced-stage PhD candidacy, with active research experience in a relevant subfield.
  2. Research expertise in one or more of: High Energy Physics, Mathematical Physics, Biophysics, Statistical Physics, Condensed Matter (including moiré systems, magnetism, PXP/Rydberg), AMO/Quantum Optics, Gravitation, Cosmology, Astrophysics, Quantum Information, or Optical Properties of Materials.
  3. 2–5 recent representative publications (past ~5 years) in your field, with accessible arXiv or DOI records.
  4. Proficiency with LaTeX for presenting mathematics, and with SymPy, Python, and Jupyter for computational work; willingness to indicate areas for further support if needed.
  5. Demonstrated excellence in written technical communication, with a track record of producing clear, precise, and well-argued scientific outputs.
  6. Strong analytical skills, able to isolate key physical principles and provide nuanced solutions to complex problems.
  7. Availability to engage with the project consistently over an 8–10 week period (approx. 10 hours/week).