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Physics Data Analyst Jobs in Tennessee (NOW HIRING)

Responsible for leveraging advanced analytics, statistical modeling, machine learning, and data ... Bachelor's or Master's degree in Statistics, Applied Math, Physics, Engineering, or a related field.

... health physics analysts and to plant operative management. May serve as the lead person or ... Works on complex problems where analyses of data or situations require an in-depth evaluation of ...

Health Physicist 4

Erwin, TN ยท On-site

$86K - $136K/yr

... health physics analysts and to plant operative management. May serve as the lead person or ... Works on complex problems where analyses of data or situations require an in-depth evaluation of ...

Showing results 21-40

Physics Data Analyst information

See Tennessee salary details

$30.9K

$75K

$123.4K

How much do physics data analyst jobs pay per year?

As of Aug 22, 2026, the average yearly pay for physics data analyst in Tennessee is $75,006.00, according to ZipRecruiter salary data. Most workers in this role earn between $56,700.00 and $88,000.00 per year, depending on experience, location, and employer.

What does a physics data analyst do?

A Physics Data Analyst collects, processes, and interprets large sets of data generated from physics experiments or simulations. They use statistical methods, programming, and specialized software to extract meaningful insights and support scientific research. Their work often involves cleaning data, identifying trends, creating visualizations, and collaborating with physicists to draw conclusions that can advance understanding in areas such as particle physics, astrophysics, or materials science.

What are some common challenges physics data analysts face when interpreting experimental data?

Physics Data Analysts often work with large, complex datasets that may contain noise or inconsistencies due to experimental limitations. One common challenge is accurately distinguishing between meaningful patterns and random fluctuations, which requires strong statistical knowledge and experience with data-cleaning techniques. Additionally, analysts must frequently collaborate with physicists and engineers to understand the context of the data and ensure proper interpretation, making strong communication skills important. Overcoming these challenges involves continually updating technical skills and staying current with best practices in both physics and data analysis.

What are the key skills and qualifications needed to thrive as a physics data analyst, and why are they important?

To thrive as a Physics Data Analyst, you need a solid background in physics, mathematics, and statistical analysis, often supported by a degree in physics or a related field. Proficiency with programming languages like Python or MATLAB, data visualization tools, and familiarity with statistical software and databases are typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help you interpret complex datasets and share insights with diverse teams. These skills ensure accurate analysis, meaningful data-driven conclusions, and successful collaboration in research or industry environments.

What is the difference between Physics Data Analyst vs Data Scientist?

AspectPhysics Data AnalystData Scientist
Required CredentialsBachelor's or Master's in Physics, Data Analysis, or related fieldsBachelor's or Master's in Computer Science, Statistics, or related fields
Work EnvironmentResearch labs, scientific organizations, industry R&DTech companies, finance, healthcare, consulting
Employer & Industry UsageResearch institutions, aerospace, energyTech firms, finance, marketing
Common Search & ComparisonPhysics Data Analyst vs Data Scientist

The main difference between a Physics Data Analyst and a Data Scientist lies in their focus and industry. Physics Data Analysts typically work in research or scientific environments, applying physics principles to analyze data. Data Scientists have a broader scope, often working across industries like tech, finance, and healthcare, utilizing advanced statistical and machine learning techniques. Both roles require strong analytical skills, but their applications and work settings differ.

What cities in Tennessee are hiring for Physics Data Analyst jobs?

Cities in Tennessee with the most Physics Data Analyst job openings:

Computational Physicist- Transport Modeling

Type One Energy Group, Inc.

Knoxville, TN โ€ข On-site

Other

Retirement

This job post hasย expired today.ย Applications are no longer accepted.


Job description

Join us in our mission to commercialize fusion energy โšก๏ธ

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 stateโ€‘ofโ€‘theโ€‘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 "Computational Physicist- Transport Modeling". This is what you need to know:

Location: Knoxville, TN

Salary: Highly Competitive Plus Benefits

Contract: Permanent, full time

Reporting to: Principal Scientist

Your role in the mission

Type One Energy is seeking a Computational Physicist โ€“ Transport Modeling to develop and apply advanced numerical models that predict plasma transport, confinement, and performance in stellarator fusion devices. This role sits at the intersection of plasma theory, simulation science, and highโ€‘performance computing, enabling critical design decisions for nextโ€‘generation fusion systems. The successful candidate will develop, extend, and apply firstโ€‘principles and reduced transport models to guide device optimization, interpret experiments, and reduce technical risk across the program. You will collaborate closely with theorists, experimental physicists, and engineering teams to translate physics insight into predictive tools that directly influence machine design and operational strategy.

Physics & Modeling
  • Develop and apply computational models of plasma transport, including neoclassical, turbulent, and integrated transport physics
  • Implement gyrokinetic, fluid, or reduced transport simulations to predict confinement and performance
  • Analyze heat, particle, and momentum transport in stellarator configurations
  • Investigating plasma stability, turbulence, and anomalous transport mechanisms
  • Interpret experimental and synthetic diagnostic data to validate and improve models
  • Support scenario development and performance projections for current and future devices
Software & Simulation
  • Develop and maintain productionโ€‘quality simulation codes in HPC environments
  • Contribute to or extend existing transport/gyrokinetic frameworks (e.g., GENE, GS2, XGC, GTC, VMEC, STELLOPT, or similar)
  • Optimize code performance and scalability on largeโ€‘scale computing clusters
  • Implement numerical methods, solvers, and algorithms for largeโ€‘scale PDE systems
  • Build reproducible workflows, verification/validation pipelines, and data analysis tools
Crossโ€‘functional Collaboration
  • Work with stellarator design and optimization teams to inform configuration trade studies
  • Partner with experimental teams to interpret results and design physics campaigns
  • Provide physicsโ€‘based guidance for engineering constraints and design decisions
  • Present results internally and externally through reports, technical reviews, and publications
Qualifications
  • PhD in Plasma Physics, Computational Physics, Applied Mathematics, or related field
  • 3+ years of experience (postโ€‘PhD or equivalent) in plasma transport or turbulence modeling
  • Strong foundation in plasma theory (kinetic theory, transport, stability, or turbulence)
  • Experience developing scientific simulation codes in Python, C++, Fortran, or similar
  • Experience working in Linux/HPC environments and parallel computing (MPI/OpenMP)
  • Ability to translate physics insight into numerical implementations
  • Strong analytical and problemโ€‘solving skills
Preferred
  • Experience with stellarator physics or 3D magnetic confinement systems
  • Handsโ€‘on use of gyrokinetic or transport codes (GENE, GS2, XGC, GTC, etc.)
  • Experience with integrated modeling frameworks
  • Familiarity with experimental data analysis or synthetic diagnostics
  • GPU acceleration or advanced numerical methods experience
  • Track record of peerโ€‘reviewed publications in transport/turbulence modeling
  • Experience collaborating in multiโ€‘disciplinary engineering/science teams
We offer
  • Stock and share options๐Ÿ“ˆ
  • Relocation allowance๐Ÿ’ฐ
  • Insurance plans๐Ÿฉบ
  • 401k retirement options๐Ÿ’ธ
  • And many more great voluntary benefits๐Ÿ‘€

Type One Energy applies proven advanced manufacturing methods, modern computational physics and highโ€‘field superconducting magnets to develop its optimized stellarator fusion energy system. Its FusionDirect development program pursues the lowestโ€‘risk, shortestโ€‘schedule path to a fusion power plant over the coming decade, using a partnerโ€‘intensive and capitalโ€‘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

Type One Energy is an equal opportunity employer. We value diversity, searching for the best new ideas and remaining open to unique perspectives. Therefore, all qualified applicants will receive consideration for employment independent of race, color, religion, sex, sexual orientation, gender identity, national origin, disability or veteran status, age, or any other characteristics protected by applicable federal, state, or local laws. All qualified individuals are encouraged to apply.

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