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Internship Computational Physicist Jobs in Florida

Internship Computational Physicist information

What does an internship computational physicist do?

An Internship Computational Physicist assists in scientific research by using computational methods and simulations to solve problems in physics. Interns typically work with experienced physicists to develop and run computer models, analyze complex data, and contribute to ongoing research projects. Their work may involve programming, mathematical modeling, and collaborating with interdisciplinary teams to advance scientific understanding. This role provides valuable hands-on experience and prepares students for careers in research, academia, or industry.

What types of projects does an internship computational physicist work on, and how are these projects typically structured within a research or industrial team?

As an Internship Computational Physicist, you can expect to work on projects that involve developing and applying numerical simulations, data analysis, or modeling of physical systems. These projects are often structured as part of a larger team, where you might collaborate with senior physicists, software engineers, and domain experts. Interns commonly contribute by writing and testing code, running simulations, analyzing results, and presenting findings in team meetings. This collaborative environment provides valuable experience in scientific computing and exposure to real-world applications, which is beneficial for career development in both academia and industry.

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

To thrive as an Internship Computational Physicist, you need a solid background in physics, mathematics, and programming, typically supported by progress toward a relevant degree. Familiarity with programming languages such as Python, C++, or MATLAB, as well as experience with simulation software and data analysis tools, is often required. Strong problem-solving abilities, attention to detail, and effective communication skills help interns collaborate and convey complex results. These skills are crucial for conducting accurate simulations, interpreting data, and contributing to research projects in a collaborative environment.

What are the most commonly searched types of Computational Physicist jobs in Florida?

The most popular types of Computational Physicist jobs in Florida are:

What are popular job titles related to Internship Computational Physicist jobs in Florida?

For Internship Computational Physicist jobs in Florida, the most frequently searched job titles are:

What cities in Florida are hiring for Internship Computational Physicist jobs?

Cities in Florida with the most Internship Computational Physicist job openings:

Infographic showing various Internship Computational Physicist job openings in Florida as of June 2026, with employment types broken down into 20% Internship, 52% Full Time, and 28% Part Time. Highlights an 92% In-person, and 8% Remote job distribution.

Research Assistant / Plasma Physics

AMPERA INC

Palm Beach Gardens, FL • On-site

$18.25 - $25/hr

Full-time

Re-posted 3 days ago


Job description

Research Assistant – Plasma Physics

Position Summary

Ampera is seeking a motivated full-time Research Assistant to support work in plasma physics, computational modeling, and related areas within the Department of Nuclear Engineering. This role is well suited for an early-career researcher with a math, physics, engineering, or other hard science background who is comfortable working with technical material, learning new tools, and contributing carefully to ongoing research projects.
Candidates who have not yet graduated are welcome to apply, provided they are able to commit to full-time work during the school year. Students should be prepared to arrange their academic schedule accordingly, such as by taking time away from coursework or otherwise ensuring full-time availability.
The Research Assistant will help with literature review, data collection and analysis, model setup, simulation workflows, technical documentation, and preparation of research outputs. The specific project assignment will depend on the candidate’s background and departmental research needs.
Key Responsibilities
• Support research activities in plasma physics, fusion energy, low-temperature plasmas, plasma-material interactions, computational plasma modeling, diagnostics, or related technical areas.
• Conduct literature reviews and summarize findings for faculty, staff, and research teams.
• Assist with computational modeling, simulation setup, data processing, and results analysis.
• Help prepare figures, tables, technical notes, presentations, and draft sections of reports or manuscripts.
• Maintain organized research records, including assumptions, inputs, scripts, results, and references.
• Participate in regular research meetings and communicate progress, blockers, and findings clearly.
• Follow all applicable laboratory, computational, export control, and data handling procedures.
Required Qualifications
• Current enrollment in, or recent completion of, a degree program in engineering physics, nuclear engineering, physics, mechanical engineering, electrical engineering, materials science, applied mathematics, computer science, or another math, physics, engineering, or hard science field.
• Strong analytical and quantitative skills.
• Demonstrated first-principles thinking: the ability to break problems down to fundamental physics and reason up from there, rather than relying on convention or analogy.
• Ability to read and synthesize technical papers, reports, and documentation.
• Clear written and verbal communication skills.
• Careful attention to detail and willingness to document work thoroughly.
• Ability to work independently while staying aligned with faculty and project guidance.
Preferred Qualifications
• Coursework or research experience in plasma physics, fusion energy, electromagnetics, fluid dynamics, kinetic theory, numerical methods, scientific computing, or computational science.
• Experience with one or more programming or scripting languages, such as Python, MATLAB, C/C++, Fortran, Julia, or similar.
• Familiarity with scientific computing workflows, version control, Linux command-line tools, or high-performance computing environments.
• Experience with plasma simulation tools, particle-in-cell methods, magnetohydrodynamics, fluid plasma models, kinetic modeling, Multiphysics simulation, uncertainty quantification, diagnostics, or data analysis.
• Prior research experience, including undergraduate research, internship experience, capstone projects, or publication/presentation contributions.
Appointment Details
This is a full-time, ongoing research assistant position during the school year.
Application Materials 
Applicants should submit:
• Resume or CV
• Brief statement of interest describing relevant background and research interests
• Unofficial transcript, if applicable
• Names and contact information for one to two references, if requested
• Optional: writing sample, code sample, poster, publication, or project portfolio