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Physics Internships Jobs (NOW HIRING)

$13 - $17.50/hr

Over the course of this internship, you will work directly with our dynamic team of applied scientists who can share their deep knowledge of machine learning, remote sensing, geoscience, and physics.

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Physics Internships information

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How much do physics internships jobs pay per hour?

As of Aug 18, 2026, the average hourly pay for physics internships in the United States is $20.06, according to ZipRecruiter salary data. Most workers in this role earn between $12.50 and $25.48 per hour, depending on experience, location, and employer.

What are physics internships?

Physics internships are temporary positions, usually offered to students or recent graduates, that provide practical, hands-on experience in the field of physics. Interns work under the supervision of experienced professionals, often participating in research projects, laboratory experiments, or technical development. These internships help students apply theoretical knowledge gained in the classroom to real-world situations, develop valuable technical and professional skills, and explore potential career paths in academia, industry, or government. Physics internships can be found at universities, research institutions, national laboratories, and private companies.

What types of projects do physics interns typically work on?

Physics interns often contribute to ongoing research or industry projects, such as data analysis, laboratory experiments, or developing simulations and models. These assignments are designed to provide hands-on experience with scientific methods, technical tools, and collaborative problem-solving. By working closely with experienced physicists and participating in team meetings, interns gain insight into real-world applications of physics, develop critical thinking skills, and build a professional network that can support future career growth.

What are the key skills and qualifications needed to thrive in physics internships?

To thrive in Physics Internships, you need a solid understanding of physics principles, mathematical proficiency, and usually progress toward a degree in physics or a related field. Familiarity with data analysis tools (such as MATLAB or Python), laboratory equipment, and simulation software is commonly expected. Strong problem-solving abilities, attention to detail, and effective communication skills help you collaborate with teams and present findings. These skills are crucial for contributing to research projects, adapting to technical challenges, and making a meaningful impact during the internship.

What is the difference between Physics Internships vs Physics Research Assistant?

AspectPhysics InternshipsPhysics Research Assistant
Required CredentialsTypically enrolled in a bachelor's or master's programUsually graduate students or those with relevant coursework
Work EnvironmentIndustry labs, universities, research centersAcademic labs, university research projects
Employer & Industry UsageCompanies, government agencies, universitiesUniversities, research institutions
Common Search & Comparison IntentExploring entry-level opportunities in physicsSeeking research experience or academic positions

Physics Internships are typically short-term, industry-focused positions for students seeking practical experience, while Physics Research Assistants are more involved in academic research projects, often requiring advanced coursework or graduate status. Both roles support physics research but differ mainly in scope, environment, and level of responsibility.

Which internship is best for physics students?

The best internships for physics students are those offered by research institutions, government labs, or technology companies that focus on applied physics, research, or data analysis. These internships typically require strong analytical skills, proficiency in programming tools like Python or MATLAB, and a solid understanding of physics principles. Selecting an internship aligned with your career interests and skill set can provide valuable experience and networking opportunities.
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What cities are hiring for Physics Internships jobs?

Cities with the most Physics Internships job openings:

What are the most commonly searched types of Physics Internships jobs?

The most popular types of Physics Internships jobs are:

What states have the most Physics Internships jobs?

States with the most job openings for Physics Internships jobs include:

Infographic showing various Physics Internships job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 74% Full Time, 24% Part Time, and 1% Contract. Highlights an 76% Physical, 2% Hybrid, and 22% Remote job distribution, with an average salary of $41,731 per year, or $20.1 per hour.

Nuclear Fuels and Materials Internships

External Engagement and Communications (Lxxx)

Idaho Falls, ID โ€ข On-site

$94K - $113K/yr

Internship

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


Job description

Idaho National Laboratory University/College Internships-NUCLEAR FUELS AND MATERIALS INTERNSHIPS

Typical Degree Programs Sought Include: (Nuclear Engineering, Metallurgical Engineering, Materials Science & Engineering, Mechanical Engineering, Civil/Structural Engineering, Physics, Chemistry, Chemical Engineering)
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Please note that if you are interested in other INL internship categories in addition to this one, you will need to complete the application for each of those categories as well. Most of the information you provide while completing the initial application carries over to your new applications. You will have to review your previously submitted information in each step, ensure it is complete and then click the submit button on the final step.

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The Opportunity:

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Internships at Idaho National Laboratoryย ย 

Idaho National Laboratory (INL) hosts over 300 undergraduate and graduate students each year to support INL's mission.ย ย Opportunities for interns at INL range from nuclear engineering to cybersecurity and include non-scientific positions in various operations and business disciplines.

Join INL's team and find your exceptional educational experience in a real-world work environment.ย ย INL offers a unique opportunity to learn, collaborate, innovate and conduct research with top researchers and professionals.

The Deliverables:

Interns will spend the first week of their assignment working with their mentor to outline their work scope and to secure resources for a successful internship.ย ย For the next several weeks, the mentor will provide considerable program assistance and guidance to the intern.ย ย In addition to regular activities, interns are invited to attend weekly seminars, tours and community events designed with career development in mind.ย ย Completion of a final project is highly recommended and can be completed through a variety of mediums - a traditional poster, electronic presentation or video.

The Process:

Through this single application, you are considered for all internship projects related to Nuclear Fuels and Materials. Simply complete the application questions which will help us identify what knowledge and experience you already have that may be related to the preferred qualifications for each individual internship project. It is common for applicants to receive consideration for multiple projects at varying times throughout the process. Mentors will make direct contact with applicants who meet their project qualifications to share the specific details of the project. On average, INL plans for approximately 300 internships each year.ย ย Most internships provide flexibility with start and end dates to account for varying university term schedules.ย ย We encourage early applications to increase the number of opportunities available to you.

The Projects:

Internship projects will focus on development, fabrication and examination of innovative revolutionary materials for application with nuclear technologies. Typical projects focus on materials for reactor fuels and cladding, reactor core and components, reactor cooling and safety systems and power plant structures. Interns are introduced to many of the unique research facilities and capabilities available at INL. These resources include:

~The world's premier nuclear test reactor, the Advanced Test Reactor.

~Analytical Laboratories with hot cells, gloveboxes, chemistry lab, 5-ton bridge crane, mass spectrometers, post irradiation characterization, radiation measurements lab and radioisotope characterization.

~The NRAD Neutron RADiography reactor.

~The Fuels and Applied Science Building with a Cobalt-60 gamma irradiator, molten salt electrorefiner, inert atmosphere gloveboxes, thermal characterization instruments, fabrication equipment, ceramic powder processing equipment and sintering furnaces.

~Theย Irradiated Materials Characterization Laboratory provides heavily shielded state-of-the-art electron beam characterization capabilities for post-irradiationย examination of fuels and materials

~The Space and Security Power Systems Facility Radioisotope Power Systems are assembled and qualified to power equipment for deep space missions.

~Theย nation's premier hot cell facility, the Hot Fuel Examination Facility, where irradiated fuels and materials are examined using a variety of techniques to assess performance in reactor.

~The Fuel Conditioning Facility is used for treatment of sodium-bonded metal fuel and pyroprocessing.

~Theย Experimental Fuels Facility focused on development of nuclear fuels and fabrication methods.

~The Transient Test Reactor creates short term bursts of neutrons to simulate reactor accident scenarios and develop safer nuclear fuels.

~The Matched Index of Refraction facility provides experimental measurements for assessment and validation of computational fluid dynamics codes.

~Theย High Temperature Test Lab creates specialized sensors that are used inside of test reactors to monitor the in-core performance of nuclear fuels and materials experiments.

~The Safety and Tritium applied Research Facility is used for fusion research, hydrogen fuel, activated structural materials, beryllium, lithium, lead and fluoride salt experiments.

Some projects interns have participated in recently include:

--Analyzeย and identify microstructural features of irradiated TRISO fuel kernels to determine the effect of irradiation level on the microstructure and fission product distribution.ย 

--Development of LabViewย software and experimental setup for the thermal conductivity measurements using 3-omega method.

--Image analysis and reconstruction for the evaluation of nuclear fuel performance. Source images include high-resolution optical micrographs and digitizedย x-rayย and neutron radiographs. Quantitative analysis of these images was performed using MATLAB tools developed for this application.

--Development of a database of microstructural and physical properties of selected uranium based nuclear fuel materials. Student may assist with diffusional and or chemical interactive studies followed by microstructural evaluation.

--Design a miniature constant load testing rig that can be inserted in a high pressure high temperature autoclave to test irradiated specimens.

The development sample preparation techniques to analyze cracking for irradiated metallic test specimens.ย 

--Examination and analysis of nuclear fuels and materials using electron microscopy techniques that include SEM, TEM, FIB, and potentially APT.

--Development of a camera-basedย digitalย neutron radiography system for examination ofย highly radioactiveย objects.

--Designing and demonstrating the use of digital image correlation for measuring strain in mechanical testing from a large distance through a thick shield window.

--Development and testing of a next-generation system for non-destructive examination of irradiated fuels.

Required Qualifications:
All Internship Candidates Must:
  • Have the ability to pass a background check
  • Possess a minimum overall 3.0 Grade Point Average (GPA)
  • Complete this application, which is used to place students based on their academic interests, coursework, knowledge and communication skills
  • Enrolled full time student status at an accredited college or university (undergraduate, graduate, PhD).
Note:ย  Many INL community college interns are hired through the U.S. Department of Energy's Community College Internship Program. We recommend you also apply to DOE's Internship Program at http://science.energy.gov/wdts/cci/
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Helpful Tips to Prepare You for Your INL Internship Application:
  1. Current resume or Curriculum Vitae (CV)
  2. Unofficial Transcripts (include current and completed degree programs)
  3. Current class schedule and number of credits
Recommendations:
  • Work with your career center to develop a resume or CV that is functional (this is your opportunity for a first impression)
  • Review the INL website and learn more about our business and research programs and how they could enrich your degree plan https://www.inl.gov/
  • Ask your professors if they have collaborated on INL research programs and seek their permission to list them as a reference
  • Review the INL Academic Partnerships web site for valuable information on our internship programs ย https://www.inl.gov/inl-initiatives/education/
Internship Programs Specialists:ย 
ย Ali Josephson (ali.josephson@inl.gov)ย ย ย ย ย ย ย ย  Brian Rucks (brian.rucks@inl.gov)
Delisa Rogers (delisa.rogers@inl.gov)ย ย ย ย ย ย ย ย ย  Myken Johnson (myken.johnson@inl.gov)ย ย ย ย ย  Thomas Steele (thomas.steele@inl.gov)
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Equal Employment Opportunity
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Idaho National Laboratory (INL) is an Equal Employment Opportunity (EEO) employer.ย  It is the policy of INL to provide equal employment opportunities to all qualified applicants without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, protected veteran or disabled status, or genetic information.
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