Florida International University

USA
6 Scholarships 328 Programs 3 Degree levels
Bachelor

Bachelor's in Physics

DegreeBachelor
FieldPhysics.
B

Cost & earnings at Florida International University What students borrow here, and what they go on to earn

You borrow $16,500 median federal debt
You repay $188/mo over 10 years
Graduates earn $60,249 10 yrs after entry
Debt clears in 0.8 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Bachelor of Science in Physics with a focus on Nuclear and Particle Physics at Florida International University is an undergraduate degree combining rigorous foundation physics and mathematics with specialised coursework and research in nuclear and particle topics. It suits students who enjoy quantitative problem solving, laboratory work and who aim for careers in research, graduate study or technical roles in industry and government related to nuclear science and instrumentation.

What you'll study

The programme builds a strong core in classical and modern physics alongside the mathematics required for advanced study, then offers targeted modules and research experience in nuclear and particle physics. You will complete a sequence of introductory and intermediate courses such as calculus-based mechanics, electromagnetism, modern physics, and laboratory techniques; mathematical methods for physicists, differential equations and linear algebra; and computational physics.

  • Core physics courses: classical mechanics, electricity and magnetism, quantum mechanics, statistical and thermal physics.
  • Mathematics and computation: multi-variable calculus, differential equations, linear algebra, numerical methods and scientific programming for data analysis and simulation.
  • Laboratory and instrumentation: progressive lab sequence emphasising experimental design, data acquisition, detector systems and uncertainty analysis.
  • Specialist nuclear & particle modules: nuclear physics, nuclear structure and reactions, particle physics and the Standard Model, detector physics, radiation interactions and measurement techniques.
  • Advanced and elective options: topics in accelerator physics, neutrino physics, computational high-energy physics, or applied nuclear technology depending on faculty offerings and student interest.
  • Capstone and research: a senior project, honours thesis or supervised research placement with physics faculty provides hands‑on experience in experiment, simulation or data analysis in nuclear and particle topics.

As an FIU undergraduate you also satisfy university general education requirements, and you can complement the degree with minors or certificates in mathematics, computer science, engineering, or applied health physics.

Entry requirements

Admission is to the university and to the College of Arts, Sciences & Education with placement into the physics major after meeting departmental progression standards. Typical preparation includes a high school diploma or equivalent with strong performance in mathematics (calculus preferred) and physics. Recommended preparatory subjects are calculus, physics, and chemistry; experience with computer programming is advantageous.

FIU evaluates applications holistically using secondary school record, coursework rigor, and other supporting materials. Applicants who have completed advanced or university-level coursework (for example through dual-enrolment or advanced placement) may receive credit and can progress more quickly through early requirements. Transfer students should expect to present transcripts and course descriptions for evaluation.

Career prospects

Graduates with a BSc in Physics concentrating in Nuclear and Particle Physics have a wide range of career paths. Many continue to graduate study (master’s or PhD) in physics, nuclear engineering or related fields. Others move directly into technical roles that draw on strong quantitative, experimental and computing skills.

  • Research and academia: graduate research in experimental or theoretical nuclear and particle physics, astrophysics, or related interdisciplinary areas.
  • National and industrial laboratories: roles in instrumentation, detector development, radiation measurement, and experimental support.
  • Medical and applied fields: pathways into medical physics, radiological science, and radiation safety with further professional training or certification.
  • Engineering and technology: positions in systems engineering, instrumentation, semiconductor industry, and aerospace that value physics problem‑solving.
  • Data and computation: data science, software engineering and modeling roles leveraging numerical and statistical skills developed in the degree.
  • Education and outreach: secondary school teaching (with appropriate certification) and science communication roles.

Why study at Florida International University

FIU offers an undergraduate physics programme in an urban research university setting with opportunities for early involvement in faculty-led research and modern laboratory training. The department emphasises mentorship for undergraduates, allowing students to join experimental and theoretical research groups, gain experience with detectors and data analysis, and present work at conferences.

Located in the Miami region, FIU provides access to a diverse scientific and industrial ecosystem—healthcare institutions, technology companies and government laboratories—facilitating internships and applied experiences. The university also supports pathways to graduate study through advising, research scholarships and collaborative projects, helping prepare graduates for careers in nuclear and particle science and adjacent technical fields.

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Programme details are indicative and may change — always verify current information with the official university website before applying.