Indiana University

USA
2 Scholarships 89 Programs 3 Degree levels
Bachelor

Bachelor's in Physics

Offered at Indiana University, USA
DegreeBachelor
FieldPhysics.

The Bachelor of Science in Physics with a focus on Nuclear and Particle Physics at Indiana University trains students in the fundamental theory and experimental techniques used to study atomic nuclei and elementary particles. It suits students with strong mathematical preparation who want hands‑on laboratory experience, undergraduate research opportunities and a pathway to graduate study or technical careers in research, national laboratories and industry.

What you'll study

This programme builds a core physics foundation—classical mechanics, electromagnetism, quantum mechanics and statistical physics—then applies those principles to nuclear and particle topics. You will follow a sequence of progressively advanced courses and laboratory experiences designed to develop theoretical understanding, computational skills and experimental technique.

  • Core physics sequence: introductory and intermediate courses in mechanics, electromagnetism, modern physics, quantum mechanics and thermodynamics/statistical physics.
  • Mathematics and computing: calculus, linear algebra, differential equations and computational physics or scientific programming to support modelling and data analysis.
  • Nuclear and particle subjects: courses in nuclear physics, particle physics and advanced quantum mechanics covering nuclear structure, radioactive decay, particle interactions, scattering theory and the Standard Model.
  • Laboratory and experimental training: advanced undergraduate labs, experimental techniques in nuclear and particle detection, electronics, radiation measurement and data acquisition systems.
  • Research and capstone: opportunities for independent research projects with department faculty, summer research placements, and a capstone or senior thesis that emphasises experimental work or original data analysis.
  • Electives and interdisciplinary options: courses in accelerator physics, nuclear instrumentation, computational methods, astrophysics, or courses from engineering and computer science to tailor skills for careers or graduate study.

Programme structure

Students typically complete general education requirements alongside the physics major over four years. The major emphasises both coursework and experiential learning: early exposure to laboratory work, mid‑level specialised classes, and senior research or project work. Advising helps students plan sequences that meet prerequisites for advanced topics and prepare for graduate applications or internships.

Entry requirements

Applicants should hold a high school diploma (or equivalent) with strong preparation in mathematics and science. Typical recommended preparation includes:

  • High achievement in mathematics, ideally including calculus or advanced pre‑calculus.
  • High achievement in physics; chemistry is also recommended.
  • Evidence of quantitative problem‑solving ability, demonstrated through coursework, standardised testing (if submitted) or mathematics competitions.
  • For international students, proof of English language proficiency through an accepted test or equivalent qualifications if required by the university.

Indiana University evaluates applications holistically. Transfer students should present college coursework in calculus and introductory physics. Prospective students interested in research are encouraged to highlight any laboratory experience, summer projects or independent study in their application materials.

Career prospects

Graduates with a physics degree focused on nuclear and particle physics have a broad range of career options. Many pursue graduate study (PhD or MS) in physics or related fields, preparing for research careers in academia, national laboratories or international collaborations. Other common career pathways include:

  • Research and technical roles at national laboratories or accelerator facilities.
  • Medical physics, health physics and roles in radiation safety after appropriate postgraduate training or certification.
  • Data science, software development and quantitative analysis in finance, technology and industry.
  • Engineering and instrumentation, particularly positions that require expertise in sensors, electronics and experimental methods.
  • Secondary education and outreach in science, supported by additional teacher preparation where required.

The programme’s emphasis on laboratory experience, programming and independent research makes graduates competitive for internships and entry‑level technical positions as well as for competitive graduate programmes.

Why study at Indiana University

Indiana University’s Department of Physics offers a supportive undergraduate experience with access to active research groups in nuclear and particle physics, opportunities for faculty‑mentored research and collaboration with regional and national laboratories. The department combines strong classroom instruction with modern laboratory facilities and computing resources, enabling students to gain hands‑on skills in instrumentation, data acquisition and analysis.

Undergraduates benefit from small‑group instruction in advanced labs, departmental seminars, and programmes that connect students with summer research experiences and internships. The university’s career services and alumni network help students explore diverse career paths, while advising ensures tailored academic plans for those aiming for graduate school or technical employment. Studying at Indiana University gives students a balance of rigorous physics training and practical research experience in the field of nuclear and particle physics.

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