Clarkson University

USA
3 Scholarships 70 Programs 3 Degree levels
Bachelor

Bachelor's in Physics

Offered at Clarkson University, USA
DegreeBachelor
FieldPhysics.
A

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

You borrow $26,000 median federal debt
You repay $296/mo over 10 years
Graduates earn $89,696 10 yrs after entry
Debt clears in 0.5 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Bachelor of Science in Physics with a focus in Nuclear and Particle Physics at Clarkson University is an undergraduate programme that combines a strong foundation in core physics and mathematics with specialised courses and laboratory experience in nuclear and particle topics. It suits students who enjoy rigorous quantitative problem solving, experimental work, and who are aiming for careers in research, energy, medical physics, or further study at graduate level.

What you'll study

The programme builds core competencies in classical mechanics, electromagnetism, quantum mechanics, thermodynamics and statistical mechanics, and advanced laboratory methods. From that foundation, students take specialised courses in modern nuclear and particle physics including topics such as nuclear structure and reactions, radiation detection and measurement, particle interactions, and applications of nuclear processes.

  • Core physics and mathematics: calculus sequence, differential equations, linear algebra, classical mechanics, electrodynamics, quantum theory, and thermal/statistical physics.
  • Laboratory and practical skills: introductory and advanced physics labs, instrumentation and measurement techniques, data analysis, and computational physics using languages and tools common to research settings.
  • Nuclear and particle topics: nuclear physics, particle physics and interactions, radiation detection and safety, accelerator principles, and applied nuclear technologies.
  • Research and capstone: a year-long senior project or honours thesis supervised by faculty, often involving hands-on experiments, data analysis, or computational modelling.
  • Optional/related modules: courses in electronics, materials science, computational methods, and electives that allow interdisciplinary study with engineering, chemistry or computer science.

Throughout the degree students are encouraged to participate in undergraduate research, internships or co-op placements to gain practical experience in experimental techniques, simulation, and project management.

Entry requirements

Applicants should hold a high school diploma or equivalent with strong preparation in mathematics and science. Typical preparation includes calculus (or precalculus leading into calculus), physics, and chemistry at the high‑school level. Admissions review considers academic record, teacher references, and personal statement; standardised test submission is optional according to university policy.

  • A-levels/IB/secondary credentials: strong performance in mathematics and physics or equivalent course work.
  • First‑year prerequisites: readiness for college calculus and introductory physics; some students are admitted into a pathway programme if additional preparation is needed.
  • International applicants: equivalent secondary qualifications plus proof of English language proficiency where required.

Career prospects

Graduates are prepared for a wide range of careers that value strong quantitative skills and experimental experience. Common paths include:

  • Research roles at universities, national laboratories and research institutes working on nuclear, particle or applied physics problems.
  • Employment in the nuclear industry and energy sector, including reactor technology, radiation safety and regulatory roles.
  • Medical physics and health‑related applications such as imaging and radiation therapy (often pursued after further specialised study or certification).
  • Technical and engineering roles where physics training is applied to instrumentation, sensors, materials analysis, and accelerator technology.
  • Data science, software development, and quantitative analysis roles in finance, technology and consulting, benefitting from computational and modelling experience.
  • Continuation to graduate study (MSc/PhD) in physics, nuclear engineering, medical physics or related disciplines.

Why study at Clarkson University

Clarkson emphasises applied science and engineering with strong support for undergraduate research, small class sizes and close faculty mentorship, which are particularly valuable for experimental fields like nuclear and particle physics. The university provides hands‑on laboratory facilities, opportunities for interdisciplinary collaboration with engineering and materials science, and encouragement to undertake internships and co‑operative experiences that connect students with industry and research employers.

Students benefit from an academic environment that balances rigorous theoretical training with practical skills in instrumentation, data analysis and computational modelling, helping graduates to be ready for both employment and further study in physics and related fields.

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