University of Hartford

USA
1 Scholarships 80 Programs 3 Degree levels
Bachelor

Bachelor's in Physics

Offered at University of Hartford, USA
DegreeBachelor
FieldPhysics.
C

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

You borrow $27,000 median federal debt
You repay $307/mo over 10 years
Graduates earn $60,823 10 yrs after entry
Debt clears in 1.3 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 the University of Hartford is an undergraduate programme that combines rigorous core physics training with specialised courses in nuclear and particle phenomena. It suits students who want a strong foundation in theoretical and experimental physics and who plan to pursue careers in research, applied physics, or graduate study in nuclear/particle science.

What you'll study

The programme is built on a core physics curriculum that covers classical mechanics, electrodynamics, quantum mechanics and statistical physics, together with a mathematics sequence (calculus, differential equations and linear algebra) essential for advanced study. Specialised topics in nuclear and particle physics include nuclear structure and reactions, nuclear instrumentation and detectors, particle physics and elementary particles, and radiation physics.

Students take laboratory courses that emphasise experimental technique, data analysis and instrumentation, including electronics for physicists and advanced lab projects. Computational physics and numerical methods are integral components, preparing students to model nuclear systems and analyse high-energy physics data. The curriculum typically culminates in a senior capstone experience such as an honours project, senior thesis or a substantial research project carried out under faculty supervision.

  • Core modules: Classical Mechanics, Electromagnetism, Quantum Mechanics, Statistical Mechanics
  • Mathematics for physicists: Calculus sequence, Differential Equations, Linear Algebra
  • Specialist modules: Nuclear Physics, Particle Physics, Radiation Physics, Detector Technology
  • Practical training: Physics Laboratories, Electronics for Scientists, Computational Physics
  • Capstone: Senior Research Project or Thesis and departmental seminar series

Entry requirements

Applicants should have a strong high school background in mathematics (through calculus where available) and physics. Admissions consider overall academic preparation in STEM subjects and evidence of quantitative ability. Typical applicants present a high-school diploma (or recognised equivalent) with strong grades in relevant subjects. International applicants must meet the University of Hartford's general admission standards and demonstrate English language proficiency where required.

Recommended preparation includes: a full-year course in physics, a calculus sequence, and coursework in chemistry or computer science to support laboratory and computational work. Admissions tests (when submitted) and additional materials such as teacher recommendations or a personal statement can support an application but requirements follow the university's published policies.

Career prospects

Graduates with a physics degree emphasising nuclear and particle physics are well placed for a variety of career paths. Many continue to graduate study in physics, nuclear engineering, medical physics or related fields. Others move directly into technical roles in research laboratories, radiation and health physics, instrumentation and detector development, accelerator facilities, and applied R&D in industry.

Transferable skills gained—quantitative modelling, experimental design, programming and data analysis—also open opportunities in data science, software engineering, consulting and finance. Additional career directions include secondary-school teaching (with appropriate certification), technical positions in healthcare related to imaging and radiation therapy, and roles in government laboratories and regulatory bodies that deal with nuclear technology and radiation safety.

Why study at University of Hartford

The University of Hartford offers a physics programme with small class sizes and direct faculty mentoring, which supports hands-on learning and undergraduate research. Students benefit from laboratory-focused teaching and opportunities to work closely with faculty on independent research projects or senior theses. The physics department fosters an active student community, including involvement in seminars and professional societies that support networking and professional development.

Located in the Hartford region, the university provides access to internship and employment opportunities with a diverse mix of technical, industrial and healthcare employers nearby. The programme's emphasis on both experimental and computational training equips graduates with practical skills sought by employers and prepares those aiming for competitive graduate programmes in nuclear and particle science.

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