Physics BS

The bachelor of science degree combines a strong mathematics foundation with an intense physics curriculum comparable to that of PhD-granting physics programs nationwide. In contrast to many other physics programs, our innovative approach emphasizes undergraduate research and hands-on experiences as well as computing skills. 

The physics program is front-loaded with math while progressing through the basic physics sequence preparatory for upper level work.  You can鈥檛 major in physics if you don鈥檛 speak math! The math overlap is significant enough that all physics majors receive a minor in math, and most are able to upgrade the math minor to a major.    

Your coursework will include lecture courses in the active learning style where, in addition to your noggin, you will apply the mathematics and computing training that you receive in the co-requisite requirements. It also includes a sequence of five physics lab courses encompassing electronics, optics, programming, measurement best practices and data analysis. Your capstone project will give you the chance to show off your hard-earned skills!

You will enjoy the many benefits of a small student-to-faculty ratio, such as student-centered instruction, close mentoring by faculty, and exceptional attention to individual needs and interests.  Most students have realistic opportunities for employment as tutors, lab assistants, teaching assistants and research assistants.

Tracks

You can complete the bachelor of science on one of three tracks: to a PhD in physics, to a PhD in astronomy or to gainful professional employment. Whichever track you pick, you will share as much as 80% of the curriculum with your peers. You will receive expert mentoring from the physics faculty to help you decide your post-graduation plans. 

  • Breadth Track: For candidates planning to pursue graduate degrees in physics or engineering. Includes coursework introductory to condensed matter, particle physics and gravitational physics
  • Astronomy Track: For candidates planning to pursue a PhD in astrophysics. Includes coursework in stars, galaxies, instrumentation, gravitation, or planetary science
  • Professional Track: For candidates intending to enter the workforce immediately after graduation. Includes business coursework in law, management and entrepreneurship.

Research

Your capstone paper will give you the chance to describe and explain your contribution to a research program. There are abundant opportunities to participate in the ongoing research programs of the physics faculty, who will be eager to recruit your help. Your initial exposure to a research program will happen alongside your regular coursework, and you can get started at any time. After your initial training, you will be eligible for a paid research assistantship.

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Program Information

The Bachelor of Science in Physics builds a solid foundation in the core areas of physics and extends the breadth of knowledge into areas that typically require graduate specialization. Intense hands-on laboratories and plentiful research opportunities enhance the learning experience, training students in transferable science skills.

Program Type

Major

Degree

Bachelor's

Academic Department

Physics

Duration

4-years

Required Credit Hours

126

Research Opportunities

As you progress, you will have the opportunity to join projects that span particle physics, atomic, molecular, and optical physics and materials science.

In the Corcovilos lab, you can study interactions between light and matter, using measurement techniques such as infrared and ultraviolet spectroscopy of atoms and molecules and laser cooling.  You'll learn hands-on skills like designing and building your own optical systems and electrons and perform optics experiments at international research facilities.  You'll develop state-of-the-art data analysis and statistical techniques using modern programming languages like Python and Julia and apply these techniques to problems in molecular physics, optics design, and environmental sensing.
a professor and students

In the Sorescu lab, you can work on synthesizing and characterizing dysprosium oxide and gallium oxide鈥揾ematite nanostructures produced through mechanical ball milling. Using techniques such as M枚ssbauer spectroscopy, X-ray diffraction, magnetic measurements, and optical spectroscopy, you may help study how processing conditions influence phase formation, magnetic ordering, and semiconducting behavior. These materials show tunable magnetic transitions and band gaps, making them promising for applications in spintronics, catalysis, sensing, and next-generation electronic materials.a professor and a student

In the Benmokhtar lab, you will participate in international collaborations and be exposed to particle physics experimental setups in the US or abroad. You will learn about detector components and instrumentation and how large-scale physics experiments are designed and operated. You will conduct real experimental physics research, combine theory, large datasets analysis, and hands-on experience while also develop strong communication and professional skills needed for careers in physics. Students help investigate how quarks and gluons are distributed inside nucleons and test directly the theory of quantum chromodynamics (QCD), the fundamental theory of strong interactions, and allows you to engage with questions about how the visible mass of the universe emerges from quark-gluon-level dynamics.
a faculty and students

 

Questions? Contact Us!

Simonetta Frittelli, Ph.D.

Chair and Associate Professor

Department of Physics

Simonetta Frittelli

Michelle Rodriguez

Student Success Coach

School of Science and Engineering

michelle rodriguez

Hear From An Alum

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My physics courses at 91制片厂 have given me the confidence to know that I am more capable than I think, which has helped me feel well-prepared for research opportunities and allowed me to approach them with a positive attitude, even if it involves something unfamiliar.

Jaycie Corazzi-Gigliotti BS Physics '25
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After touring the department, I quickly met so many students who were incredibly welcoming, along with faculty members who are skilled professors and researchers. I truly think the 91制片厂 physics department is a hidden gem, and I am so thankful for all they have done for me.

Jacob Dulya BS Physics, Minors in Computer Science and Mathematics '25
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鈥淢y time at 91制片厂 prepared me for teaching responsibilities, classes, and the research phase of the PhD. I was able to get the tools and connections I needed to succeed in a further academic portion of my career.鈥

Robert Behary BS Physics '20, Physics PhD candidate at College of William and Mary
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Prepared For Anything

The Student Experience

At 91制片厂, we believe in the power of experiential learning and offer internship opportunities that allow you to gain valuable industry experience and expand your professional network. By immersing yourself in practical settings, you will bridge the gap between theory and practice, enhancing your physics skills and preparing for a successful career in the field.

After 91制片厂

A major in physics opens the door to a multitude of careers, including employment in industry, technology, and finance, as well as graduate programs in physics, medical physics, engineering, medicine, law, international relations and education. Most of our bachelor of science recipients are gainfully employed in STEM jobs or attending a graduate program of their choice by one year after graduation.

Typical Course Sequence

An initial research experience is recommended before the second summer break. Career mentoring is scheduled in the second semester of Year 3. Students planning to attend a PhD program after graduation would be submitting applications in the first semester of Year 4.

Fall Semester (16 credits) 
  • PHYS 221 + 221L Physics I - Mechanics + lab (5 cr)
  • Essential Questions Seminar (3 cr)
  • MATH 115 Calculus I (4 cr)
  • BRDG 101 Writing and Analysis (3 cr)
  • BRDG 100 Research & Info Skills (1 cr)

Spring Semester (17 credits) 
  • PHYS 222 + 222L Physics II - Electromagnetism + lab (5 cr)
  • CHEM 121 + 121L Chemistry I+ lab (may take in Fall) (5 cr)
  • Programming (3) COSC 160/170 Java/Python,DTSC 110 Data Science or ENGR 110 Matlab 
  • MATH 116 Calculus II (4 cr)
Fall Semester (17 credits) 
  • PHYS 302 Optics (3 cr)
  • PHYS 312 Optics Lab (1 cr)
  • MATH 310 Linear Algebra (3 cr)
  • PHYS 332 Electronics
  • MATH 215 Calculus III (4 cr)
  • BRDG 105 Intro to Ethical Reasoning (3 cr)

Spring Semester (15 credits) 
  • Experiential Learning (PHYS 340 UG research recommended) (1 cr)
  • MATH 314 Differential Equations (3 cr)
  • PHYS 374 Modern Physics (3 cr)
  • CHEM 122 + 122L Chemistry II + lab (3 cr)
  • PHYS 350 Math Methods in Physics (3 cr)
Fall Semester (16 credits) 
  • PHYS 461 Mechanics (4 cr)
  • PHYS 470 Electricity and Magnetism I (3 cr)
  • Bridges course - Cultural Fluency (3 cr)
  • Bridges course - Social & Historical Reasoning (3 cr)
  • MATH 301 Prob & Stats or General Elective (3 cr)


Spring Semester (15 credits) 
  • PHYS 105 Career Seminar (1 cr)
  • PHYS 473 Electrodynamics (3 cr)
  • Physics Elective (3 cr)
  • PHYS 464 Advanced Lab (2 cr)
  • BRDG 102 Writing and Literature (3 cr)
  • General Elective or MATH 308 Numerical Analysis (3 cr)
Fall Semester (16 credits)
  • PHYS 474 Quantum Mechanics (3 cr)
  • PHYS 401 Thermal Physics (4 cr)
  • Bridges course - Ethical Reasoning (3 cr)
  • Communication Requirement - Scientific Writing or Technical Communication (3 cr)
  • General Elective (Theology/Philosophy as needed) (3 cr)


Spring Semester (14 credits) 
  • PHYS 499W Senior Research (capstone) (2 cr)
  • Physics Elective (3 cr)
  • Physics Elective (3 cr)
  • General Elective (3 cr)
  • Bridges course - Critical Thinking (3 cr)
  • PHYS 404 Solid State Physics (3)
  • PHYS 405 Gravitational Astrophysics (3)
  • PHYS 475 Adv. Quantum Mechanics (3)
  • PHYS 482W Particle Physics (3)
  • PHYS 485 Relativity (3)
  • PHYS 491 Introductory Materials Science I (3)
  • PHYS 502 Adv Optical Theory and Devices (3)

Learning Outcomes

At the successful conclusion of the bachelor of science program, students will

  1. use fundamental physics laws and methods to solve problems.
  2. communicate effectively.
  3. function effectively on a team whose members establish goals, plan tasks, and meet objectives.
  4. develop and conduct appropriate experimentation.
  5. apply technical software and coding methods to physics problems.

Accreditation

MSCHE is 91制片厂鈥檚 institutional accreditor, recognized by the U.S. Department of Education for ensuring the highest standards of academic quality and integrity. This accreditation assures students that their learning experience meets nationally recognized standards of excellence, supports continuous improvement, and strengthens the value of their 91制片厂 degree both nationally and globally.

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