University of Mississippi

USA
2 Scholarships 134 Programs 3 Degree levels
Bachelor

Bachelor's in Biochemistry, Biophysics and Molecular Biology

DegreeBachelor
FieldBiochemistry, Biophysics and Molecular Biology.
D

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

You borrow $20,000 median federal debt
You repay $227/mo over 10 years
Graduates earn $50,994 10 yrs after entry
Debt clears in 1.7 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Bachelor of Science in Biochemistry, Biophysics and Molecular Biology at the University of Mississippi is an interdisciplinary undergraduate degree combining chemistry, physics and biology to study life at the molecular level. It suits students aiming for laboratory research, further study in biomedical or life-science fields, or technical roles in industry where strong quantitative and experimental skills are required.

What you'll study

The programme provides an integrated foundation in molecular biology, biochemistry and biophysics, emphasising hands-on laboratory experience and quantitative analysis. Core topics include cellular and molecular biology, metabolic and enzymatic processes, macromolecular structure and function, physical chemistry, and the biophysical methods used to interrogate biological systems.

  • Foundational courses: general chemistry, organic chemistry, calculus, physics and introductory biology to build the chemical and quantitative background needed for molecular-level work.
  • Core BMB courses: courses in biochemical pathways, molecular genetics, protein structure and function, membrane biophysics, and laboratory techniques in molecular biology and biochemistry.
  • Laboratory training: progressive lab classes that teach modern experimental techniques such as spectrophotometry, chromatography, electrophoresis, PCR, cloning, microscopy and data analysis; emphasis on experimental design, reproducibility and safety.
  • Advanced and elective topics: structural biology, computational molecular modelling, enzymology, signal transduction, neurobiophysics, and specialised seminars reflecting faculty research strengths.
  • Research and capstone: opportunities for independent research under faculty supervision, senior thesis or capstone projects that integrate experimental work and scientific communication.
  • Skills developed: laboratory practice, quantitative reasoning, data analysis, scientific writing and oral presentation, problem solving and familiarity with contemporary bioinformatics and computational tools.

Entry requirements

Applicants should hold a high-school diploma or equivalent with a strong background in the sciences and mathematics. Successful candidates typically present coursework in biology, chemistry and mathematics; completion of Algebra II and a first-year calculus or precalculus course is recommended. Prior laboratory experience or advanced-level courses (for example A-levels, IB Higher Level, AP Biology/AP Chemistry or equivalent) strengthen an application.

Admissions decisions take a holistic view of transcripts, academic recommendations and personal statements. International applicants must demonstrate equivalent academic preparation and English language proficiency as required by the university. Applicants intending to transfer from other institutions should provide college transcripts and descriptions of completed science and math coursework.

Career prospects

Graduates are prepared for a range of careers in academia, industry and public service. Typical paths include:

  • Research and development: laboratory technician or research associate positions in academic labs, biotech and pharmaceutical companies, or government research facilities.
  • Further study: many graduates go on to graduate programmes (MSc, PhD) in molecular biology, biochemistry, biophysics or related fields, or professional programmes in medicine, dentistry, pharmacy or allied health.
  • Industry and applied science: roles in quality control, clinical laboratory science, regulatory affairs, process development and technical support within life-science companies.
  • Data and computational roles: positions applying bioinformatics, computational biology and data analysis skills to biological datasets.
  • Education and outreach: teaching at the secondary level (with appropriate certification), science communication, or roles in museums and outreach organisations.

Why study at University of Mississippi

The University of Mississippi offers a collaborative, research-active environment with access to modern laboratories and faculty working across chemical, biological and physical sciences. Undergraduates benefit from small-group instruction in upper-level labs, opportunities to join faculty-led research projects, and structured mentoring that supports preparation for graduate school or professional careers.

Students can take advantage of campus resources such as career services, study-abroad and internship placement assistance, and interdisciplinary coursework that connects molecular biology with chemistry, physics and computational methods. The programme’s emphasis on experiential learning and communication prepares graduates to move into research, industry or further professional training with practical laboratory skillsets and an understanding of the molecular foundations of biology.

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