University of Colorado Boulder

USA
2 Scholarships 153 Programs 3 Degree levels
Bachelor

Bachelor's in Biochemistry, Biophysics and Molecular Biology

DegreeBachelor
FieldBiochemistry, Biophysics and Molecular Biology.
B

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

You borrow $19,500 median federal debt
You repay $222/mo over 10 years
Graduates earn $69,738 10 yrs after entry
Debt clears in 0.7 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Bachelor’s in Biochemistry, Biophysics and Molecular Biology at the University of Colorado Boulder is an interdisciplinary degree that combines chemistry, physics and biology to explain how molecules and cells function. It suits students aiming for laboratory research, biotechnology or further study in medicine and the life sciences who want a hands-on, research-oriented undergraduate experience.

What you'll study

The programme builds a foundation in chemistry, physics and core biological sciences before moving into molecular- and cell-level topics. Early years typically cover general chemistry, organic chemistry, calculus and introductory biology. Progressing years emphasise molecular biology, biochemistry, genetic mechanisms, cell physiology and quantitative biophysics, alongside laboratory-based courses.

  • Core topics: general and organic chemistry, physical chemistry principles relevant to biomolecules, molecular and cellular biology, genetics.
  • Advanced subjects: enzymology, structural biology, membrane biophysics, signal transduction, metabolic pathways and spectroscopy.
  • Practical skills: molecular cloning, protein expression and purification, microscopy, electrophoresis, quantitative data analysis and experimental design.
  • Research and projects: sustained laboratory research with faculty, independent capstone or honours-style projects, and opportunities for multidisciplinary team projects linking computation and experimentation.
  • Electives and breadth: bioinformatics, computational biology, neuroscience, pharmacology, or coursework in maths and physics to support quantitative approaches.

Entry requirements

Applicants are expected to have a strong science background from secondary education. Typical preparation includes high-level study in chemistry and biology, and solid achievement in mathematics; physics is strongly recommended.

  • US applicants: competitive overall secondary GPA and coursework in chemistry, biology and mathematics. Standardised tests policies vary by intake; consult the university for current guidance. Demonstrated laboratory experience and relevant extracurriculars strengthen applications.
  • International applicants: equivalent secondary-school qualifications with strong grades in science and maths, and proof of English proficiency where required.
  • Other considerations: personal statement, recommendation letters, and any research experience or science-related work/volunteering can be important differentiators.

Career prospects

Graduates are prepared for a range of careers in the life sciences and related sectors, or for advanced study. The degree emphasises laboratory competence, quantitative analysis and research experience valued by employers and graduate programmes.

  • Research technician or associate roles in university, hospital and commercial laboratories.
  • Biotechnology and pharmaceutical industry positions in assay development, quality control, production and regulatory affairs.
  • Further professional training: entry to MD, DDS or other clinical programmes, and graduate research (MSc, PhD) in molecular biology, biochemistry, biophysics or related fields.
  • Non-laboratory careers: scientific writing and communication, patent law or technology transfer (often with additional qualifications), science policy and education.
  • Internships and research projects frequently lead to industry contacts or graduate opportunities.

Why study at University of Colorado Boulder

University of Colorado Boulder offers an interdisciplinary environment with active research groups spanning molecular biology, biophysics and biochemistry. Undergraduates benefit from hands-on laboratory training, close faculty mentorship and pathways into ongoing research projects.

  • Research opportunities: access to research laboratories and faculty-led projects, enabling undergraduates to gain real-world experimental experience early in the degree.
  • Facilities and collaboration: modern teaching and research facilities and strong collaboration across chemistry, physics and engineering departments for quantitative and translational science.
  • Location and industry links: proximity to a growing regional biotechnology and startup ecosystem, offering internship and networking opportunities.
  • Student support: academic advising tailored to science majors, career services focusing on STEM careers, and support for applications to graduate and professional schools.

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