University of North Carolina at Chapel Hill

USA
3 Scholarships 152 Programs 3 Degree levels
Masters

Master's in Biology

DegreeMasters
FieldBiology, General.
A

Cost & earnings at University of North Carolina at Chapel Hill What students borrow here, and what they go on to earn

You borrow $14,000 median federal debt
You repay $159/mo over 10 years
Graduates earn $72,200 10 yrs after entry
Debt clears in 0.4 yrs of the salary premium
US Department of Education figures See the full breakdown →
F

Biology graduates earn a median $38,289 Across 469 US programmes, two years after finishing

See the degree grade →

The Master of Science in Biology at the University of North Carolina at Chapel Hill is a research‑focused graduate programme that combines advanced coursework with laboratory or field research, suitable for students preparing for careers in biological research, industry, conservation or further doctoral study. It suits applicants with a solid undergraduate background in biology or a closely related discipline who want intensive training in experimental design, data analysis and specialised subdisciplines of biology.

What you'll study

The MSc in Biology at UNC Chapel Hill combines core advanced coursework with a substantial independent research project supervised by a faculty adviser. Students build depth in areas such as molecular and cellular biology, genetics and genomics, ecology and evolution, organismal physiology, developmental biology, neurobiology, and computational biology. Coursework typically covers advanced laboratory techniques, experimental design, statistics and bioinformatics, and students regularly attend departmental seminars and journal clubs to engage with current research.

Programme structure normally includes a mix of required and elective graduate courses, laboratory rotations or research credits, and a written thesis or final research report. Depending on research focus, students may take modules in:

  • Molecular and Cellular Biology — gene expression, signal transduction, protein biochemistry.
  • Genetics & Genomics — population genetics, comparative genomics, sequencing technologies.
  • Ecology & Evolution — community ecology, evolutionary theory, field methods.
  • Physiology & Organismal Biology — systems physiology, developmental processes.
  • Neuroscience — cellular neurobiology, systems neuroscience approaches.
  • Quantitative and Computational Methods — statistics for biologists, bioinformatics, modelling.

Students typically carry out an independent research project under a faculty mentor, culminating in a written thesis and oral defence or final presentation. Opportunities exist for collaborative projects across neighbouring departments and centres, and for accessing shared core facilities for genomics, imaging and high‑throughput data analysis.

Entry requirements

Applicants are expected to hold a recognised bachelor’s degree in biology, life sciences or a closely related field with evidence of strong academic performance. Typical application materials include official transcripts, a personal statement outlining research interests and career goals, a curriculum vitae, and three letters of recommendation from academic or professional referees familiar with the applicant’s research potential.

Many applicants have completed undergraduate coursework in molecular biology, genetics, ecology, biochemistry and quantitative methods; relevant laboratory experience is strongly recommended. Standardised tests are not universally required; consult the programme for current test policies. International applicants must demonstrate English language proficiency through an approved test unless exempt.

Career prospects

Graduates of the MSc in Biology go on to a range of careers in academia, industry and the public sector. Common paths include:

  • Progression to PhD programmes and academic research positions.
  • Research scientist or specialist roles in biotechnology, pharmaceutical, agricultural and genomics companies.
  • Conservation and environmental science roles with NGOs, government agencies and consultancy firms.
  • Data‑focused roles such as bioinformatics analyst or biostatistician in research institutes and private sector organisations.
  • Science communication, policy and education roles that draw on scientific training and communication skills.

The programme’s emphasis on hands‑on research, statistical literacy and interdisciplinary collaboration prepares graduates for roles that require independent problem solving and technical competence.

Why study at University of North Carolina at Chapel Hill

UNC Chapel Hill offers a vibrant and collaborative research environment with faculty leaders across many areas of biology and strong links to interdisciplinary centres and nearby research institutions. Students benefit from access to modern core facilities for genomics, microscopy and computational biology, as well as opportunities for fieldwork in diverse North Carolina ecosystems.

The department emphasises mentorship and professional development, providing seminar series, grant writing workshops and career support to help students prepare for academic and non‑academic careers. Proximity to regional biotech hubs and a large network of alumni and industry partners enhances internship and employment prospects. For students seeking rigorous research training within a collegial academic community, UNC Chapel Hill provides the infrastructure and faculty expertise to develop as independent researchers and professionals in the biological sciences.

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