New York Institute of Technology

USA
2 Scholarships 54 Programs 3 Degree levels
Masters

Master's in Biology

DegreeMasters
FieldBiology, General.
B

Cost & earnings at New York Institute of Technology What students borrow here, and what they go on to earn

You borrow $23,334 median federal debt
You repay $265/mo over 10 years
Graduates earn $70,080 10 yrs after entry
Debt clears in 0.8 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 New York Institute of Technology is a research-oriented graduate programme that deepens core biological knowledge and laboratory skills for students aiming for scientific careers or further doctoral study. It suits graduates of biological, biomedical or closely related disciplines who want hands-on training in molecular, cellular and computational approaches and opportunities to work with faculty on applied research projects.

What you'll study

The programme combines advanced coursework, laboratory training and an independent research project. Core topics typically include molecular and cellular biology, advanced genetics, biochemical methods, and quantitative approaches such as biostatistics and bioinformatics. Students choose electives that reflect faculty strengths and regional opportunities, often including courses in microbiology and immunology, neurobiology, developmental biology, ecology and conservation, and applied biotechnology.

Teaching methods emphasise small seminar-style classes, practical laboratory sessions, journal clubs and a research practicum. Depending on your programme track, you will complete either a thesis based on original research under faculty supervision or a capstone/project-based option that integrates experimental work with written and oral presentation of results.

  • Core laboratory techniques: microscopy, molecular cloning, PCR, sequencing data interpretation
  • Quantitative skills: statistics for life sciences, introduction to bioinformatics and computational analysis
  • Research skills: experimental design, data analysis, scientific writing and presentation
  • Electives: immunology, cell signalling, microbial physiology, neurobiology, environmental biology, biotechnology and regulatory aspects
  • Seminar series and journal club focused on current literature and professional development

Entry requirements

Applicants are expected to hold an undergraduate degree in biology, biotechnology, biochemistry, molecular biology or a closely related science field from an accredited institution. Admission typically requires a competitive academic record, official transcripts, a personal statement describing research interests and goals, and at least two academic or professional references from instructors or supervisors who can comment on research potential.

Practical laboratory experience and coursework in cell biology, genetics and chemistry strengthen an application. International applicants must demonstrate English language proficiency through recognised tests or equivalent institutional evidence. Some applicants may be asked to attend an interview or provide samples of previous research work or a writing sample.

Career prospects

Graduates pursue a range of careers in academia, industry and the public sector. Common roles include research associate, laboratory scientist, quality control analyst, clinical research coordinator and biotechnologist in pharmaceutical, biotech and diagnostic companies. Graduates also move into environmental consulting, science policy, regulatory affairs, and science communication or education.

The programme also prepares students for further study: many alumni continue to PhD programmes in biological sciences or enter professional schools in medicine, dentistry or allied health fields. The combination of laboratory training, quantitative skills and a research project makes graduates attractive to employers and doctoral programmes alike.

Why study at New York Institute of Technology

New York Institute of Technology offers an intimate setting with access to faculty active in applied and translational research, enabling close mentorship and involvement in ongoing projects. The institute’s facilities support hands-on training in modern laboratory methods and computational analysis, while its locations provide connections to hospitals, research centres and biotechnology companies in the New York region.

The programme emphasises practical skill development, interdisciplinary collaboration and professional preparation, including opportunities for internships and industry partnerships. Students benefit from career services, seminar programmes and a network of alumni working in academia, industry and clinical settings.

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