Pace University

USA
1 Scholarships 101 Programs 3 Degree levels
Bachelor

Bachelor's in Biochemistry, Biophysics and Molecular Biology

Offered at Pace University, USA
DegreeBachelor
FieldBiochemistry, Biophysics and Molecular Biology.
B

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

You borrow $23,250 median federal debt
You repay $264/mo over 10 years
Graduates earn $70,378 10 yrs after entry
Debt clears in 0.8 yrs of the salary premium
US Department of Education figures See the full breakdown →

This interdisciplinary Bachelor’s programme combines biochemistry, biophysics and molecular biology to give a thorough grounding in the chemical and physical principles that govern living systems. It suits students who want rigorous laboratory training, quantitative problem-solving skills and preparation for research careers or further study in biomedical sciences.

What you'll study

This programme blends core courses in chemistry, physics and mathematics with specialised courses in biochemistry, molecular and cell biology and biophysics. Early semesters establish foundations in general chemistry, organic chemistry, calculus and introductory biology. Upper-level work emphasises molecular mechanisms, structural biology and quantitative analysis, and typically includes:

  • Core science courses: General and organic chemistry, introductory physics, calculus and statistics.
  • Biochemistry sequence: Introductory and advanced biochemistry covering metabolism, enzyme kinetics, macromolecular structure and regulation.
  • Molecular and cell biology: DNA/RNA biology, gene expression, signal transduction, cell physiology and developmental basics.
  • Biophysics and structural methods: Physical methods applied to biological systems, including spectroscopy, thermodynamics, macromolecular structure and basic computational approaches.
  • Laboratory training: Progressive hands-on lab courses emphasising experimental design, modern instrumentation, data analysis and laboratory safety; practical coursework often mirrors techniques used in industry and research (e.g. PCR, electrophoresis, chromatography, microscopy).
  • Research and capstone: Options for independent or faculty-mentored research, a senior seminar or capstone project that integrates experimental and literature-based work.
  • Electives and interdisciplinary options: Molecular genetics, enzymology, bioinformatics, computational biology, structural biology, neurobiology or courses linking biology with ethics, communication and policy.

The programme emphasises quantitative reasoning, hypothesis-driven experimentation and scientific communication. Students typically complete a mix of lecture, laboratory and seminar credits, with opportunities for summer research, internships and study-abroad components that complement campus-based training.

Entry requirements

Applicants should present a secondary-school (high school) diploma or equivalent with a strong record in science and mathematics. Typical preparation includes high school courses in chemistry and biology and at least one year of algebra or precalculus; prior exposure to physics and calculus is advantageous. Admissions considerations usually include overall academic performance, teacher recommendations, a personal statement describing interest in the molecular life sciences, and any relevant laboratory or research experience.

Standardised test requirements may vary by programme and intake; prospective students should consult the university admissions page for current policies. International applicants must meet English language proficiency requirements and provide any required credential evaluations.

Career prospects

Graduates gain a solid platform for multiple career paths. Common directions include:

  • Research and development: Entry-level roles in biotechnology, pharmaceutical and diagnostic companies, performing laboratory-based research or assay development.
  • Clinical and laboratory sciences: Positions in clinical laboratories, molecular diagnostics, quality control and regulatory support (often coupled with additional certification or training).
  • Further study: Many students progress to graduate programmes (MSc/PhD) in molecular biology, biochemistry, biophysics or related fields, or professional schools in medicine, dentistry or pharmacy.
  • Data and computational roles: With quantitative training, alumni move into bioinformatics, computational biology or roles combining biology with data analysis.
  • Science-related careers: Opportunities in science policy, patent law (with further legal training), technical communication, sales/support for scientific instruments and education.

The programme’s combination of laboratory skills, analytical training and research experience makes graduates attractive to employers and competitive applicants for advanced study.

Why study at Pace University

Pace offers the benefits of an urban university located in the New York metropolitan area, including proximity to major hospitals, research institutes, biotech firms and internship providers. Small class sizes and accessible faculty allow close mentorship and opportunities for undergraduate research in campus laboratories.

Students benefit from experiential learning through internships, industry partnerships and career services that help connect classroom learning to professional opportunities. Modern teaching laboratories, collaborative classrooms and a curriculum that emphasises both experimental technique and quantitative analysis prepare graduates for a range of scientific careers or postgraduate study.

Overall, the programme is well suited to students who want a hands-on, research-oriented undergraduate education in molecular life sciences while taking advantage of the resources and professional networks available in a large metropolitan setting.

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