Rowan University United States

M.S. in Biomedical Engineering

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 2 Years
Mode On Campus
Level Postgraduate
Degree Masters Degree
Closing soon January 2027

Course Overview

The M.S. in Biomedical Engineering at Rowan University is designed for aspiring professionals seeking to advance their expertise in the dynamic field of healthcare technology and innovation. You will delve into critical areas such as advanced biocompatibility, mechanobiology, and biomaterials engineering, gaining the advanced knowledge and practical skills necessary to address complex challenges in medical device design, tissue engineering, and biological transport phenomena. This postgraduate program equips you with a robust understanding of engineering principles applied to biological systems, preparing you for impactful careers in this vital sector.

This full-time, on-campus Master of Science degree is typically completed over two years. Your studies will involve a blend of core courses, specialization electives tailored to your interests, and essential engineering and mathematics coursework. A significant component of the program is the Master’s Research project, where you will engage in in-depth investigation under faculty guidance. You will graduate with a strong foundation in biomedical engineering research and development, prepared for roles in industry, further academic study, or specialized technical positions.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

The M.S. in Biomedical Engineering program offers a comprehensive curriculum designed to provide students with advanced knowledge in the field. Core courses cover essential topics such as biocompatibility, mechanobiology, biomaterials, and biomedical imaging. Students will also engage with specialization courses, engineering and mathematics coursework, and additional advanced topics to tailor their studies to specific interests within biomedical engineering. The program culminates in a Master's research project.

1 Core Courses (Required)

Advanced Biocompatibility and Immunoengineering
Advanced Mechanobiology
Biomaterials Engineering
Biomedical Imaging
Biological Transport Phenomena

2 Specialization Courses (Choose 9-12 S.H.)

Advanced Cell Bioelectricity
Regulatory Strategies in Biomedical Engineering
Advanced Phenomena in Biomaterials Science
Orthopedic Engineering
Synthetic Biology
Writing and Winning Grant Proposals in the Biomedical Field

3 Engineering and Mathematics Courses

Advanced Engineering Thermodynamics
Engineering Applications of Analysis
Mathematical Applications of Analysis
Operations Research I
Operations Research II
Partial Differential Equations

4 Additional Courses (Advanced Topics and Options)

Introduction to Biochemistry
Fundamentals of Biochemistry and Molecular Biology I
Fundamentals of Cell Biology II
Advanced Biophysical Chemistry
Polymer Engineering
Biomedical Control Systems
Biomedical Process Engineering
Bioseparation Processes I
Tissue Engineering
Controlled Release Theory

5 Additional Engineering Options

Finite Element Analysis
Engineering Optimization
Principles of Nanotechnology
Experiential Engineering Education
Advanced Structural Analysis
Fracture Mechanics
Mechanics of Composites
Computational Material Science
Computational Fluid Dynamics
Advanced Solid Mechanics
Principles in Biomechanics

6 Mathematics and Statistics Courses

Probability and Mathematical Statistics
Complex Analysis I
Nonlinear Differential Equations
Topics in Discrete Mathematics
Applied Statistical Epidemiology
Special Topics in Biomathematics
Introduction to Statistical Data Analysis
Design and Analysis of Experiments

7 Thesis Courses (Required)

Master’s Research

8 Optional Courses for Specialization (Choose Based on Your Interests)

Advanced Cell Bioelectricity
Regulatory Strategies in Biomedical Engineering
Advanced Phenomena in Biomaterials Science
Orthopedic Engineering
Synthetic Biology
Biomedical Control Systems

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 14,824.00
Second Year Fee Tuition fee
USD 14,824.00
Total Program Cost Estimated total tuition
USD 29,648.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 1,325.00 - USD 3,705.00
Food & Groceries USD 3,000.00 - USD 4,560.00
Transport USD 600.00 - USD 1,200.00
Utilities & Bills USD 960.00 - USD 1,800.00
Estimated Total USD 4,560.00 - USD 7,560.00

Living cost estimates are based on Glassboro Campus.

Outcomes & Employability

What happens after you graduate

93%
Graduate Employment Rate Within 6 to 12 months of graduation

Common Graduate Roles

Clinical & Medical ServicesDefense & Military AviationEnergy Equipment & ServicesHydropower & Alternative RenewablesMidstream Operations & Energy LogisticsPharmacovigilance & Drug SafetyPrecious & Base MetalsQuality Assurance & ControlRefining & PetrochemicalsRenewable Energy (Solar & Wind)

Top Employers Hiring for this course

Bristol Myers Squibb

Children's Hospital of Philadelphia

Cooper University Health Care

GSK

Inspira Health

Jefferson Health

Johnson Matthey

Lockheed Martin

Why Study M.S. in Biomedical Engineering at Rowan University

What makes this program stand out

January 2027 Closing soon

Next intake is in January 2027

Moderate Application response time

Rowan University typically responds to applications within 1 - 2 weeks, giving you clarity on your options quickly.

Life at Rowan University in United States

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about M.S. in Biomedical Engineering at Rowan University

Can I work while studying?

International students can work up to 20 hours per week during terms and full-time during breaks. On-campus work doesn’t need separate permits, while off-campus work requires approval after the first year.

What English language score do I need for this course?

For non-native speakers, the English test requirements include a Duolingo overall score of 110, TOEFL overall 70, or IELTS overall 6.0. The PTE also requires an overall score of 50 across all sections.

What jobs can I get after studying this course?

Graduates can pursue roles as Biomedical Engineers, Research Scientists, Medical Device Designers, Tissue Engineers, or Clinical Engineers.

What will I actually study in this course?

This program focuses on healthcare technology and innovation, emphasizing areas like biomaterials engineering and tissue engineering. It is a full-time, two-year on-campus degree designed to equip students with advanced skills for medical device design and research.

When can I start — what are the intake months?

The M.S. in Biomedical Engineering program at Rowan University has three intake months: January, March, and September. You can apply for admission in any of these months to start your studies.
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