University of Virginia Campus
S. Bachelor
On Campus
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University of Virginia
Charlottesville
United States

Biomedical Engineering

About

Biomedical Engineering is an interdisciplinary field that merges engineering principles, biology, and medical sciences to design and develop innovative healthcare solutions. The program provides a comprehensive foundation in mechanics, electronics, biomaterials, and physiology, equipping students to create medical devices, prosthetics, diagnostic tools, and rehabilitation technologies. Students engage in hands-on laboratory work, simulations, and design projects, gaining practical experience in problem-solving, critical thinking, and technical innovation, essential for addressing complex challenges in healthcare technology.

Beyond technical expertise, the program emphasizes research skills, collaboration, and professional development through team projects, internships, and clinical exposure. Students apply engineering knowledge to solve real-world medical problems, integrating computational modeling, biomedical instrumentation, and therapeutic device design. By the end of the program, graduates are prepared for diverse career paths in healthcare technology, medical research, or advanced studies, equipped with both theoretical understanding and practical experience to contribute effectively to improving patient care and advancing biomedical innovation.

Key information

Duration
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Tuition fee
$66,552.00/year
Start dates & application deadlines
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More details
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Key Facts

  • Program Title: Biomedical Engineering
  • Degree Type: S. Bachelor
  • Duration: 4 years
  • Mode of Study: Full-time, On Campus
  • Application Deadline: 05 January 2026
  • Location: University of Virginia, United States
  • Field of Study: Bio & Biomedical Engineering
  • Language of Instruction: English

Program Structure

Year 1 – Foundations in Biomedical Engineering

• Introduction to Biomedical Engineering
• Calculus and Applied Mathematics
• Physics and Chemistry for Engineers
• Computer-Aided Design and Technical Drawing
• Workshop Practices and Laboratory Skills

Year 2 – Core Biomedical Engineering Concepts

• Human Anatomy and Physiology
• Materials Science and Biomaterials
• Electrical and Electronics Fundamentals
• Biomechanics and Fluid Mechanics
• Programming for Biomedical Applications

Year 3 – Advanced Biomedical Applications

• Medical Device Design and Development
• Biomedical Instrumentation and Sensors
• Tissue Engineering and Regenerative Medicine
• Elective Modules in Specialized Areas
• Applied Research Projects

Year 4 – Capstone and Professional Preparation

• Capstone Design Project
• Bioengineering Ethics and Regulatory Affairs
• Clinical Internship / Industry Collaboration
• Advanced Laboratory Techniques
• Technical Communication and Professional Portfolio

Career Opportunities

Graduates of this program can pursue careers as biomedical engineers, medical device designers, research scientists, and clinical technology specialists in hospitals, medical device companies, biotechnology firms, and research institutions. Alumni may also find opportunities in rehabilitation engineering, tissue engineering, diagnostic technology, and regulatory compliance, where their interdisciplinary knowledge and analytical skills are highly valued. The program equips students with practical experience in design, experimentation, and project management, preparing them to excel in professional environments. Graduates can also pursue advanced degrees, certifications, or research-focused careers, further enhancing career prospects and enabling them to contribute to innovative healthcare solutions globally.

Why Choose This Program

This program offers a comprehensive and interdisciplinary curriculum that combines engineering, biology, and medical sciences to prepare students for impactful careers in healthcare technology. Students gain hands-on experience with laboratory experiments, medical devices, simulations, and industry collaborations, developing technical proficiency, problem-solving, and collaborative skills. The curriculum progresses from foundational biomedical engineering principles to advanced device design and capstone projects, ensuring students are prepared to address real-world healthcare challenges. Choosing this program allows students to cultivate critical thinking, innovation, and practical expertise, positioning them to excel in biomedical engineering careers, contribute to medical research, and advance healthcare technologies worldwide. Graduates emerge as highly skilled, adaptable professionals ready to make meaningful contributions to patient care and biomedical innovation.

Contact Information

For further information, please contact the admissions office at:
Phone: +1 434 924 0311
Email: gradadmissions@virginia.edu
Address: University of Virginia, Charlottesville, VA 22904, United States