Master of Business Administration - MBA
Trine University stands as a catalyst for academic and professional success. The Master...
Angola, Indiana
INTAKE: Jan & Aug
Trine University’s B.S. in Biomedical Engineering is designed to equip students with the skills and knowledge necessary to merge engineering principles with medical and biological sciences. This program prepares students to develop technologies and devices that improve healthcare delivery, patient care, and overall quality of life. The curriculum integrates practical laboratory experiences with theoretical learning to create a comprehensive educational journey.
STEM-designated: As a STEM-designated program, the B.S. in Biomedical Engineering at Trine University emphasizes the importance of science, technology, engineering, and mathematics in its curriculum. This designation not only underscores the program’s commitment to developing critical skills for innovation but also opens up opportunities for students in areas such as internships and potential visa benefits for international students.
ABET-accredited: The program is accredited by the Accreditation Board for Engineering and Technology (ABET), ensuring that it meets the highest standards of quality and rigor in engineering education. ABET accreditation signifies that the program provides a solid foundation in engineering principles while preparing graduates for professional practice and meeting the requirements of employers in the field.
Curriculum: The curriculum for the B.S. in Biomedical Engineering includes core engineering courses, biology, and specialized subjects such as biomaterials, medical device design, and biomechanics. Students engage in hands-on projects and labs, enabling them to apply theoretical knowledge to real-world challenges. This blend of coursework ensures that graduates possess a well-rounded understanding of both engineering and medical concepts.
Research Focus: Trine University encourages undergraduate research in biomedical engineering, providing students with opportunities to work alongside faculty on innovative projects. Research areas may include tissue engineering, biomedical imaging, and the development of assistive devices. This hands-on research experience helps students develop critical thinking skills and gain valuable insights into current advancements in the field.
Industry Engagement: The program emphasizes strong industry engagement through partnerships with local healthcare providers and technology companies. Students have the opportunity to participate in internships and cooperative education experiences, allowing them to gain practical experience and establish professional networks. These connections are invaluable for students as they transition from academia to the workforce.
Global Perspective: Trine University’s B.S. in Biomedical Engineering fosters a global perspective by examining the impact of biomedical innovations on healthcare systems around the world. Students are encouraged to explore ethical considerations and global health challenges, preparing them to address diverse needs in various cultural contexts. This focus on global issues equips graduates to work effectively in an interconnected world.
Angola, Indiana
IELTS 6
USD 35000
Undergraduate Entry Requirements
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 70% or above in their previous academic qualifications.
English Language Proficiency:
Trine University is fostering a diverse and talented student body, the university offers a range of scholarship opportunities for international students. These scholarships are designed to recognize academic excellence, leadership potential, and contributions to the community.
International Achievement Scholarship: Trine University's International Achievement Scholarship is a merit-based award aimed at recognizing outstanding academic achievement. Eligibility is determined by academic records, standardized test scores, and achievements. The scholarship amount may vary, and it is renewable based on academic performance.
Global Leadership Scholarship: This scholarship is specifically designed for international students who have demonstrated exceptional leadership skills and a commitment to making a positive impact. Candidates are evaluated based on their leadership experiences, community service, and extracurricular involvement.
Cultural Diversity Scholarship: Trine values the diversity that international students bring to the campus community. The Cultural Diversity Scholarship is awarded to students who have actively contributed to promoting cultural understanding and diversity. Applicants may be required to submit essays or portfolios showcasing their efforts in this regard.
STEM Scholarship: Trine University places a strong emphasis on science, technology, engineering, and mathematics (STEM) education. The STEM Scholarship is awarded to international students pursuing degrees in STEM fields. Academic achievements, relevant coursework, and future career goals are considered in the selection process.
Athletic Scholarships: Talented student-athletes have the opportunity to be considered for athletic scholarships. These scholarships are awarded based on athletic achievements, potential contributions to the university's sports teams, and academic performance.
Departmental Scholarships: Some academic departments at Trine University offer scholarships to international students based on their chosen field of study. These scholarships may be tied to specific majors and are awarded to students who exhibit exceptional promise in those areas.
Need-Based Financial Aid: Trine University is committed to making education accessible, and international students with demonstrated financial need may be eligible for need-based financial aid. Applicants are typically required to submit financial documentation to assess eligibility.
Honors Program Scholarships: Students admitted to the Honors Program at Trine University may be eligible for additional scholarships. The Honors Program emphasizes academic rigor, critical thinking, and a commitment to intellectual curiosity.
Graduates of the B.S. in Biomedical Engineering program from Trine University have access to a diverse array of career opportunities across various sectors. The program prepares students to apply engineering principles to solve problems in healthcare and medical device design, making them highly sought after in the job market.
Medical Device Engineer: One of the primary career paths is working as a medical device engineer, where graduates design and develop medical equipment and devices such as prosthetics, imaging systems, and surgical instruments. They collaborate with multidisciplinary teams to ensure products are safe, effective, and compliant with regulatory standards.
Biomedical Research Scientist: Graduates may also pursue careers as biomedical research scientists, conducting research to develop new technologies and therapies. They may work in laboratories or clinical settings, focusing on areas such as tissue engineering, drug delivery systems, or regenerative medicine.
Clinical Engineer: Clinical engineers apply engineering principles to healthcare settings, working to ensure that medical equipment operates safely and effectively. They may also be involved in training healthcare personnel on the use of new technologies, as well as maintaining and troubleshooting medical devices.
Quality Assurance/Regulatory Affairs Specialist: Some graduates may choose to work in quality assurance or regulatory affairs, ensuring that biomedical products meet industry standards and government regulations. They play a crucial role in the approval process for new medical technologies, ensuring that safety and efficacy are prioritized.
Biomaterials Engineer: As biomaterials engineers, graduates focus on developing and testing new materials for medical applications. This can include creating biocompatible materials for implants or drug delivery systems, and conducting research to evaluate their performance in biological environments.
Systems Engineer: Graduates can also work as systems engineers, designing and managing complex biomedical systems and technologies. This role involves integrating various components, such as hardware and software, to create cohesive and efficient healthcare solutions.
Regenerative Medicine Specialist: Those interested in cutting-edge research may pursue careers in regenerative medicine, focusing on developing techniques to repair or replace damaged tissues and organs. This field often involves collaboration with medical professionals and researchers to advance treatment options.
Healthcare Consultant: Graduates may work as healthcare consultants, providing expertise to organizations on the implementation of new technologies and improving healthcare delivery systems. They analyze data and trends to offer strategic recommendations that enhance patient outcomes and operational efficiency.
Entrepreneur: With a solid foundation in biomedical engineering principles, some graduates choose to become entrepreneurs, launching startups that focus on innovative healthcare solutions or medical devices. This entrepreneurial path allows them to bring their ideas to market and make a direct impact on patient care.