M.S. in Computer Science
The Master of Science (M.S.) in Computer Science at the University of Wisconsin Milwauk...
Milwaukee, Wisconsin
INTAKE: Jan & Aug
The University of Wisconsin Milwaukee (UWM), located in Wisconsin, USA, offers a dynamic B.S. in Biomedical Engineering program. This interdisciplinary program integrates principles from engineering, biology, and medicine to prepare students for careers at the intersection of healthcare and technology.
STEM Designated: UWM's B.S. in Biomedical Engineering program is STEM designated, emphasizing its focus on science, technology, engineering, and mathematics. This designation underscores the program's rigorous academic curriculum and prepares graduates for careers in STEM-related fields such as medical device development, biotechnology, healthcare, and research.
Curriculum: The curriculum of the B.S. in Biomedical Engineering program at UWM is designed to provide students with a solid foundation in engineering principles, biological sciences, and medical applications. Core courses cover topics such as biomechanics, biomaterials, medical imaging, physiological systems, and biomedical instrumentation. Students also have the opportunity to choose elective courses in specialized areas such as tissue engineering, medical device design, or biomedical data analysis, tailoring their education to their career interests and goals.
Research Focus: UWM's B.S. in Biomedical Engineering program emphasizes hands-on research experiences to complement classroom learning. Faculty members engage in cutting-edge research projects that address a wide range of biomedical engineering challenges, from developing new medical devices to improving healthcare delivery systems. Students have the opportunity to participate in research initiatives, work in state-of-the-art laboratories, and collaborate with faculty mentors on research projects, gaining valuable hands-on experience and contributing to scientific advancements in biomedical engineering.
Industry Engagement: The B.S. in Biomedical Engineering program at UWM maintains strong ties with industry partners, including medical device companies, healthcare organizations, research laboratories, and government agencies. Through internships, co-op programs, and industry-sponsored projects, students gain practical experience and insights into the application of biomedical engineering principles in real-world settings. Industry professionals often serve as guest lecturers, mentors, and advisors, providing students with valuable networking opportunities and career guidance.
Global Perspective: Biomedical engineering is a global field that addresses healthcare challenges on a global scale. UWM's program promotes a global perspective by exploring biomedical engineering research from diverse cultural, socioeconomic, and healthcare delivery perspectives. Courses cover topics such as global health disparities, medical technology innovation in developing countries, and ethical considerations in biomedical engineering research and practice. Study abroad programs, international research collaborations, and cross-cultural experiences further enrich students' understanding of global biomedical engineering issues and solutions.
Milwaukee, Wisconsin
IELTS 6.5
USD 20455
Undergraduate Entry Requirements
Application Fees: Waiver
Academic Qualifications: Prospective undergraduate students are required to have a minimum academic achievement of 75% or above in their previous educational qualifications.
English Language Proficiency
Students must provide:
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
The University of Wisconsin-Milwaukee (UWM) is fostering academic excellence and diversity by offering a range of scholarships for international students. These scholarships aim to make education more accessible and support students in achieving their academic and career goals.
Global Excellence Scholarship: UWM's Global Excellence Scholarship is designed to recognize outstanding academic achievements of international students. Eligibility criteria may include academic performance, leadership qualities, and contributions to the community. This merit-based scholarship is intended to attract top-tier international talent to UWM.
international Student Tuition Remission: UWM provides an International Student Tuition Remission program to assist non-resident international students with tuition costs. This program helps alleviate the financial burden associated with out-of-state tuition rates, making UWM an affordable option for students seeking a high-quality education.
Panther Commitment: The Panther Commitment scholarship is part of UWM's dedication to providing financial support to students with demonstrated need. This program considers various factors, including financial need, academic achievement, and extracurricular involvement. The Panther Commitment aims to ensure that financial constraints do not hinder qualified students from pursuing their education.
Cultural Diversity Scholarship: UWM values diversity and offers the Cultural Diversity Scholarship to international students who contribute to the cultural richness of the university community. This scholarship recognizes the importance of a diverse and inclusive campus environment and supports students who enhance cultural understanding and collaboration.
Departmental Scholarships: Several academic departments at UWM offer scholarships specific to international students within their programs. These departmental scholarships may be based on academic achievements, research contributions, or specific criteria related to the field of study.
Graduates of the University of Wisconsin Milwaukee's (UWM) B.S. in Biomedical Engineering program possess a versatile skill set that opens doors to a wide range of career opportunities in the healthcare, medical device, biotechnology, and research industries. With their interdisciplinary training in engineering principles, biological sciences, and medical applications, graduates are well-equipped to pursue rewarding careers that contribute to advancements in healthcare technology and patient care.
Biomedical Engineer: One of the most common career paths for graduates is becoming a biomedical engineer. Biomedical engineers work in hospitals, research laboratories, medical device companies, and government agencies, designing and developing medical devices, equipment, and technologies to improve patient diagnosis, treatment, and quality of life. They apply engineering principles to solve complex healthcare challenges, such as designing prosthetic limbs, developing medical imaging systems, or creating artificial organs.
Medical Device Developer: Graduates can pursue careers as medical device developers, working for medical device companies to design, test, and manufacture medical devices and equipment. Medical device developers collaborate with healthcare professionals, engineers, and regulatory experts to develop innovative solutions to address unmet medical needs, improve patient outcomes, and ensure compliance with regulatory standards. They may specialize in areas such as cardiovascular devices, orthopedic implants, or diagnostic imaging systems.
Biotechnology Researcher: Some graduates choose to pursue careers in biotechnology research, working in biotechnology companies, research institutions, or pharmaceutical firms to develop new therapies, drugs, and treatments for diseases. Biotechnology researchers use their knowledge of engineering and biology to conduct experiments, analyze data, and develop biotechnological solutions for healthcare challenges such as cancer, infectious diseases, or genetic disorders. They contribute to scientific advancements in biotechnology and biomedical sciences, with the potential to improve human health and well-being.
Clinical Engineer: Clinical engineers work in hospitals, healthcare facilities, and medical device companies to manage and maintain medical equipment, ensure its safe and effective use, and provide technical support to healthcare professionals. Graduates with a B.S. in Biomedical Engineering can pursue careers as clinical engineers, conducting equipment assessments, troubleshooting technical issues, and implementing quality assurance programs to optimize patient care and safety.
Regulatory Affairs Specialist: Graduates can also pursue careers in regulatory affairs, working for regulatory agencies, medical device companies, or consulting firms to ensure compliance with government regulations and standards for medical devices and healthcare technologies. Regulatory affairs specialists review and submit regulatory documents, coordinate with regulatory authorities, and provide guidance on compliance requirements to ensure that medical devices meet safety, efficacy, and quality standards for market approval and commercialization.