B.S. in Biomedical Engineering - Bioelectronics

Milwaukee, Wisconsin

 

INTAKE: Jan & Aug

Program Overview

Marquette University's B.S. in Biomedical Engineering with a Bioelectronics specialization stands at the forefront of STEM education, offering a unique blend of engineering and biological sciences. As a STEM-designated program, it signifies a commitment to providing students with a robust foundation in science, technology, engineering, and mathematics. With ABET accreditation, the program ensures that students receive a quality education that meets rigorous standards set by the engineering profession. The curriculum is carefully designed to instill interdisciplinary skills, allowing students to merge principles of electrical engineering with the intricacies of biomedical applications. Students engage in hands-on experiences, conducting experiments and projects that bridge theory with practical implementation. Ethical considerations are woven into the fabric of the program, preparing students to navigate the complex ethical landscape of biomedical engineering. Faculty expertise, research opportunities, and industry connections further enrich the educational experience, ensuring that graduates are well-prepared for dynamic careers in the ever-evolving field of biomedical engineering, specifically in the realm of bioelectronics. The program's global perspective reflects Marquette's commitment to developing engineers who can contribute meaningfully to the broader societal and global context.

Curriculum:

  1. STEM-Designated Program: Marquette University's B.S. in Biomedical Engineering with a specialization in Bioelectronics is a STEM-designated program, offering a rigorous curriculum at the intersection of engineering, biology, and electronics.

  2. ABET Accreditation: The program holds accreditation from the Accreditation Board for Engineering and Technology (ABET), ensuring high-quality education and meeting industry standards.

  3. Interdisciplinary Approach: The curriculum adopts an interdisciplinary approach, combining principles of electrical engineering with biomedical sciences to equip students with a comprehensive skill set.

  4. Cutting-Edge Technology: Students engage with cutting-edge technologies, learning to design and implement bioelectronic devices that interface with biological systems.

  5. Hands-On Experience: The program emphasizes hands-on experience, providing students with opportunities to work on real-world projects, conduct experiments, and develop practical skills.

  6. Faculty Expertise: Students benefit from the expertise of faculty members who are leaders in the field, fostering a learning environment that encourages innovation and critical thinking.

  7. Ethical Considerations: The curriculum includes a focus on ethical considerations in biomedical engineering, preparing students to navigate complex issues related to healthcare technology.

  8. Research Opportunities: Students have access to research opportunities, contributing to advancements in bioelectronics through projects and collaboration with faculty.

  9. Industry Connections: Marquette's strong ties with industry facilitate internships, co-op programs, and networking opportunities, enhancing students' exposure to the professional landscape.

  10. Global Perspective: The program promotes a global perspective, encouraging students to consider the international impact of bioelectronics and fostering a sense of responsibility in a diverse and interconnected world.

Pollster Education

Location

Milwaukee, Wisconsin

Pollster Education

Score

IELTS: 6.5

Pollster Education

Tuition Fee

USD 42000

Entry Requirements For Undergraduate Programs

1. Completed Application: Students must submit all required documentation, including high school transcripts, SAT or ACT scores, and recommendation letters,Course by Course transcript evaluation required.

2. Academic Qualifications: The minimum requirement for admission is a high school diploma or equivalent. Marquette University also considers the student's academic performance in high school, including grades and the rigor of their coursework. A minimum GPA: 3.0 is required.

3. English Language Proficiency: International students must demonstrate English language proficiency through standardized tests like TOEFL overall score of 80, IELTS overall 6.5.

Marquette University offers several scholarships and financial aid options to support international students in pursuing their education. These scholarships are designed to recognize academic achievement, leadership potential, and diverse backgrounds. 

  1. International Merit Scholarships: Marquette University offers merit-based scholarships to outstanding international students. These scholarships are awarded based on academic excellence and range from partial to full tuition coverage. Eligible students are automatically considered for these scholarships upon admission.

  2. Ignatius Scholarship Program: The Ignatius Scholarship Program is a highly competitive scholarship opportunity for incoming freshmen. It recognizes students who have demonstrated exceptional leadership skills, service to others, and academic achievement. The scholarship provides financial assistance and access to a range of enrichment programs.

  3. Talent-based Scholarships: Marquette University offers talent-based scholarships for students with exceptional skills in areas such as music, theater, and visual arts. These scholarships are awarded through auditions, portfolio reviews, or other talent-based evaluations.

  4. Departmental Scholarships: Various academic departments at Marquette University offer scholarships to students within their respective fields of study. These scholarships recognize academic excellence and provide financial assistance to support students' educational pursuits.

  5. International Student Work Opportunities: Marquette University provides international students with opportunities for on-campus employment. These part-time jobs allow students to gain valuable work experience, earn income to cover expenses, and contribute to their personal and professional development.

  6. External Scholarships and Sponsorships: Marquette University encourages international students to explore external scholarship opportunities and sponsorships. There are several organizations, foundations, and government programs that offer scholarships specifically for international students studying in the USA. The university's International Student Services office can provide guidance and resources to assist students in identifying and applying for such scholarships.

It's important to note that scholarship availability, criteria, and application deadlines may vary each year.

The B.S. in Biomedical Engineering with a specialization in Bioelectronics at Marquette University prepares students for dynamic careers at the intersection of engineering and healthcare. This program, rooted in a strong STEM foundation and accredited by ABET, reflects Marquette's commitment to providing students with a robust education that combines theory, hands-on experience, and ethical considerations.

  1. Biomedical Engineer: Graduates can work as biomedical engineers, designing and developing medical devices and technologies to improve patient care.

  2. Medical Device Researcher: Opportunities exist in medical device research, where graduates contribute to the innovation of cutting-edge technologies in healthcare.

  3. Clinical Engineer: Graduates may pursue roles as clinical engineers, working in healthcare settings to manage and maintain medical equipment.

  4. Biocompatible Materials Engineer: Careers involve developing materials compatible with the human body for use in medical devices and implants.

  5. Neuroengineering Specialist: Opportunities exist in neuroengineering, focusing on developing technologies to interface with the nervous system.

  6. Medical Imaging Engineer: Graduates can contribute to medical imaging advancements, working on technologies such as MRI, CT scans, and ultrasound.

  7. Healthcare Technology Consultant: Careers involve consulting on healthcare technology, helping organizations adopt and implement new biomedical solutions.

  8. Regulatory Affairs Specialist: Graduates may work in regulatory affairs, ensuring that biomedical devices comply with industry regulations and standards.

  9. Rehabilitation Engineer: Opportunities exist in rehabilitation engineering, designing devices and systems to assist individuals with disabilities.

  10. Entrepreneur in Biomedical Technology: Graduates can start their ventures, driving innovation and entrepreneurship in the biomedical technology sector.


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