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The City College of New York, CCNY

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New York

United States

The Master of Science in Biomedical Engineering at The City College of New York, CCNY, is designed for aspiring professionals who seek to make a difference in the healthcare industry through innovative engineering solutions. This cutting-edge program offers a comprehensive curriculum that encompasses various facets of biomedical engineering, including the application of engineering principles to the fields of biology and medicine. Students in this program will explore a robust set of courses that integrate engineering techniques with biological sciences to address complex health-related challenges. With a duration of 18 months, students will engage in both theoretical and practical components, ensuring they graduate with a thorough understanding of the discipline.

The curriculum is structured to provide students with a strong foundation in essential biomedical engineering areas. Core courses include Biomechanics, Biomaterials, Medical Imaging, and Biomedical Signal Processing. These courses are specifically designed to equip students with the knowledge and skills required to develop innovative medical devices, diagnostic tools, and therapeutic techniques. Additionally, elective courses allow students to tailor their education according to their interests and career goals, focusing on specialized areas such as Tissue Engineering, Neural Engineering, and Rehabilitation Engineering. This flexibility enhances the learning experience and prepares graduates for a wide range of career paths in the biomedical field.

The faculty at The City College of New York, CCNY, comprises distinguished experts in biomedical engineering and related fields. With a rich background in academia and industry, faculty members employ innovative teaching methodologies that foster a collaborative learning environment. Students benefit from smaller class sizes that promote personalized attention and mentorship opportunities. Faculty members actively engage students in research projects, further enriching their educational experience and providing insights into real-world applications of their studies. This mentorship is a cornerstone of the program, guiding students toward becoming independent researchers capable of contributing significantly to the field.

Research opportunities are abundant within the Master of Science in Biomedical Engineering program. CCNY is home to several state-of-the-art research facilities, including laboratories equipped with advanced technologies for prototyping, testing, and analysis. Students are encouraged to participate in ongoing research projects led by faculty, which often leads to collaboration with industry partners. These partnerships not only enhance the research experience but also provide valuable networking opportunities that can lead to internships and job placements upon graduation. Students will have the chance to engage in groundbreaking research that tackles pressing health issues, allowing them to contribute to advancements in medical technology and patient care.

Career pathways for graduates of this program are diverse and expansive. Biomedical engineering professionals are in high demand across various sectors, including healthcare, pharmaceuticals, medical devices, and academia. Graduates can pursue roles such as Biomedical Engineer, Clinical Engineer, Research Scientist, and Product Development Engineer. The high employability rate of graduates from CCNY's program is attributed to the strong industry connections established by the university, as well as the practical experiences gained through internships and research projects. Alumni from the program have gone on to work with leading companies in the biomedical field, showcasing the program's effectiveness in preparing students for successful careers.

Furthermore, CCNY takes pride in the success stories of its alumni. Many graduates have made significant contributions to the biomedical engineering field, with some starting their own companies focused on innovative health solutions. Testimonials from alumni highlight their preparedness for the workforce and the invaluable skills they acquired during their studies. They often cite the program's rigorous academic environment, supportive faculty, and hands-on research experiences as key factors that contributed to their success. This network of accomplished alumni serves as a testament to the quality of education offered at CCNY.

One of the unique features of the Master of Science in Biomedical Engineering program at The City College of New York, CCNY, is its commitment to fostering a diverse and inclusive community. With an international student diversity rate of 20%, this program attracts students from various cultural backgrounds, enriching the learning experience by promoting different perspectives and ideas. The program is designed to create a supportive environment where students can collaborate, share knowledge, and develop friendships that extend beyond their academic journey.

Another distinctive aspect of the program is its emphasis on real-world applications and problem-solving. Students are encouraged to work on projects that address actual challenges faced by the healthcare industry, allowing them to develop innovative solutions that have the potential to improve patient outcomes. This project-based approach not only enhances learning but also prepares students for the dynamic nature of the biomedical engineering field.

In terms of prerequisites, applicants to the Master of Science in Biomedical Engineering program should possess a background in engineering, biology, or a related discipline. Additionally, proficiency in English is required, as demonstrated by standardized tests such as IELTS, PTE, or TOEFL. The program also requires a completed application alongside a fee of $75, with potential application deadlines to be confirmed upon inquiry.

Why Study Biomedical Engineering at The City College of New York? Here are some compelling reasons:

  • A world-class curriculum that integrates theory and practical application, preparing students for real-world challenges in the biomedical field.
  • Access to state-of-the-art research facilities and high-end laboratories that facilitate innovative research and development.
  • Expert faculty with extensive industry experience who are dedicated to mentoring students and fostering their research capabilities.
  • Strong industry connections that lead to internship and job placement opportunities with leading biomedical companies.
  • A vibrant and diverse student community that encourages collaboration and networking, enhancing the educational experience.
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Duration

18 Months

Ranking

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#151

US World and News Report

Class Profile

Diversity

New Jersey:

15%

Florida:

5%

New York:

40%

California:

10%

Others:

26%

Illinois:

4%

Eligibility Criteria

English Proficiency Tests

  • IELTS

    6.5

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  • PTE

    53

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  • TOEFL

    79

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Application Requirements

Here's everything you need to know to ensure a complete and competitive application—covering the key documents and criteria for a successful submission.

intake

Application Fee: 75

      Application Deadlines

      Fees and Funding

      intake

      Tuition Fees

      $18,900 / year

      FAQs

      • Admissions Requirements

        To apply for the Master of Science in Biomedical Engineering program at The City College of New York, applicants should meet the following requirements:

        • Possess a background in engineering, biology, or a related discipline.
        • Demonstrate proficiency in English through standardized tests such as IELTS, PTE, or TOEFL.
        • Submit a completed application along with a non-refundable application fee of $75.

        Potential application deadlines can be confirmed upon inquiry.

      • Program Structure

        The Master of Science in Biomedical Engineering program has a duration of 18 months and offers a comprehensive curriculum that includes:

        1. Core Courses: These include Biomechanics, Biomaterials, Medical Imaging, and Biomedical Signal Processing, providing a strong foundation in essential biomedical engineering areas.
        2. Elective Courses: Students can tailor their education by selecting electives in specialized areas such as Tissue Engineering, Neural Engineering, and Rehabilitation Engineering.

        This structure ensures that students gain both theoretical knowledge and practical skills, preparing them for diverse career paths in the biomedical field.

      • Career Prospects

        Graduates of the Master of Science in Biomedical Engineering program have diverse and expansive career pathways available, including roles such as:

        • Biomedical Engineer
        • Clinical Engineer
        • Research Scientist
        • Product Development Engineer

        The high demand for biomedical engineering professionals spans various sectors, including healthcare, pharmaceuticals, medical devices, and academia. The program's strong industry connections, combined with practical experiences gained through internships and research projects, contribute to a high employability rate among graduates.

      • Teaching Methods

        The faculty at The City College of New York utilizes innovative teaching methodologies that foster a collaborative learning environment. Key features include:

        • Smaller class sizes that promote personalized attention and mentorship opportunities.
        • Active engagement of faculty members in student research projects, enriching the educational experience.
        • A focus on both theoretical concepts and practical applications, allowing students to develop skills relevant to real-world scenarios.

        This approach not only enhances learning but also prepares students for independent research and significant contributions to the field.

      • Unique Aspects of the Program

        Several unique features distinguish the Master of Science in Biomedical Engineering program at CCNY:

        • Diversity and Inclusion: The program boasts an international student diversity rate of 20%, creating a rich learning environment with diverse perspectives.
        • Real-World Applications: Students are encouraged to undertake projects that address actual challenges in the healthcare industry, fostering innovative problem-solving.
        • Research Opportunities: Access to state-of-the-art research facilities and collaboration with industry partners enhances the research experience.

        These elements contribute to a supportive, dynamic, and engaging educational journey.

      • Curriculum Highlights

        The curriculum of the Master of Science in Biomedical Engineering program includes several highlights:

        • A comprehensive blend of core courses like Biomechanics, Biomaterials, Medical Imaging, and Biomedical Signal Processing.
        • Elective courses that allow students to focus on specialized areas such as Tissue Engineering, Neural Engineering, and Rehabilitation Engineering.
        • A strong emphasis on practical application through research projects and real-world problem-solving.

        This robust educational framework prepares students for successful careers in the biomedical engineering field.

      • Research Opportunities

        Students in the Master of Science in Biomedical Engineering program have access to a wealth of research opportunities:

        • Participation in ongoing research projects led by faculty members.
        • Access to state-of-the-art research facilities and advanced technologies for prototyping, testing, and analysis.
        • Collaboration with industry partners, which enhances the research experience and provides valuable networking opportunities.

        Engaging in groundbreaking research allows students to tackle pressing health issues and contribute to advancements in medical technology and patient care.

      • Student Networking and Collaboration

        The Master of Science in Biomedical Engineering program fosters a collaborative and supportive environment that enhances student networking in several ways:

        • A vibrant and diverse student community that encourages collaboration and knowledge sharing.
        • Mentorship opportunities with faculty members who have extensive industry experience.
        • Participation in research projects that often involve collaboration with industry partners.

        These elements create a strong network of peers and professionals, facilitating connections that extend beyond the academic journey.

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