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University of New Hampshire

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New Hampshire

United States

The MEng in Electrical and Computer Engineering at the University of New Hampshire is designed to provide students with comprehensive knowledge and practical skills in the dynamic fields of electrical and computer engineering. This program equips students with a robust foundation in both theoretical principles and real-world applications, preparing them for various challenges in this ever-evolving discipline. With a curriculum that blends advanced engineering theories with hands-on experience, students will find themselves not only gaining technical proficiency but also honing their critical thinking and problem-solving skills. The program covers a wide array of topics, including embedded systems, digital signal processing, and advanced communication networks, ensuring that graduates are well-rounded and ready to tackle modern engineering problems.
The program curriculum is thoughtfully structured to include core courses that lay the groundwork for advanced study, coupled with elective options that allow students to tailor their educational experience to their specific interests. Core courses such as Microelectronics, Control Systems, and Digital Signal Processing provide essential knowledge and skills, while electives in areas like Machine Learning, Wireless Communications, and Cybersecurity enable students to explore innovative technologies and methodologies. This unique blend of structured learning and personalized exploration ensures that graduates leave the program not only with a deep understanding of electrical and computer engineering but also with the expertise needed to lead and innovate within the industry.
Faculty expertise is a cornerstone of the MEng in Electrical and Computer Engineering program. The faculty consists of distinguished experts with extensive experience in both academia and industry, providing students with unparalleled insights into current research trends and technological advancements. They employ a teaching methodology that emphasizes interactive learning, encouraging students to engage in discussions, collaborative projects, and hands-on activities. As a result, students not only absorb theoretical knowledge but also develop practical skills that are essential in today’s job market. Faculty members are approachable and supportive, often serving as mentors who guide students through their academic and research journeys.
At the University of New Hampshire, students are presented with numerous research opportunities and resources that enhance their learning experience. The university boasts state-of-the-art laboratories equipped with cutting-edge technology, allowing students to engage in groundbreaking research alongside faculty members. Research areas range from renewable energy systems to artificial intelligence applications, providing students with the chance to contribute to innovative projects that have real-world implications. Additionally, students are encouraged to participate in conferences and workshops, fostering their professional development and expanding their academic network.
Industry connections and internship possibilities are integral to the MEng in Electrical and Computer Engineering program. The University of New Hampshire has established relationships with numerous companies and organizations, providing students with access to internship opportunities that are crucial for gaining practical experience. These internships often lead to full-time job offers upon graduation, thanks to the high demand for skilled engineers in the workforce. Students have the chance to work with leading firms, applying their academic knowledge to real-world challenges, and making valuable industry connections that will benefit their careers.
Upon completion of the program, graduates find themselves well-positioned for a variety of career pathways in sectors such as telecommunications, robotics, aerospace, and information technology. The skills acquired during the program are highly sought after, resulting in excellent job outcomes. Alumni have successfully secured positions in reputable companies, contributing to innovative projects and leading teams in cutting-edge engineering solutions. Testimonials from former students highlight the program's effectiveness in preparing them for their professional careers and the positive impact it has had on their lives.
The MEng in Electrical and Computer Engineering is not just about academic excellence; it also offers unique features that distinguish it from similar programs. The emphasis on collaborative projects, interdisciplinary learning, and community engagement sets this program apart. Students have opportunities to work on industry-sponsored projects, allowing them to address real-world problems while gaining invaluable experience. Additionally, the diverse student community fosters a rich learning environment where students from various backgrounds share ideas and perspectives, enhancing their educational experience.
Why Study MEng in Electrical and Computer Engineering at University of New Hampshire?

  • A rigorous curriculum that balances theory and practical application, preparing students for the demands of the engineering workforce.
  • Access to state-of-the-art laboratories and cutting-edge technology, fostering an environment of innovation and discovery.
  • Experienced faculty with significant industry and research expertise, providing mentorship and guidance throughout the program.
  • Strong industry connections leading to valuable internship opportunities and job placements after graduation.
  • A diverse and inclusive student community that enriches the learning experience through shared knowledge and perspectives.

The MEng in Electrical and Computer Engineering at the University of New Hampshire requires applicants to meet specific prerequisites, ensuring that all students are well-prepared for the rigorous academic environment. Applicants should hold a bachelor's degree in Electrical Engineering, Computer Engineering, or a closely related field. Additionally, proficiency in English is a must, with requirements such as a minimum score of 80 on the TOEFL or 6.5 on the IELTS. The application process includes a fee of $65, and prospective students are encouraged to review any additional entry requirements.
Overall, the MEng in Electrical and Computer Engineering at the University of New Hampshire stands out as an exceptional choice for students seeking to advance their careers in this vital and evolving field. With its comprehensive curriculum, dedicated faculty, extensive research opportunities, and strong industry ties, this program prepares graduates to be leaders in electrical and computer engineering, ready to tackle the challenges of tomorrow.
intake

Duration

12 Months

Ranking

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#587

US World and News Report

Class Profile

Diversity

International:

10%

Others:

5%

New Hampshire:

60%

Massachusetts:

20%

Vermont:

10%

Eligibility Criteria

English Proficiency Tests

  • IELTS

    6.5

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  • PTE

    59

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  • TOEFL

    80

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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: 65

      Application Deadlines

      Fees and Funding

      intake

      Tuition Fees

      $41,100 / year

      FAQs

      • The MEng in Electrical and Computer Engineering at the University of New Hampshire has specific prerequisites to ensure that students are prepared for the academic rigor of the program. Applicants must:

        • Hold a bachelor's degree in Electrical Engineering, Computer Engineering, or a closely related field.
        • Demonstrate proficiency in English, with a minimum score of 80 on the TOEFL or 6.5 on the IELTS.

        Additionally, there is an application fee of $65, and prospective students should review any further entry requirements prior to applying.

      • The MEng program is thoughtfully structured to include core courses that provide foundational knowledge, complemented by elective options that allow students to tailor their educational experience. Core courses include:

        • Microelectronics
        • Control Systems
        • Digital Signal Processing

        Students can also choose electives in innovative areas such as:

        • Machine Learning
        • Wireless Communications
        • Cybersecurity

        This combination of core and elective coursework ensures that graduates not only understand key engineering principles but also have the opportunity to explore their specific interests within the field.

      • Graduates of the MEng in Electrical and Computer Engineering program are well-positioned for a variety of career pathways across multiple sectors, including:

        • Telecommunications
        • Robotics
        • Aerospace
        • Information Technology

        The skills and knowledge acquired during the program are highly sought after, leading to excellent job outcomes. Alumni have successfully secured positions in reputable companies and have made significant contributions to innovative projects. Testimonials from former students frequently highlight the program's effectiveness in preparing them for their professional careers.

      • The faculty in the MEng in Electrical and Computer Engineering program utilize a teaching methodology that emphasizes interactive learning. This includes:

        • Encouraging discussions and collaborative projects.
        • Incorporating hands-on activities to reinforce theoretical knowledge.

        This approach not only helps students absorb complex concepts but also enables them to develop practical skills that are essential in today’s job market. Faculty members are also approachable and supportive, often serving as mentors to guide students through their academic and research journeys.

      • The MEng in Electrical and Computer Engineering program at the University of New Hampshire distinguishes itself in several ways:

        • Emphasis on collaborative projects and interdisciplinary learning.
        • Opportunities for students to work on industry-sponsored projects, addressing real-world problems.
        • A diverse and inclusive student community that enriches the learning experience through shared knowledge and perspectives.

        These features not only enhance the educational experience but also prepare students for the collaborative nature of modern engineering challenges.

      • Students in the MEng in Electrical and Computer Engineering program have access to numerous research opportunities and resources, which significantly enhance their learning experience. Key aspects include:

        • State-of-the-art laboratories equipped with cutting-edge technology.
        • Research areas including renewable energy systems and artificial intelligence applications.
        • Encouragement to participate in conferences and workshops to foster professional development.

        This environment allows students to engage in groundbreaking research alongside faculty members, contributing to projects with real-world implications.

      • The MEng in Electrical and Computer Engineering program places a strong emphasis on industry connections and internship possibilities. The University of New Hampshire has established relationships with numerous companies and organizations, allowing students to:

        • Access valuable internship opportunities that are crucial for gaining practical experience.
        • Work with leading firms, applying academic knowledge to real-world challenges.
        • Make valuable industry connections that can benefit their careers.

        These internships often lead to full-time job offers after graduation, reflecting the high demand for skilled engineers in the workforce.

      • The MEng in Electrical and Computer Engineering program is designed to not only impart technical knowledge but also to enhance students' critical thinking and problem-solving skills through:

        • A curriculum that blends advanced engineering theories with hands-on experience.
        • Interactive learning methods that encourage engagement in discussions and collaborative projects.
        • Real-world applications of theoretical concepts in both coursework and research opportunities.

        This holistic approach ensures that graduates are well-rounded and equipped to tackle modern engineering problems effectively.

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