B.S. in Electrical and Computer Engineering

West Haven, Connecticut

 

INTAKE: Jan & Aug

Program Overview

The Bachelor of Science (B.S.) in Electrical and Computer Engineering at the University of New Haven offers a comprehensive education in both electrical engineering and computer science principles. This interdisciplinary program is designed to prepare students for a wide range of careers in technology and engineering by integrating coursework in electronics, computer systems, and software development. The program focuses on equipping students with the skills needed to design, develop, and maintain electrical and computing systems, making them adept at tackling complex engineering challenges.

STEM-Designated: The B.S. in Electrical and Computer Engineering is classified as a STEM (Science, Technology, Engineering, and Mathematics) program. This designation underscores the program's focus on providing students with essential technical and analytical skills necessary for solving advanced problems in engineering and technology. It highlights the program’s commitment to fostering expertise in scientific and technological disciplines.

ABET Accredited: The B.S. in Electrical and Computer Engineering at the University of New Haven is accredited by the Accreditation Board for Engineering and Technology (ABET). ABET accreditation ensures that the program meets high standards of quality and effectiveness in engineering education. This accreditation is a mark of excellence, indicating that the program adequately prepares students for professional practice and adheres to rigorous academic and industry standards.

Curriculum: The curriculum for the B.S. in Electrical and Computer Engineering blends core courses in electrical engineering and computer science. Key courses include circuit analysis, digital systems, microprocessors, signal processing, and software engineering. Students also engage in hands-on laboratory work and design projects that integrate theoretical knowledge with practical application. The program offers elective courses allowing students to specialize in areas such as robotics, telecommunications, and embedded systems.

Research Focus: Research is a significant component of the B.S. in Electrical and Computer Engineering program. Students have the opportunity to participate in cutting-edge research projects that explore various aspects of electrical and computer engineering, including artificial intelligence, renewable energy systems, and advanced electronics. The university's research facilities and faculty expertise support a range of research initiatives, enabling students to contribute to innovative solutions and advancements in the field.

Industry Engagement: The University of New Haven emphasizes strong industry engagement through internships, co-op programs, and partnerships with leading technology and engineering firms. These experiences provide students with valuable practical exposure, allowing them to apply their knowledge to real-world projects and gain insights into industry practices. The program's connections with industry professionals also help students build a professional network that enhances their career opportunities.

Global Perspective: The B.S. in Electrical and Computer Engineering incorporates a global perspective by preparing students to address international engineering challenges. The curriculum includes topics related to global technology trends, international standards, and cross-cultural collaboration. Students may also have opportunities to participate in study abroad programs or international research projects, gaining a broader understanding of global engineering issues and practices.

Pollster Education

Location

West Haven, Connecticut

Pollster Education

Score

IELTS 6

Pollster Education

Tuition Fee

USD 47332

Undergraduate Entry Requirements

Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 75% or above in their previous academic qualifications.

English Language Proficiency:

  • IELTS: Overall band score of 6.0 with a minimum of 6.0 in each component.
  • TOEFL: Overall score of 75 or higher.
  • PTE: Overall score of 53 or higher.
  • DET (Duolingo English Test): Overall score of 100.

To make education more accessible and affordable, the university offers a variety of scholarships specifically designed for international students.

International Student Scholarships: The University of New Haven offers merit-based scholarships to international students based on their academic achievements. These scholarships are awarded to students who have demonstrated outstanding academic performance and potential. The scholarship amount can vary and is usually applied towards tuition fees.

Presidential Scholarships: This is a highly competitive scholarship for both undergraduate and graduate international students. It recognizes academic excellence, leadership skills, and community involvement. Presidential Scholarships cover a significant portion of tuition costs and may include additional benefits.

Dean's Scholarships: Dean's Scholarships are awarded to international students who have achieved a high level of academic excellence. These scholarships contribute to reducing the tuition burden and encouraging students to excel in their studies.

Transfer Scholarships: International transfer students may also be eligible for scholarships based on their previous academic achievements. These scholarships recognize the hard work of transfer students and support their successful transition to the University of New Haven.

Athletic Scholarships: For international students with exceptional athletic abilities, the university offers athletic scholarships based on talent and participation in specific sports. These scholarships contribute to tuition and may include other benefits for student-athletes.

Talent Scholarships: The university recognizes talents beyond academics and sports. Students with talents in areas such as the arts, music, and other creative fields may be eligible for talent scholarships.

Application-Based Scholarships: Some scholarships are awarded based on the content and quality of the student's application for admission. Demonstrated passion, leadership, and unique experiences can enhance the chances of receiving these scholarships.

International Ambassador Scholarships: This scholarship is for students who are actively involved in promoting cultural exchange and international awareness on campus. It rewards students who contribute to fostering a global community within the university.

Graduates of the Bachelor of Science (B.S.) in Electrical and Computer Engineering from the University of New Haven are well-equipped to pursue a variety of career paths in both electrical engineering and computer science. The interdisciplinary nature of the program provides students with a broad skill set applicable to numerous industries. 

Electrical Engineer: Electrical engineers design, develop, and maintain electrical systems and equipment. They work on projects related to power generation and distribution, electronics, and control systems. Their role often involves troubleshooting electrical issues and ensuring compliance with safety standards.

Computer Hardware Engineer: Computer hardware engineers focus on the design and development of physical components of computers and related devices. They work on creating and improving hardware such as processors, circuit boards, and memory devices, ensuring optimal performance and reliability.

Software Engineer: Software engineers design and develop software applications and systems. They work on coding, testing, and debugging software for various platforms, including desktop, mobile, and web applications. They may also be involved in software architecture and system integration.

Embedded Systems Engineer: Embedded systems engineers design and implement embedded systems—specialized computing systems within larger mechanical or electrical systems. They work on applications such as automotive electronics, consumer electronics, and industrial automation.

Network Engineer: Network engineers design, implement, and manage network infrastructures. They work on configuring and maintaining network hardware, ensuring network security, and troubleshooting connectivity issues. Their role is crucial for maintaining efficient and secure communication systems.

Control Systems Engineer: Control systems engineers work on designing and optimizing systems that manage and control machinery and processes. They work in industries such as manufacturing, aerospace, and robotics, ensuring that systems operate efficiently and reliably.

Robotics Engineer: Robotics engineers design and develop robots and automated systems used in various applications, including manufacturing, healthcare, and exploration. They work on integrating hardware and software to create functional and intelligent robotic systems.

Telecommunications Engineer: Telecommunications engineers work on designing and managing communication systems, including telephone networks, satellite communications, and internet infrastructure. They focus on ensuring reliable and high-quality communication services.

Systems Analyst: Systems analysts evaluate and improve computer systems within organizations. They work on understanding business requirements, designing system solutions, and ensuring that IT systems meet organizational needs and enhance operational efficiency.

Data Scientist: Data scientists analyze complex data sets to extract actionable insights. They use statistical techniques, machine learning algorithms, and data visualization tools to inform decision-making and solve complex problems across various industries.

Product Development Engineer: Product development engineers work on designing, developing, and testing new products. They collaborate with cross-functional teams to bring innovative products to market, ensuring that they meet technical specifications and customer requirements.

Automation Engineer: Automation engineers focus on developing and implementing automated systems and processes. They work on creating systems that increase efficiency and reduce human intervention in manufacturing and industrial settings.


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