M.S. in Accounting
The Master of Science in Accounting (M.S.A.) program at The University of Memphis is de...
Memphis, Tennessee
INTAKE: Jan, May & Aug
The Bachelor of Science in Computer Engineering at The University of Memphis is designed to provide students with a robust foundation in both computer science and electrical engineering principles. This interdisciplinary program equips students with the knowledge and skills necessary to design, develop, and implement computer systems and hardware. Graduates are prepared to meet the demands of a rapidly evolving technology landscape, making them highly sought after in various industries, including software development, hardware engineering, and information technology.
STEM-Designated: The B.S. in Computer Engineering is recognized as a STEM-designated program, reflecting its emphasis on science, technology, engineering, and mathematics. This designation allows international students to benefit from extended optional practical training (OPT) opportunities, giving them additional time to gain work experience in the United States after graduation. The STEM focus also ensures that students engage in rigorous coursework and projects that prepare them for technical challenges in their careers.
Curriculum: The curriculum for the B.S. in Computer Engineering combines theoretical coursework with hands-on experiences. Students complete core courses in computer architecture, digital systems design, algorithms, and software engineering, along with advanced topics such as embedded systems and networking. The program also emphasizes laboratory work and projects that encourage collaboration and problem-solving, enabling students to apply their knowledge to real-world challenges.
Research Focus: Research is a vital component of the B.S. in Computer Engineering program. Students have the opportunity to engage in cutting-edge research alongside faculty members in areas such as cybersecurity, machine learning, embedded systems, and robotics. This involvement not only enhances students' understanding of complex engineering problems but also fosters critical thinking and innovation. The university's commitment to research prepares students for both advanced studies and careers in research-oriented positions.
Industry Engagement: The University of Memphis prioritizes industry engagement through partnerships with local businesses and technology companies. Students benefit from internship opportunities, networking events, and industry-sponsored projects that allow them to gain practical experience and establish professional connections. This engagement ensures that graduates are well-prepared to meet industry standards and expectations, enhancing their employability and career prospects.
Global Perspective: The B.S. in Computer Engineering program embraces a global perspective by encouraging students to explore international technological trends and practices. The curriculum includes opportunities for study abroad programs and participation in global engineering projects, allowing students to gain insights into diverse cultures and approaches to technology. This global outlook equips graduates to work effectively in multicultural teams and adapt to various work environments.
Memphis, Tennessee
IELTS 6
USD 19824
Undergraduate Entry Requirements
Application Fee: $50
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 65% or above in their previous academic qualifications.
English Language Proficiency:
The University of Memphis is fostering diversity and inclusivity within its student body. The university offers a range of scholarships specifically designed to support international students in their academic pursuits.
International Merit Scholarships: The University of Memphis provides International Merit Scholarships to outstanding students from around the world. These scholarships are awarded based on academic excellence, leadership qualities, and extracurricular achievements. Recipients of this scholarship are recognized for their exceptional contributions to the university community.
Global Ambassador Scholarships: The Global Ambassador Scholarships are aimed at students who demonstrate a strong promoting cultural diversity and global understanding. Recipients of this scholarship actively engage in initiatives that enhance cross-cultural exchange within the university and the broader community.
Cultural Diversity Scholarships: The university values the enrichment brought about by students from diverse cultural backgrounds. The Cultural Diversity Scholarships aim to support students who contribute to the university's cultural tapestry. These scholarships consider factors such as nationality, ethnicity, and cultural achievements.
Academic Excellence Awards: Recognizing the importance of academic achievement, the University of Memphis offers Academic Excellence Awards to international students who have demonstrated outstanding performance in their academic endeavors. These awards may cover tuition and other educational expenses.
Destination Memphis Scholarships: The Destination Memphis Scholarships are designed to attract high-achieving students to the University of Memphis. These scholarships may cover a portion of tuition costs and are awarded based on a holistic assessment of a student's achievements.
The B.S. in Computer Engineering program at The University of Memphis prepares students for these diverse career paths by providing a solid foundation in both software and hardware engineering, critical thinking, and problem-solving skills, making them valuable assets in the rapidly evolving tech industry.
Software Engineer: Graduates can work as software engineers, developing applications and systems software for various platforms. This role often involves designing, coding, testing, and debugging software applications to meet user needs.
Hardware Engineer: Many computer engineering graduates find roles as hardware engineers, where they design and test computer hardware components such as circuit boards, processors, and memory devices. This role requires a strong understanding of electronics and computer architecture.
Systems Architect: Graduates may take on the role of systems architect, responsible for designing complex systems that integrate hardware and software solutions. This position involves assessing user needs and ensuring the system meets those requirements effectively.
Network Engineer: As network engineers, graduates design, implement, and manage computer networks, ensuring data security and efficient communication between devices. This role often includes troubleshooting network issues and optimizing performance.
Embedded Systems Engineer: Many graduates specialize in embedded systems, working on the design and development of embedded software and hardware for devices such as medical instruments, automotive systems, and consumer electronics.
Data Scientist: With a focus on data analysis and algorithms, graduates can pursue careers as data scientists, leveraging their computer engineering skills to analyze large datasets, derive insights, and support decision-making processes within organizations.
Cybersecurity Analyst: Graduates can become cybersecurity analysts, responsible for protecting an organization’s computer systems and networks from cyber threats. This role involves implementing security measures, conducting risk assessments, and responding to security incidents.
IT Consultant: As IT consultants, graduates provide expert advice to businesses on technology solutions, helping them to optimize their IT infrastructure, improve processes, and implement new technologies.
Technical Project Manager: Graduates can also pursue roles as technical project managers, overseeing technology projects from conception to completion, ensuring they are delivered on time and within budget while meeting quality standards.
Research and Development Engineer: Some graduates opt for careers in research and development, working on innovative projects in technology and engineering, contributing to advancements in fields like artificial intelligence, robotics, and nanotechnology.