Georgia Southern University

USA
1 Scholarships 97 Programs 3 Degree levels
Bachelor

Bachelor's in Computer Engineering

DegreeBachelor
FieldComputer Engineering.
D

Cost & earnings at Georgia Southern University What students borrow here, and what they go on to earn

You borrow $23,250 median federal debt
You repay $264/mo over 10 years
Graduates earn $53,236 10 yrs after entry
Debt clears in 1.7 yrs of the salary premium
US Department of Education figures See the full breakdown →
B

Computer Engineering Technology graduates earn a median $57,409 Across 75 US programmes, two years after finishing

See the degree grade →

The Bachelor of Science in Computer Engineering at Georgia Southern University is an undergraduate programme that combines electrical engineering fundamentals with computer science principles to prepare students to design and build hardware and embedded systems. It suits students who enjoy mathematics, physics and programming and who want a hands-on engineering education leading to careers in hardware design, firmware development and systems integration.

What you'll study

The Computer Engineering curriculum blends circuit theory, digital systems, software and systems engineering to give students a broad foundation in both hardware and software. Early years focus on core mathematics, physics and basic computing; later years emphasise digital logic, microprocessors, embedded systems, computer architecture and communications.

  • Core technical subjects: calculus, differential equations, linear algebra, physics for engineers.
  • Foundations of computing: programming (typically C/C++ and higher-level languages), data structures and discrete mathematics.
  • Electrical and electronic fundamentals: circuits, electronics, signals and systems.
  • Computer engineering topics: digital logic design, microprocessor/microcontroller systems, embedded systems, computer architecture, hardware description languages (e.g. VHDL/Verilog) and interfacing.
  • Communications and control: networking fundamentals, communications principles and introductory control systems.
  • Design and laboratory work: hands-on labs in electronics, digital design and embedded platforms, PCB prototyping and firmware development.
  • Capstone project: a senior design sequence where students work in teams to plan, design, implement and present a complete hardware/software system.
  • General education and professional skills: technical writing, ethics, project management and elective choices that allow specialisation in areas such as robotics, cybersecurity, IoT or signal processing.

Entry requirements

Admission typically requires a high school diploma with a strong background in mathematics (including precalculus or calculus) and science (usually physics). Competitive applicants present good grades in college-preparatory courses, satisfactory standardized test scores where used, and evidence of interest in STEM activities. Transfer students must meet university transfer policies and provide transcripts from previous postsecondary institutions.

Typical departmental expectations include:

  • A strong performance in high-school mathematics (calculus recommended) and physics.
  • Preparation in computer programming is beneficial but not always required; foundational programming courses are offered early in the programme.
  • For transfers, completion of introductory calculus and physics courses and a demonstrated GPA consistent with engineering admissions standards.
  • International applicants must meet the university's English language proficiency requirements and provide credential evaluation as required.

Career prospects

Graduates with a BSc in Computer Engineering are prepared for roles that bridge hardware and software. Typical entry-level positions include embedded systems engineer, firmware developer, hardware design engineer, test and validation engineer, systems integrator and networked device developer. Employers range from consumer electronics and telecommunications companies to automotive suppliers, defence contractors, medical device manufacturers and software firms.

Many graduates also pursue graduate study in electrical and computer engineering, computer science or related disciplines, or obtain industry certifications in areas such as embedded development, FPGA design, cybersecurity or networking. Internship and co-op experiences during the degree significantly improve employability and career progression.

Why study at Georgia Southern University

Georgia Southern offers a hands-on engineering education within its engineering college, emphasising laboratory experience, team design projects and practical problem solving. Students benefit from small-to-medium class sizes, access to dedicated electronics and computing labs, and a capstone design sequence that connects theory to real-world applications.

The university maintains relationships with regional industry and encourages internships, undergraduate research and community-based projects that help students build professional networks. Located on the Statesboro campus with supportive student services and career resources, the programme aims to prepare graduates ready for technical careers or further study.

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Programme details are indicative and may change — always verify current information with the official university website before applying.