Bachelor's Degree in Electrical and Computer Engineering
A four-year Bachelor's Degree in Electrical and Computer Engineering in the US teaches fundamentals of electrical systems and computing, preparing students for engineering roles in various industries.
About
This Bachelor's Degree in Electrical and Computer Engineering is a four-year undergraduate program in the United States. It is designed for students interested in understanding and designing electrical systems and computer technologies. The degree prepares graduates for technical roles in engineering fields related to electronics, computing, and telecommunications.
- The program covers both electrical engineering and computer engineering principles.
- It is suited for students who enjoy math, physics, and problem-solving.
- Graduates can work as engineers in industries such as electronics, software, and hardware development.
- The degree also provides a foundation for further studies in engineering or technology fields.
- Students develop skills in designing circuits, programming, and system integration.
What you study
The curriculum spans four years, progressively building knowledge from basic concepts to advanced engineering applications. Early years focus on foundational subjects, while later years emphasize specialized topics and practical work.
- Students begin with mathematics, physics, and introductory programming.
- Intermediate courses cover circuit analysis, digital systems, and microprocessors.
- Advanced topics include control systems, signal processing, and embedded systems.
- Laboratory sessions and projects provide hands-on experience with real equipment and software.
- Team projects often simulate real engineering challenges to develop problem-solving and collaboration skills.
How to get in
Admission to this Bachelor's program typically requires a high school diploma or equivalent with a strong background in math and science. The US higher education system involves an application process through individual universities.
- Applicants must submit transcripts showing proficiency in mathematics and science.
- Standardized test scores like the SAT or ACT may be required by some universities.
- Letters of recommendation and personal statements are often part of the application.
- Universities look for students with analytical skills and interest in engineering.
- Some programs may have selective admission based on academic records.
Day to day
The academic year is divided into semesters, combining lectures, labs, and project work. Students spend time both in classrooms and engineering labs.
- Typical weeks include lectures, laboratory sessions, and group projects.
- Many programs encourage internships during summer breaks to gain industry experience.
- Students often work on design projects that require applying theoretical knowledge.
- Collaborative work is common, simulating professional engineering environments.
- While formal alternance (work-study) is less common, cooperative education programs may be available at some schools.
Continuing your studies
After completing the Bachelor's degree, students can continue their education or enter the workforce. Graduate studies allow for specialization or research opportunities.
- Many pursue a Master's degree in electrical engineering, computer engineering, or related fields.
- Some may choose professional certifications or technical training.
- Graduate studies can open paths to research, teaching, or advanced engineering roles.
- Others may explore interdisciplinary fields like robotics or data science.
Where to study this degree (42)
Liste des 42 établissements
- University of Michigan-Ann ArborAnn Arbor
- Portland State UniversityPortland
- The University of Texas at AustinAustin
- Rochester Institute of TechnologyRochester
- Brigham Young UniversityProvo
- University of Missouri-Kansas CityKansas City
- University of Southern CaliforniaLos Angeles
- Binghamton UniversityBinghamton
- University of Colorado BoulderBoulder
- Rice UniversityHouston
- Western Washington UniversityBellingham
- Wichita State UniversityWichita
- University at AlbanyAlbany
- University of Wisconsin–StoutMenomonie
- Baylor UniversityWaco
- United States Air Force AcademyUSAF Academy
- Southern Illinois University EdwardsvilleEdwardsville
- Michigan Technological UniversityHoughton
- SUNY Polytechnic InstituteUtica
- California Baptist UniversityRiverside
- State University of New York at OswegoOswego
- Eastern Michigan UniversityYpsilanti
- University of Alabama at BirminghamBirmingham
- Vanderbilt UniversityNashville
- Villanova UniversityVillanova
- University of Detroit MercyDetroit
- Kennesaw State UniversityKennesaw
- Boise State UniversityBoise
- Fairfield UniversityFairfield
- Northern Arizona UniversityFlagstaff
- Miami University-OxfordOxford
- University of New HavenWest Haven
- Rowan UniversityGlassboro
- University of KansasLawrence
- The University of Texas at El PasoEl Paso
- Morgan State UniversityBaltimore
- University of Washington TacomaTacoma
- Southern Methodist UniversityDallas
- Kent State University at KentKent
- SUNY New PaltzNew Paltz
- University of Washington-Seattle CampusSeattle
- Lewis UniversityRomeoville
Frequently asked questions
What are the main subjects studied in this degree?
Students study mathematics, physics, programming, circuit analysis, digital systems, and control systems, with practical labs and projects throughout the four years.
Is prior experience in programming required to apply?
While not always required, having some programming knowledge can be helpful. The program usually starts with introductory programming courses.
Can I work while studying this degree?
Many students take internships during summer breaks. Formal work-study programs are less common but some universities offer cooperative education options.
What kinds of jobs can I get after graduation?
Graduates can work as electrical engineers, computer engineers, software developers, or systems engineers in industries like electronics, IT, and telecommunications.
Is this degree suitable for students interested in both hardware and software?
Yes, the degree covers both electrical hardware concepts and computer software, preparing students for roles involving integrated systems.
What are the admission requirements for this program?
Applicants need a high school diploma with strong math and science background. Some universities require standardized test scores and application essays.
Can I continue my studies after this Bachelor's degree?
Yes, many graduates pursue Master's degrees in related fields to specialize further or engage in research.
Is the program more theoretical or practical?
The program balances theory with practical labs and projects to develop both understanding and hands-on skills.

















