Overview This program provides an entry-level pathway into the principles of software engineering, system design, and computational theory. Combining core academic preparation with practical computing disciplines, the curriculum establishes a solid grounding in higher-level mathematics, programming logic, and algorithmic problem-solving. Studying at the University of Exeter equips students with the quantitative literacy, technical confidence, and analytical skills necessary to progress into specialized undergraduate computer science studies.
What You'll Learn
Key principles of foundation-level academic writing, mathematical reasoning, and logical problem-solving.
Fundamental mathematical concepts, including advanced algebra, calculus, and coordinate geometry.
Core principles of computer programming, algorithm design, and software implementation.
Introductory probability, statistical modeling, and data representation techniques.
Basic concepts of discrete mathematics, computer logic, and systems architecture.
Learning Outcomes By completing this foundational course, students will be able to apply essential mathematical and logical frameworks to analyze quantitative problems and write functional computer code. Graduates will demonstrate a clear understanding of basic algorithmic design, data handling, and computational logic. Furthermore, students will cultivate the analytical reasoning, technical communication, and practical skills required to transition smoothly into degree-level computer science modules.

University of Exeter