Kyrgyz National Technical University

Bachelor of Science in Theoretical Physics

Bachelor of Science in Theoretical Physics provides systematic undergraduate preparation in Theoretical Physics. This field studies mathematical representations of physical laws, theoretical models, and scientific reasoning methods that support engineering science and basic research.

Bachelor of Science in Theoretical Physics

Bachelor of Science in Theoretical Physics

Bachelor of Science in Theoretical Physics provides systematic undergraduate preparation in Theoretical Physics. This field studies mathematical representations of physical laws, theoretical models, and scientific reasoning methods that support engineering science and basic research.

LevelBachelor's Degree (4 Years)
Program FieldTheoretical Physics
Award TitleBachelor of Science in Theoretical Physics

Program Positioning

The bachelor's program provides full undergraduate preparation with emphasis on professional theory, laboratory practice, integrated design, and standard communication. This field studies mathematical representations of physical laws, theoretical models, and scientific reasoning methods that support engineering science and basic research.

Classical Physics Foundations

Study mechanics, electromagnetism, thermodynamics, waves, and other foundational theories.

Mathematical Physics Methods

Develop methods in differential equations, linear algebra, complex variables, and physical modeling.

Modern Physics

Understand foundational topics in quantum theory, statistical physics, relativity, and condensed matter.

Research Training

Practice literature reading, theoretical derivation, model analysis, and academic communication.

Learning Objectives

Build rigorous foundations in physical theory and mathematical analysis.
Use models to explain natural phenomena and engineering problems.
Develop research discipline and logical reasoning.

Study and Completion Requirements

  1. Complete general education, major core courses, electives, and practical learning components.
  2. Develop applied capability through course design, laboratory work, case analysis, or engineering projects.
  3. Complete a capstone design, thesis, or equivalent integrated academic and practical outcome.

Learning Outcomes

Theoretical modeling and mathematical derivation
Physical problem analysis
Research reading and academic communication