Bachelor of Science Program in Industrial Physics, 2026

Degree Name

Bachelor of Science Program in Industrial Physics

หลักสูตรวิทยาศาสตรบัณฑิต สาขาวิชาฟิสิกส์อุตสาหกรรม

Programme Learning Outcomes

PLO-1

Explain fundamental knowledge related to science and mathematics.

PLO-2

Apply physics principles and theories to solve problems in electronics and scientific instrumentation.

PLO-3

Analyze data and present results accurately using statistical processes or digital technology.

PLO-4

Design experiments using instruments or laboratory techniques relevant to industrial physics.

PLO-5

Design and develop hardware and software for scientific instruments used in measurement and data acquisition.

PLO-6

Solve problems in industrial contexts through work-based practice or internships in industrial, electronics, and scientific instrumentation settings.

PLO-7

Demonstrate honesty, discipline, and responsibility in professional practice.

PLO-8

Perform work responsibly with a strong focus on achieving successful outcomes.

PLO-9

Communicate and transfer knowledge to others effectively.

PLO-10

Adapt appropriately to others and to changes across a variety of situations.

Career Opportunities Upon Graduation

  • Scientist
  • Material Scientist/Material Engineer
  • Researcher
  • Electronic Product Designer & Developer
  • Process Engineer
  • Quality Engineer
  • Optical Engineer
  • Technopreneur
Curriculum Structure

Total 98 credits

1. General Education Courses

Credits

1.1. KMITL IDENTITY SKILLS

Credits

2. Major Courses

92 Credits

2.1. Science Foundation Courses

18 Credits

2.1.1. Basic Science and Calculus Module

10 Credits

2.1.2. Physics and Laboratory Module

Credits

2.2. Required Courses

59 Credits

2.2.1. ELECTRONICS

11 Credits

2.2.2. COMPUTER PROGRAMMING AND ENGINEERING DESIGN

7 Credits

2.2.3. CLASSICAL PHYSICS FOR MODERN TECHNOLOGIES

13 Credits

2.2.4. MODERN PHYSICS FOR MODERN TECHNOLOGIES

13 Credits

2.2.5. MEASUREMENT TECHNOLOGIES AND ANALYSIS IN INDUSTRY

14 Credits

2.3. Elective Course Group (Choose 3 courses from 4 course groups)

9 Credits

2.3.1. MEASUREMENT AND INSTRUMENTATION

2.3.2. ELECTRONICS DEVICES AND MATERIALS FOR INDUSTRY

2.3.3. ELECTRO-OPTICS AND PHOTONICS

2.3.4. SEMICONDUCTOR FOR MODERN INDUSTRIES

2.4. Alternative Study Course Group (Students choose 1 program)

6 Credits

2.4.1. SPECIAL PROJECT

2.4.2. CO-OPERATIVE EDUCATION

2.4.3. OVERSEAS TRAINING

3. Free Elective Courses

6 Credits

Study Plan

CodeNameCredits(Lecture-Practice-Research)
05016201

CALCULUS 1

แคลคูลัส 1

33-0-6
05106030

GENERAL CHEMISTRY

เคมีทั่วไป

33-0-6
05106042

GENERAL CHEMISTRY LABORATORY

ปฏิบัติการเคมีทั่วไป

10-3-2
05366001

PHYSICS AND APPLICATIONS 1

ฟิสิกส์และการประยุกต์ 1

33-0-6
05366005

PHYSICS AND APPLICATIONS LABORATORY 1

ปฏิบัติการฟิสิกส์และการประยุกต์ 1

10-3-2
05366022

COMPUTER PROGRAMMING

การเขียนโปรแกรมคอมพิวเตอร์

32-2-5
05366143

ENGINEERING DRAWING

การเขียนแบบวิศวกรรม

10-3-2
90641008

INTRODUCTION TO ENGLISH COMMUNICATION SKILLS

พื้นฐานทักษะการสื่อสารภาษาอังกฤษ

00-0-45

Philosophy

To produce graduates with a solid foundation in physics and scientific process skills that meet international standards, who are able to creatively integrate and apply physics alongside other disciplines. The program adheres to the Progressivism philosophy, which places learners at the center of the educational process through hands-on practice and scientific problem-solving rather than rote memorization. Instructors play a key role in conveying relevant knowledge and meaningful experiences to learners, designing learning opportunities that encourage self-directed problem-solving in order to systematically develop analytical thinking, design skills, and physics problem-solving abilities at an industrial level. The program also fosters integrity, responsibility, and collaborative working skills, preparing graduates to adapt and succeed in a rapidly changing society and industry.

Importance

Thailand's development in science and technology continues to face a shortage of personnel with the knowledge, capability, and practical skills specifically in physics who can apply that knowledge to analyze and solve problems across various sectors, including industry, environment, architecture, medicine, and agriculture. In each of these fields, maintenance, development, and application of instruments and equipment are required for both qualitative and quantitative inspection and analysis, drawing on fundamental principles, knowledge, and specialized expertise in physics. Graduates must also be able to integrate knowledge and understanding to drive research, inventions, and creative innovations, as well as to inspect and analyze effectively in order to solve problems across diverse fields with integrity and ethical responsibility. The Industrial Physics curriculum therefore plans its educational framework to develop an up-to-date program that produces graduates aligned with labor market demands, and in accordance with the Thai Qualifications Framework for Higher Education across five learning outcome domains: ethics and moral values, knowledge, cognitive skills, interpersonal skills and responsibility, and numerical analysis, communication, and information technology skills. The program places emphasis on science and technology to align with the institution's mission and the national development plan across economic, social, and cultural dimensions — producing graduates with integrated knowledge and competencies, effective practical skills, ethical conduct, sound judgment, and a strong sense of responsibility, so as to develop them into capable personnel who serve as a solid foundation for national development.

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