Physics

On Campus Short Course Academic
Tembusu Institute offers Physics tuition in Singapore for A Level, JC, and university preparation. Build strong scientific knowledge, practical skills, and data analysis abilities. Learn efficient and safe lab practices, develop scientific communication, and foster a passion for science and environmental responsibility.
Overview

This module will enable students to acquire knowledge and understanding and develop practical skills, including efficient, accurate and safe scientific practices, learn to apply the scientific method, while developing an awareness of the limitations of scientific theories and models, develop skills in data analysis, evaluation and drawing conclusions, cultivating attitudes relevant to science such as objectivity, integrity, enquiry, initiative and inventiveness, develop effective scientific communication skills, using appropriate terminology and scientific conventions, understand their responsibility to others/society and to care for the environment, and enjoy science and develop an informed interest in the subject that may lead to further study.

The Details

  • FOR SKILLSFUTURE CLAIMS

    Registered Title: (Physics )

    TPGateway Code:

  • total hours

    265:00

  • Mode of Learning

    On Campus

Curriculum

Course Duration

SSG Approved Training & Assessments Hours:265:00 Trainer Facilitated Hours (On Campus/Virtual):254:00 Self-Directed E-learning Hours:00:00 Assessment Hours:11:00
Learning Outcomes
  • Understand physical principles and apply them in mathematical contexts. 
  • Conduct and evaluate scientific investigations. 
  • Solve conceptual and numerical problems in mechanics and electromagnetism. 
Course Topics
  1. Physical Quantities, Kinematics, and Dynamics
    Learning Outcome: Understand physical quantities, units, and motion concepts; apply Newton’s Laws to dynamic
  2. Work, Energy, and Power
    Learning Outcome: Analyze energy transformations; solve problems on mechanical work, energy, and power.
  3. Oscillations, Waves, and Superposition
    Learning Outcome: Describe properties of waves, apply principles of superposition, resonance, and simple harmonic motion.
  4. Electric Fields and DC Circuits
    Learning Outcome: Apply concepts of electric fields, potential difference, resistance, and Ohm's law in circuits.
  5. Electromagnetic Spectrum and Modern Physics
    Learning Outcome: Interpret electromagnetic wave behavior; understand the photoelectric effect and quantum models.
  6. Quantum Physics, Nuclear Physics, and Thermodynamics
    Learning Outcome: Explain heat transfer, specific heat capacity, and nuclear processes including fission and radioactivity.
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