Pre-University Physics

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Pre-University Physics: Prepare for your technical studies by reviewing the fundamentals of physics. Become familiar with the way physics and physics-related topics are taught at the university level.

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Physics is the foundation of many important science and engineering disciplines. Understanding its basics is fundamental for advanced studies. In this course, you will have the chance to review the fundamentals either for your own interest, or to ensure you have a smooth start in the first year of your Bachelor’s degree.

The course aims to close the readiness gap between high school and university. It was specifically developed for potential future students: it covers physics topics that are a prerequisite for many engineering programs, but will also show you how these topics are applied in the various follow-up studies (For example in Applied Physics, Aerospace Engineering, Mechanical Engineering or Electrical Engineering). The course not only covers the content needed for further study but also introduces the different ways in which physics is presented at university level to ensure an easy entry to a new degree program.

This course is intended for:

  1. Prospective engineering students who want to refresh their physics knowledge before starting university
  2. High school students who would like an additional challenge in physics not offered by their school
  3. Engineering students already enrolled in university realize that they have a gap in their physics knowledge
  4. Other people who are interested in university-level physics

On completion of the course, participants will:

  1. have a basic understanding of the following physics topics: mechanics, electricity and magnetism, and waves.
  2. be able to apply this knowledge in various engineering contexts.
  3. be introduced to the academic approach to physics.
  4. be introduced to the academic approach to physics.
    In particular, the successful participant will be able to:
    1) solve physics problems in an algebraic way without specifying numerical values,
    2) provide order-of-magnitude estimations without using calculation aids,
    3) apply basic differential and integral calculus to physics problems,
    4) work with vectors at a conceptual (non-quantitative) level.

Module 1: Mechanics

  • Force and Motion
  • Multiple Forces
  • Work
  • Energy
  • Circular Motion

Module 2: Electricity and Magnetism

  • Electric Force and Field
  • Electric Potential and Electric Energy
  • Electrical Circuits
  • Magnetic Fields
  • Capacitors

Module 3: Waves

  • Introduction to waves
  • Harmonic motion
  • Coupled oscillations
  • Travelling waves
  • Standing waves
Pre-University Physics

DISCLAIMER: Courses on Future Syllabus are free but subject to return to their original prices on host platforms upon coupon expiration. Enrol while they are free. To report any error, use the "Further Actions" tab.

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