[course_title] is a first-semester course in the basic principles of physics for them who do not intend to major in either engineering or the physical sciences. It is an introduction to the phenomena, concepts, and theories of classical and modern physics, including Newtonian mechanics, kinematics, dynamics, momentum, energy, and heat energy. The course demands a mathematical knowledge of algebra and trigonometry.
This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.
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Course Credit: Open Culture
|1. Course Introduction and Newtonian Mechanics||01:13:00|
|2. Vectors in Multiple Dimensions||01:07:00|
|3. Newton’s Laws of Motion||01:08:00|
|4. Newton’s Laws (cont.) and Inclined Planes||01:07:00|
|5. Work-Energy Theorem and Law of Conservation of Energy||01:10:00|
|6. Law of Conservation of Energy in Higher Dimensions||01:11:00|
|7. Kepler’s Laws||01:12:00|
|8. Dynamics of Multiple-Body System and Law of||01:12:00|
|9. Rotations, Part I: Dynamics of Rigid Bodies||01:14:00|
|10. Rotations, Part II: Parallel Axis Theorem||01:15:00|
|12. Introduction to Relativity||01:11:00|
|13. Lorentz Transformation||01:08:00|
|14. Introduction to the Four-Vector||01:12:00|
|15. Four-Vector in Relativity||01:12:00|
|16. The Taylor Series and Other Mathematical Concepts||01:13:00|
|17. Simple Harmonic Motion||01:14:00|
|18. Simple Harmonic Motion (cont.) and Introduction to Waves||01:15:00|
|20. Fluid Dynamics and Statics and Bernoulli’s Equation||01:12:00|
|22. The Boltzmann Constant and First Law of Thermodynamics||01:15:00|
|23. The Second Law of Thermodynamics and Carnot’s Engine||01:11:00|
|24. The Second Law of Thermodynamics (cont.) and Entropy||01:12:00|
|Submit Your Assignment||00:00:00|
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