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Birla Institute of Technology & Science, Pilani

General Physics

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Gain insight into a topic and learn the fundamentals.
Beginner level

Recommended experience

5 weeks to complete
at 10 hours a week
Flexible schedule
Learn at your own pace
Gain insight into a topic and learn the fundamentals.
Beginner level

Recommended experience

5 weeks to complete
at 10 hours a week
Flexible schedule
Learn at your own pace

What you'll learn

  • Master Newton's laws and apply force, energy, and momentum principles to analyze mechanical systems and predict motion in diverse scenarios.

  • Understand thermodynamic principles and laws governing energy transfer, entropy, and system behavior from microscopic to macroscopic scales.

  • Explore simple harmonic motion and wave mechanics, analyze wave propagation, properties, and behaviors across different physical systems.

  • Apply optical concepts including wave-particle duality, interference, diffraction, and polarization to understand electromagnetic phenomena.

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Recently updated!

November 2025

Assessments

122 assignments¹

AI Graded see disclaimer
Taught in English

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There are 10 modules in this course

In this module, you will learn the concept of force in physics and why forces are vectors. From Newton’s laws of motion, you will understand the concept of an inertial frame of reference and the relation between the acceleration of a system and the net force applied to it.

What's included

16 videos5 readings14 assignments

In this module, you will learn the principle of work done by a force and how it affects the energy contained in a body. You will also learn the implications of the conservation of momentum in real and simple real-life scenarios.

What's included

15 videos3 readings16 assignments

Physical systems describing periodic motion are possibly the simplest and most precise way to start exploring more complex phenomena in nature. In this module, you will learn the basic dynamics of a single degree of freedom performing a periodic motion. You will also learn how a simple damping effect can make the system more realistic.

What's included

11 videos2 readings12 assignments

Thermodynamics is about how everyday systems such as engines and refrigerators to microscopic systems of atoms work through energy transfer. In this module, you will gain a thorough understanding of how to quantify the transfer of heat and work into or out of such systems. This module will further help you develop a fundamental understanding of the basics of thermodynamics.

What's included

11 videos3 readings12 assignments

The second law of thermodynamics is a universal law that could be observed in the tiniest particles to massive black holes. In this module, you will state and understand the second law of thermodynamics. The module will also discuss the concept of entropy change and its relevance to the second law of thermodynamics.

What's included

12 videos2 readings9 assignments

In this module, the fundamentals of wave propagation will be discussed. The module will highlight different kinds of waves, their properties, and the effect of the medium on wave propagation. The exchange of energy when two waves superimpose with each other and the nature of the resulting waveform will be dealt qualitatively and quantitatively. You will also learn how to reconstruct any waveform by superposition of normal modes (Fourier theorem).

What's included

12 videos9 readings13 assignments

This module deals with a detailed overview of light as an electromagnetic wave. The module will briefly discuss the interesting conundrum of wave–particle duality and the experiments that illustrate this phenomenon. The module will also give you a brief overview of how the transverse nature of the wave leads to interesting physical phenomena and the manner in which the energy of the electromagnetic wave gets redistributed as it propagates in different media.

What's included

8 videos6 readings9 assignments

In this module, you will be introduced to the superposition of waves. The module will also describe how the interference pattern caused by the superposition of coherent waves gives rise to different optical patterns. The conditions for bright and dark fringes due to the interference effect will be discussed in detail. Experiments such as Newton’s ring will be used to illustrate the significance of path difference and phase difference in giving rise to interference patterns.

What's included

12 videos9 readings13 assignments

In this module, you will be introduced to the bending of light around the edges of an obstacle. The module will discuss the superposition of waves undergoing diffraction in detail. The module will further show experiments that produce diffraction patterns and highlight the expression for bright and dark fringes. It also illustrates how the diffraction effects are extensively used to study the structure of materials, which helps in predicting the properties.

What's included

11 videos12 readings12 assignments

In this module, you will study the transverse nature of light using the concept of electric field polarization. The module will dive deep into the changes that an electric field component of electromagnetic waves undergoes after reflection and refraction. The module will further discuss the investigation of polarization effects using polarizers and analyzers.

What's included

11 videos10 readings12 assignments

Instructor

BITS Pilani Instructors Group
Birla Institute of Technology & Science, Pilani
30 Courses41,095 learners

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¹ Some assignments in this course are AI-graded. For these assignments, your data will be used in accordance with Coursera's Privacy Notice.