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6 Days Study Plan: Oscillations | Physics Class 11 - NEET PDF Download

Let's explore the Class 11 Physics chapter called "Oscillations" and understand its importance for the NEET exam. By studying the past years NEET questions (from 2016 to 2024), we can see that this chapter is crucial in the exam. If you want to score well in NEET, you need to grasp the concepts in this chapter.

Chapter Overview


The chapter on "Oscillations" covers a range of topics, including:

  1. Simple Harmonic Motion
  2. Waves
  3. Pendulum
  4. Damped & Forced Oscillations
  5. Periodic & Oscillatory Motion
  6. Velocity & Acceleration in Simple Harmonic Motion
  7. Force Law for Simple Harmonic Motion
  8. Energy in Simple Harmonic Motion
  9. Some Systems Executing Simple Harmonic Motion
  10. Simple Harmonic Motion & Uniform Circular Motion

Day 1: Simple Harmonic Motion, Waves

  • Start with the NCERT Physics Class 11 textbook for "Simple Harmonic Motion" and "Waves."
  • Understand the basic concepts, formulas, and graphical representations.
  • Practice questions from the textbook.
  • Explore the NEET Exam importance of these topics.

Day 2: Pendulum, Damped & Forced Oscillations

Day 3: Periodic & Oscillatory Motion, Velocity & Acceleration in SHM

Day 4: Force Law for SHM, Energy in SHM

Day 5: Some Systems Executing SHM, SHM & Uniform Circular Motion

Day 6: Revision

Tips and Tricks

  • To remember important topics like "Hooke's Law," visualize a spring being stretched or compressed. This mental image can help you recall the formula.
  • For "Periodic & Oscillatory Motion," remember that periodic motion repeats itself over time, while oscillatory motion involves back-and-forth movement.
  • When studying "Velocity & Acceleration in SHM," think of a swinging pendulum or a vibrating spring for a practical understanding.

Additional Resources on EduRev

By following this well-structured study plan and utilizing EduRev's resources, you can master the chapter on "Oscillations" and excel in your NEET exam.

Here are all the important links and topic links for the chapter on "Oscillations" at the end:
Important Links:

By using these links, you can access specific topics and resources related to the chapter on "Oscillations" in Class 11 Physics. Good luck with your studies and exam preparation!

The document 6 Days Study Plan: Oscillations | Physics Class 11 - NEET is a part of the NEET Course Physics Class 11.
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FAQs on 6 Days Study Plan: Oscillations - Physics Class 11 - NEET

1. What is simple harmonic motion (SHM)?
Ans. Simple harmonic motion (SHM) is a type of oscillatory motion in which the displacement of an object from its equilibrium position is directly proportional to the restoring force acting on it and is always directed towards the equilibrium position.
2. What are the characteristics of waves?
Ans. Waves have several characteristics: they can be described by their amplitude (maximum displacement from equilibrium), wavelength (distance between two adjacent points in phase), frequency (number of complete cycles per unit time), and speed (rate at which a wave propagates through a medium).
3. How does damping affect oscillations?
Ans. Damping refers to the decrease in the amplitude of oscillations over time due to the dissipation of energy. It can affect oscillations by reducing the amplitude, increasing the time period, and causing the oscillations to eventually come to rest.
4. What is the force law for simple harmonic motion?
Ans. The force law for simple harmonic motion states that the restoring force acting on an object is directly proportional to its displacement from the equilibrium position and is always directed towards the equilibrium position. This force is given by the equation F = -kx, where F is the restoring force, k is the spring constant, and x is the displacement.
5. How is energy related to simple harmonic motion?
Ans. In simple harmonic motion, the total mechanical energy of the system is conserved. The energy is divided between potential energy (stored in the spring or pendulum) and kinetic energy (associated with the motion of the object). As the object oscillates, the energy constantly interchanges between potential and kinetic forms, but the total remains constant.
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