Oscillations and Waves Study Materials 2020 – Download Physics Study Books PDF

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Download Oscillations and Waves Study Materials 2020. In this article, we are going to provide the Study Notes for School of Sciences. These study books will be more useful for Science Students. The basic topics in this subject are Coupled Oscillations, Forced Oscillations, Superposition of Waves, Wave Motion, etc. Download Unit PDF files, Important Questions, Chapters & Topics by the links provided below on our Exams Time.

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Oscillations and Waves Study Materials - Download Physics Study Notes PDF

Oscillations and Waves  Study Materials

Name of the Subject Oscillations and Waves 
Category School of Sciences
Useful for Bachelor of Science (Physics) 
Course Type Under Graduation Courses
Article on Study Materials 2020
Study Material Format PDF
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Waves and Oscillations Study Books

Subject  Download Links 
Oscillations – Waves Download 
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Chapters & Topics in Oscillations and Waves

Oscillations 

Waves 

Subject in the Universities

This subject will be useful to the students who are pursuing a Bachelor of Science in Physics. The following university students can also download Oscillations and Waves study materials :

  • IGNOU
  • Uttarakhand Open University
  • University of Calicut
  • Lovely Professional University
  • IIT Kharagpur

Subject in the Semesters

Oscillations and Waves subject will be studied by the students in the following semesters of their respective courses :

  • Bachelor of Science (Physics) I Year

Unit wise PDFs – Oscillations and Waves

Download Unit wise PDFs of Oscillations and Waves subject :

Units  Download Links 
Oscillations Download
Waves Click Here

Important Questions

We have mentioned some of the important questions of Oscillations and Waves subject :

  • Describe the effect of coupling on the oscillations of individual oscillators?
  • Establish the equation of’ motion of a coupled system executing longitudinal oscillation?
  • Define normal modes and analyze the motion of two coupled oscillators in terms of normal nodes.
  • Derive the wave equation.
  • Establish the differential equation of a system driven by a harmonic force and solve it.
  • Establish the differential equation for an LCR circuit under the influence of harmonic emf and write its solution by drawing an analogy with a mechanical system.
  • Establish the differential equation for a damped harmonic oscillator and solve it.
  • Highlight differences between weakly damped, critically damped and overdamped systems?
  • State the principle of superposition?
  • Define the terms amplitude, phase and time period?
  • State the basic criteria for the simple harmonic motion of a system?
  • Establish the differential equation for a system executing SHM and solve it.
  • Give examples of coherent sources?
  • Describe the principle of superposition of waves.
  • Explain the ideas underlying the formation of stationary waves.
  • Identify the positions of nodes and antinodes on a stationary wave.
  • List the characteristics of stationary waves.
  • Describe the formation of wave groups.
  • Compute the value of group velocity knowing the dependence of wave velocity on wavelength.
  • Calculate the number of beats produced if the frequencies of two superposing notes are known.
  • Define a wavefront.
  • Explain the reflection and refraction of waves using Huygens’ construction.
  • Compute the reflection and transmission amplitude coefficients.
  • Compute reflection and transmission energy coefficients.
  • Compute the apparent frequency of sound when the source and/or the observer (listener) are in motion.
  • Define wave motion and state its characteristics.
  • Distinguish between longitudinal and transverse waves.
  • Write two and three-dimensional wave equations.

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