Embibe Experts Solutions for Chapter: Simple Harmonic Motion, Exercise 8: Exercise (Analytical Questions)

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Simple Harmonic Motion, Exercise 8: Exercise (Analytical Questions)

Attempt the practice questions on Chapter 19: Simple Harmonic Motion, Exercise 8: Exercise (Analytical Questions) with hints and solutions to strengthen your understanding. Beta Question Bank for Medical: Physics solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Simple Harmonic Motion, Exercise 8: Exercise (Analytical Questions) with Hints & Solutions

MEDIUM
NEET
IMPORTANT

The time period of a particle is 8 s. At t=0, it is at the mean position. The ratio of distance covered by the particle in 1st second and 2nd second will be:

EASY
NEET
IMPORTANT

A man of mass 60 kg standing on a platform executing S.H.M. in the vertical plane. The displacement from the mean position varies as y=0.5 sin 2πft. The value of f, for which the man will feel weightlessness at the highest point is (y is in metres)

MEDIUM
NEET
IMPORTANT

A point mass oscillates along the x-axis according to the law, x=x0cosωtπ4. If the acceleration of the particle is written as, a=Acos(ωt+δ), then,

EASY
NEET
IMPORTANT

The total energy of a harmonic oscillator of mass 2 kg is 9 joules. If its potential energy at mean position is 5 joules, its K.E.. at the mean position will be:

MEDIUM
NEET
IMPORTANT

A horizontal spring is connected to a mass M. It executes simple harmonic motion. When the mass M passes through its mean position, an object of mass m is put on it and the two move together. The ratio of frequencies before and after will be:

MEDIUM
NEET
IMPORTANT

The period of oscillation of a simple pendulum of length L suspended from the roof of a vehicle which moves without friction down an inclined plane of inclination α is given by

MEDIUM
NEET
IMPORTANT

A simple pendulum has time period T1. The point of suspension is now moved upward according to the relation y=kt2,k=1 m s-2 where y is the vertical displacement. The time period now becomes T2. The ratio of T12T22 is g=10 m s-2

EASY
NEET
IMPORTANT

Two waves Y1=asinωt and Y2=asinωt+δ are producing interference. Then, the resultant intensity is,