Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
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Chapter 11, Problem 84GP
To determine

To Calculate: The maximum possible amplitude of the oscillations.

Expert Solution & Answer
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Answer to Problem 84GP

The maximum possible amplitude of the oscillations is 0.14m when block with mass m is not slip off on the block with mass M.

Explanation of Solution

Given info:

The mass of the first block is, M=5.0kg and the mass of the second block is, m=1.25kg

The spring constant is, k=130Nm

The static friction coefficient is 0.30.

Formula used:

The acceleration in the simple harmonic motion is given as

  amax=ω2A

Where, the angular frequency is ω with the amplitude A.

The angular frequency is given as,

  ω=kmtotalω2=kmtotal

Where, k is the spring constant and mtotal is the total mass

Calculation:

Due to the static friction, the block with mass m is stayed on the block with mass M without slipping. So, they are executing the simple harmonic motion with respect to the ground. So, a maximum static frictional force is exerted on the mass ‘m’which is given as,

  Ffricmax=μsmg

The mass m block gets accelerated due to the frictional force.

  mamax=μsmgamax=μsg

But according to the simple harmonic oscillations, the acceleration is given as,

  amax=ω2A=kmtotalA

Now, by comparing these two expressions of the acceleration with each other, the results equation is

  amax=kmtotalA=μsg

From this equation, here the amplitude of the wave is determined in such a way that,

  A=μsgmtotalk=μsg(M+m)k=(0.30)×(9.80ms2)×(5.0kg+1.25kg)130NmA=0.14m

Conclusion:

The amplitude is 0.14m .

Chapter 11 Solutions

Physics: Principles with Applications

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