An elastic string is stretched and fastened at both ends at a distance r apart. Motion is started by displacing the string into the form y=2(sin.x-sin³ x) and released from rest. Find the equation of motion of the string at distance x from one end at Tension time t sec. Given that, Mass per unit length of the string

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter3: Oscillations
Section: Chapter Questions
Problem 3.9P: A particle of mass m is at rest at the end of a spring (force constant = k) hanging from a fixed...
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an elastic string is streched and fastened at both ends at a distance pi apart. motion is statrted by displacing the string into the form y=2(sinx-sin^3x) and released from rest. find the equation of motion of the string at distance x from one end at time t se. given that, tension/mass per unit of the string=1

(4.3) An elastic string is stretched and fastened at both ends at a
distance r apart. Motion is started by displacing the string into
the form y= 2(sinx-sin x) and released from rest. Find the
equation of motion of the string at distance x from one end at
Tension
time t sec. Given that,
=1
Mass per unit length of the string
Transcribed Image Text:(4.3) An elastic string is stretched and fastened at both ends at a distance r apart. Motion is started by displacing the string into the form y= 2(sinx-sin x) and released from rest. Find the equation of motion of the string at distance x from one end at Tension time t sec. Given that, =1 Mass per unit length of the string
(4.3) An elastic string is stretched and fastened at both ends at a
distance r apart. Motion is started by displacing the string into
the form y= 2(sinx-sin x) and released from rest. Find the
equation of motion of the string at distance x from one end at
Tension
time t sec. Given that,
=1
Mass per unit length of the string
Transcribed Image Text:(4.3) An elastic string is stretched and fastened at both ends at a distance r apart. Motion is started by displacing the string into the form y= 2(sinx-sin x) and released from rest. Find the equation of motion of the string at distance x from one end at Tension time t sec. Given that, =1 Mass per unit length of the string
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