Home
Class 11
PHYSICS
The displacement of a particle is repre...

The displacement of a particle is represented by the equation `y=sin^(3)omegat.` The motion is

A

Non-periodic

B

Periodic but not simple harmonic

C

Simple harmonic with period `2pi//omega`

D

Simple harmonic with period `pi//omega`

Text Solution

Verified by Experts

The correct Answer is:
B

Given equatio of motion is
`[because sin 3theta=3sintheta-4sin^(3)theta]" "therefore sin^(3) theta=((3sintheta-sin3theta)/(4))]`
`y=sin^(3)omegat implies (3sinomegat-4sin3omegat)//4`
`[sin^(3)omegat=(3sinomegat-sin3omegat)/(4)]`
`=(dy)/(dt)=[(d)/(dt)(3sinomegat)-(d)/(dt)(sin3omegat)]//4`
`implies 4(dy)/(dt)=3omega cos omegat-[3omegacos 3 omegat]`
`implies 4xx(d^(2)y)/(dt^(2))=-3omega^(2)sinomegat+99omega^(2)sin3omegat`
`implies (d^(2)y)/(dt^(2))=-(3omega^(2)sinomegat+9omega^(2)sin3omegat)/(4)`
`implies (d^(2)y)/(dt^(2))` is not proportional to y.
Hence, motion is not SHM.
As the expression is involving sine function, hence it w be periodic.
Promotional Banner

Similar Questions

Explore conceptually related problems

The displacement of a particle is repersented by the equation y=sin^(3)omegat . The motion is

The displacemtn of a particle is represented by the equation y=3cos((pi)/(4)-2omegat). The motion of the particle is

The displacement of a particle is repersented by the equation y=3cos((pi)/(4)-2omegat) . The motion of the particle is (b) (c) (d)

The displacement of a represnted by the equation y = sin^(2) omega t the motion is

The displacement of a particle is represented by the equation y=0.4{"cos"^(2)((pi t)/(2))-"sin"^(2)((pit)/(2))} metre The motion of the particle is

The displacement of two particles executing SHM are represented by equations, y_(1)=2 sin (10 t + theta), y_(2)=3 cos 10 t . The phase difference between the velocity of these particles is

The displacement of a progressive wave is represented by y = A sin (omegat - kx), where x is distance and t is time. Write the dimensional formula of (i) omega and (ii) k.

The equation of the displacement of two particles making SHM are represented by y_(1) = a sin (omegat +phi) & y_(2) - a cos (omegat) . Phase difference between velocities of two particles is

The diplacement of a particle varies with time according to the relation y=a"sin"omegat+b " cos"omegat .

The displacement of a particle is given by x = cos^(2) omegat. The motion is