Home
Class 11
PHYSICS
The surface density (mass/area) of a cir...

The surface density (mass/area) of a circular disc of radius a depends on the distance from the centre as `rho(r)=A+Br.` Find its mment of inertia about the line perpendicular to the plane of the disc through its centre.

Text Solution

Verified by Experts

The correct Answer is:
A, B, D

The surface density of a circular disc of radius a depends upon the distance from the centre as P(r)=A+Br.
Therefore the mass of the ring of radius r will be
`theta=(a+Br)xx2pirxxdr`

Therefore moment of inertila about the centre
`=int_a^0(A+Br)2pir.drxxr^2`
`=aint_a^02piAr^3 dr+int_a^0 2pi Br^4dr`
`=[2piA(r^4/4)+2piB(r^5/5)]_a^0`
`=2pi((Aa^4)/4+(Ba^5)/5)`
Promotional Banner

Similar Questions

Explore conceptually related problems

The moment of inertia of a uniform semicircular disc of mass M and radius r about a line perpendicular to the plane of the disc through the centre is ………..

The diagram shows a uniform disc of mass M & radius ' a ', if the moment of inertia of the disc about the axis XY is I , its moment of inertia about an axis through O and perpendicular to the plane of the disc is

Find the moment of inertia of ring about an axis passing through the centre and perpendicular to its plane.

From a disc of radius R and mass M, a circular hole of diameter R, whose rim passes through the centre is cut. What is the moment of inertia of the remaining part of the disc about at perpendicular axis passing through the centre?

From a circular disc of radius R , a triangular portion is cut (see figure). The distance of the centre of mass of the remainder from the centre of the disc is -

A uniform equilateral triangular lamina of side a has mass m. Its moment of inertia about the axis passing through the centroid and perpendicular to the plane of the lamina is :-

The moment of inertia of a solid sphere with a density rho and radius R about its diameter is

A uniform equilateral triangular lamina of side a has mass m. Its moment of inertia about the axis passing through the centroid and prependicular to the plane of the lamina is :-

A circular disc of radius r and mass m rotates about the axis passing through the centre and perpendicular to its plane. What will if rotational kinetic energy?

A semicircular lamina of mass m and radius r and centre C . Its center of mass is at a distance x from C . Its moment of inertia about an axis through its center of mass and perpendicular to its plane is: