Home
Class 11
PHYSICS
The moment of inertia of a thin square p...

The moment of inertia of a thin square plate `ABCD` of uniform thickness about an axis passing through the centre `O` and perpendicular to the plane of the plate is

`(a) I_(1)+I_(2)`, `(b) I_(2)+I_(4)`
`2I_(1)+I_(3)`, (d) `I_(1)+2I_(3)`

Promotional Banner

Similar Questions

Explore conceptually related problems

The moment of inertia of a thin square plate ABCD of uniform thickness about an axis passing through the centre O and perpendicular to plate is

The moment of inertia of a thin square plate ABCD of uniform thickness about an axis passing through its center and perpendicular to its plane will

The moment of inertia of thin square plate ABCD of uniform thickness about an axis passing through the center O and perpendicular to the plane of the plate is ( i ) I_(1)+I_(2) ( ii ) I_(2)+I_(4) ( iii ) I_(1)+I_(3) ( iv ) I_(1)+I_(2)+I_(3)+I_(4) where I_(1) , I_(2) , I_(3) and I_(4) are repectively moments of inertia about axes 1 , 2 , 3 and 4 which are in the plane of the plane

The moment of inertia of a thin square plate ABCD, fig, of uniform thickness about an axis passing through the centre O and perpendicular to the plane of the plate is where l_1, l_2, l_3 and l_4 are respectively the moments of intertial about axis 1,2,3 and 4 which are in the plane of the plate.

The moment of inertia of a thin square plate ABCD, fig, of uniform thickness about an axis passing through the centre O and perpendicular to the plane of the plate is where l_1, l_2, l_3 and l_4 are respectively the moments of intertial about axis 1,2,3 and 4 which are in the plane of the plate.

Consider a uniform square plate shown in the figure. I_(1), I_(2), I_(3) and I_(4) are moment of inertia of the plate about the axes 1, 2, 3 and 4 respectively. Axes 1 and 2 are diagonals and 3 and 4 are lines passing through centre parallel to sides of the square. The moment of inertia of the plate about an axis passing through centre and perpendicular to the plane of the figure is equal to which of the followings. (a) I_(3) + I_(4) (b) I_(1) + I_(3) (c) I_(2) + I_(3) (d) (1)/(2) (I_(1) + I_(2) + I_(3) + I_(4))

Moment of inertia of a uniform ring about its diameter is I. Then its moment of inertia about axis passing through its centre and perpendicular to its plane is