Let I be the moment of inertia of a uniform square plate about an axis AB that passes through its centre and is parallel to two of its sides. CD is a line in the plane of the plate that passes through the centre of the plate and makes an angle 0 with AB. The moment of inertia of the plate about the axis CD is then equal to (a) I (c) I cos² 0 2 (b) I sin² 0 (d) I cos² (0/2)
Let I be the moment of inertia of a uniform square plate about an axis AB that passes through its centre and is parallel to two of its sides. CD is a line in the plane of the plate that passes through the centre of the plate and makes an angle 0 with AB. The moment of inertia of the plate about the axis CD is then equal to (a) I (c) I cos² 0 2 (b) I sin² 0 (d) I cos² (0/2)
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![Let I be the moment of inertia of a uniform square plate about
an axis AB that passes through its centre and is parallel to two
of its sides. CD is a line in the plane of the plate that passes
through the centre of the plate and makes an angle 0 with AB.
The moment of inertia of the plate about the axis CD is then
equal to
(a) I
(c) I cos² 0
2
(b) I sin ²0
(d) I cos² (0/2)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9c3f23ce-d14f-4917-aca6-1709efecd8b2%2F008932a2-9d22-45b3-964d-9385a8b6d748%2Fsbotixq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Let I be the moment of inertia of a uniform square plate about
an axis AB that passes through its centre and is parallel to two
of its sides. CD is a line in the plane of the plate that passes
through the centre of the plate and makes an angle 0 with AB.
The moment of inertia of the plate about the axis CD is then
equal to
(a) I
(c) I cos² 0
2
(b) I sin ²0
(d) I cos² (0/2)
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