M is the mass and L is length of the rod). The rod is bent in the middle
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The moment of inertia of a rod about an axis through its centre and perpendicular to it, is 1/12 ML^2 (where, M is the mass and L is length of the rod). The rod is bent in the middle, so that two halves make an angle of 30^∘. The moment of inertia of the bent rod about the same axis would be
30
Oct
The moment of inertia of a rod about an axis through its centre and perpendicular to it, is 1/12 ML^2 (where, M is the mass and L is length of the rod). The rod is bent in the middle, so that two halves make an angle of 30^∘. The moment of inertia of the bent [...]
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is 1/12 ML^2 (where ,
M is the mass and L is length of the rod). The rod is bent in the middle ,
so that two halves make an angle of 30^∘. The moment of inertia of the bent rod about the same axis would be ,
The moment of inertia of a rod about an axis through its centre and perpendicular to it ,
The moment of inertia of a rod about an axis through its centre and perpendicular to it, is 1/2 ML^2 (where, M is the mass and L is length of the rod). The rod is bent in the middle, so that two halves make an angle of 60^∘. The moment of inertia of the bent rod about the same axis would be
17
Oct
The moment of inertia of a rod about an axis through its centre and perpendicular to it, is 1/2 ML^2 (where, M is the mass and L is length of the rod). The rod is bent in the middle, so that two halves make an angle of 60^∘. The moment of inertia of the bent [...]
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is 1/2 ML^2 (where ,
M is the mass and L is length of the rod). The rod is bent in the middle ,
so that two halves make an angle of 60^∘. The moment of inertia of the bent rod about the same axis would be ,
The moment of inertia of a rod about an axis through its centre and perpendicular to it ,