The figure shows a uniform metal plate in the shape of a right triangle, with legs a = 0.60 m that can rotate with respect to an axis perpendicular to the plane of the plate that passes through point O, on which the indicated forces act. If the moment of inertia of the plate is I_0 = 2.4 kgm^2, calculate its angular acceleration considering that F_1 = 50 N, F_2=60 N and F_3 =40 N. The plate and all the forces are in the plane of the plate. sheet. F2 40° F3 0 9/3 F₁

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The figure shows a uniform metal plate in the
shape of a right triangle, with legs a = 0.60 m that
can rotate with respect to an axis perpendicular to
the plane of the plate that passes through point O,
on which the indicated forces act. If the moment of
inertia of the plate is I_0 = 2.4 kgm^2, calculate its
angular acceleration considering that F_1 = 50 N,
F_2=60 N and F_3 =40 N. The plate and all the
forces are in the plane of the plate. sheet.
F2
40°
F3
0
9/3
F₁
Transcribed Image Text:The figure shows a uniform metal plate in the shape of a right triangle, with legs a = 0.60 m that can rotate with respect to an axis perpendicular to the plane of the plate that passes through point O, on which the indicated forces act. If the moment of inertia of the plate is I_0 = 2.4 kgm^2, calculate its angular acceleration considering that F_1 = 50 N, F_2=60 N and F_3 =40 N. The plate and all the forces are in the plane of the plate. sheet. F2 40° F3 0 9/3 F₁
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