A solid disk of mass M, radius R and rotational inertia I is free to rotate about a fixed frictionless axis that is perpendicular to the disk through its center, as shown above. A force of constant direction and constant magnitude F is exerted on the disk. If the disk accelerates from rest at time t = 0, through what angle does the disk rotate from t = 0 to t = T? (A B (С D FRT2 2M FRT2 21 Axis of Rotation FT2 21 FT M
A solid disk of mass M, radius R and rotational inertia I is free to rotate about a fixed frictionless axis that is perpendicular to the disk through its center, as shown above. A force of constant direction and constant magnitude F is exerted on the disk. If the disk accelerates from rest at time t = 0, through what angle does the disk rotate from t = 0 to t = T? (A B (С D FRT2 2M FRT2 21 Axis of Rotation FT2 21 FT M
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![A solid disk of mass M, radius R and rotational inertia I is free to rotate about a fixed frictionless axis that is perpendicular to the disk through its
center, as shown above. A force of constant direction and constant magnitude F is exerted on the disk.
A
If the disk accelerates from rest at time t = 0, through what angle does the disk rotate from t = 0 to t = T?
B
C
D
E
FRT2
2M
FRT2
21
FT2
21
Axis of
Rotation
FT
M
F
FRT
I](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F019fb4ae-aebc-4c9c-a0ae-00e747a06944%2Fad077e6b-3bc5-4a59-8863-27cdab873bf9%2F6gilwas_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A solid disk of mass M, radius R and rotational inertia I is free to rotate about a fixed frictionless axis that is perpendicular to the disk through its
center, as shown above. A force of constant direction and constant magnitude F is exerted on the disk.
A
If the disk accelerates from rest at time t = 0, through what angle does the disk rotate from t = 0 to t = T?
B
C
D
E
FRT2
2M
FRT2
21
FT2
21
Axis of
Rotation
FT
M
F
FRT
I
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