The wheel has mass m 6.2 kg and a centroidal radius of gyration 685 mm and rolls without slipping up the incline under the action of a force P. The force is applied to the end of a cord which is wrapped securely around the inner hub of the wheel as shown. Determine the speed vo Oof the wheel center O after the wheel center has traveled a distance d 3.7 m up the incline. The wheel is at rest when 975 mm and ri 370 mm and the angle 0 = 25° the force P 54 N is first applied. The distances ro m, k P m/s Answer: Vo = O

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The wheel has mass m 6.2 kg and a centroidal radius of gyration
685 mm and rolls without slipping up the incline under the action of a force P. The force is applied to the end of
a cord which is wrapped securely around the inner hub of the wheel as shown. Determine the speed vo Oof the
wheel center O after the wheel center has traveled a distance d 3.7 m up the incline. The wheel is at rest when
975 mm and ri 370 mm and the angle 0 = 25°
the force P 54 N is first applied. The distances ro
m, k
P
m/s
Answer: Vo
=
O
Transcribed Image Text:The wheel has mass m 6.2 kg and a centroidal radius of gyration 685 mm and rolls without slipping up the incline under the action of a force P. The force is applied to the end of a cord which is wrapped securely around the inner hub of the wheel as shown. Determine the speed vo Oof the wheel center O after the wheel center has traveled a distance d 3.7 m up the incline. The wheel is at rest when 975 mm and ri 370 mm and the angle 0 = 25° the force P 54 N is first applied. The distances ro m, k P m/s Answer: Vo = O
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