The center of the 200-lb wheel has velocity of 2 ft/s at the position shown as it rolls down the incline. The wheel has a radius of 6 inches and a radius of gyration of 4 inches about its centroid/center of mass. Assume that no slipping occurs. Find the normal force on the wheel from the ground the moment it passes point A. !30° 24" 12"
The center of the 200-lb wheel has velocity of 2 ft/s at the position shown as it rolls down the incline. The wheel has a radius of 6 inches and a radius of gyration of 4 inches about its centroid/center of mass. Assume that no slipping occurs. Find the normal force on the wheel from the ground the moment it passes point A. !30° 24" 12"
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Transcribed Image Text:3. The center of the 200-lb wheel has velocity of 2 ft/s at the
position shown as it rolls down the incline. The wheel has a
radius of 6 inches and a radius of gyration of 4 inches about its
centroid/center of mass. Assume that no slipping occurs. Find
the normal force on the wheel from the ground the moment it
passes point A.
30
24"
12"
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