F19-2. The 300-kg wheel has a radius of gyration about its mass center O of ko = 400 mm. If the wheel is subjected to a couple moment of M = 300 N·m, determine its angular velocity 6 s after it starts from rest and no slipping occurs. Also, determine the friction force that the ground applies to the wheel. 0.6 m M=300 N·m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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F19-2. The 300-kg wheel has a radius of gyration about its
mass center O of ko = 400 mm. If the wheel is subjected to
a couple moment of M = 300 N·m, determine its angular
velocity 6 s after it starts from rest and no slipping occurs.
Also, determine the friction force that the ground applies to
the wheel.
0.6 m
M= 300 Nm
Transcribed Image Text:F19-2. The 300-kg wheel has a radius of gyration about its mass center O of ko = 400 mm. If the wheel is subjected to a couple moment of M = 300 N·m, determine its angular velocity 6 s after it starts from rest and no slipping occurs. Also, determine the friction force that the ground applies to the wheel. 0.6 m M= 300 Nm
F15-4. The wheels of the 1.5-Mg car generate the traction
force F described by the graph. If the car starts from rest,
determine its speed when t = 6 s.
F (KN)
F
6 kN
ta
2
6
- t (s)
Transcribed Image Text:F15-4. The wheels of the 1.5-Mg car generate the traction force F described by the graph. If the car starts from rest, determine its speed when t = 6 s. F (KN) F 6 kN ta 2 6 - t (s)
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