Prob. 19-9 19-10. The frame of the roller has a mass of 5.5 Mg and a center of mass at G. The roller has a mass of 2 Mg and a radius of gyration about its mass center of kA = 0.45 m. If a torque of M = 600N m is applied to the rear wheels, determine the speed of the compactor in t = 4 s, starting from rest. No slipping occurs. Neglect the mass of the driving wheels. АЯ 0.6 m B -1.95 m $ O G M C 0.86 m 1.10 m- Prob. 19-10 0.5 m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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AL
0.6 m
A
B
500 mm
19-10. The frame of the roller has a mass of 5.5 Mg and a
center of mass at G. The roller has a mass of 2 Mg and a radius
of gyration about its mass center of kA = 0.45 m. If a torque
of M = 600N m is applied to the rear wheels, determine
the speed of the compactor in t = 4 s, starting from rest. No
slipping occurs. Neglect the mass of the driving wheels.
Ⓡ
1.95 m
C
Prob. 19-9
0.86 m
200 mm
Gj
B
Prob. 19-10
1.10 m
43
44
B
GA
M
0.5 m
Transcribed Image Text:AL 0.6 m A B 500 mm 19-10. The frame of the roller has a mass of 5.5 Mg and a center of mass at G. The roller has a mass of 2 Mg and a radius of gyration about its mass center of kA = 0.45 m. If a torque of M = 600N m is applied to the rear wheels, determine the speed of the compactor in t = 4 s, starting from rest. No slipping occurs. Neglect the mass of the driving wheels. Ⓡ 1.95 m C Prob. 19-9 0.86 m 200 mm Gj B Prob. 19-10 1.10 m 43 44 B GA M 0.5 m
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