18–18. The wheel has a mass of 100 kg and a radius of gyration of ko = 0.2 m. A motor supplies a torque M = (400+900)N•m, where 0 is in radians, about the drive shaft at O. Determine the speed of the loading car, which has a mass of 300 kg, after it travels s = 4 m. Initially the car is at rest when s = 0 and 0 = 0°. Neglect the mass of the attached cable and the mass of the car's wheels. м- 0.3 m 30°

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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18–18. The wheel has a mass of 100 kg and a radius
of gyration of ko = 0.2 m. A motor supplies a torque
M = (400+900)N•m, where 0 is in radians, about the drive
shaft at O. Determine the speed of the loading car, which
has a mass of 300 kg, after it travels s = 4 m. Initially the car
is at rest when s = 0 and 0 = 0°. Neglect the mass of the
attached cable and the mass of the car's wheels.
м-
0.3 m
30°
Transcribed Image Text:18–18. The wheel has a mass of 100 kg and a radius of gyration of ko = 0.2 m. A motor supplies a torque M = (400+900)N•m, where 0 is in radians, about the drive shaft at O. Determine the speed of the loading car, which has a mass of 300 kg, after it travels s = 4 m. Initially the car is at rest when s = 0 and 0 = 0°. Neglect the mass of the attached cable and the mass of the car's wheels. м- 0.3 m 30°
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