The pavement compactor is traveling down the incline at VG = 5 ft/s when the motor is disengaged. The body of the compactor, excluding the rollers, has a weight of 8000 lb and a center of gravity G. Each of the two rear rollers weighs 400 lb and has a radius of gyration of k₁ = 3.3 ft. The front roller has a weight of 800 lb and a radius of gyration of kg = 1.8 ft. The rollers do not slip as they rotate. (Figure 1) Figure 3.8 ft Faft. GT 2.2 ft 10 ft 1 of 1 Part A Determine the angular velocity of the roller B when the compactor has traveled 16 ft down the plane. Express your answer in radians per second to three significant figures. WB= Submit Provide Feedback A vec Request Answer ? rad/s

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The pavement compactor is traveling down the incline at
VG = 5 ft/s when the motor is disengaged. The body of
the compactor, excluding the rollers, has a weight of
8000 lb and a center of gravity at G. Each of the two
rear rollers weighs 400 lb and has a radius of gyration of
KA = 3.3 ft. The front roller has a weight of 800 lb and
a radius of gyration of kg = 1.8 ft. The rollers do not
slip as they rotate.
(Figure 1)
Figure
3.8 ft
5 ft
A
GT
10 ft
1 of 1
30
730
▼
Part A
Determine the angular velocity of the roller B when the compactor has traveled 16 ft down the plane.
Express your answer in radians per second to three significant figures.
WB =
Submit
IVE ΑΣΦ | Η
Provide Feedback
Request Answer
P Pearson
vec
?
rad/s
Next >
Transcribed Image Text:The pavement compactor is traveling down the incline at VG = 5 ft/s when the motor is disengaged. The body of the compactor, excluding the rollers, has a weight of 8000 lb and a center of gravity at G. Each of the two rear rollers weighs 400 lb and has a radius of gyration of KA = 3.3 ft. The front roller has a weight of 800 lb and a radius of gyration of kg = 1.8 ft. The rollers do not slip as they rotate. (Figure 1) Figure 3.8 ft 5 ft A GT 10 ft 1 of 1 30 730 ▼ Part A Determine the angular velocity of the roller B when the compactor has traveled 16 ft down the plane. Express your answer in radians per second to three significant figures. WB = Submit IVE ΑΣΦ | Η Provide Feedback Request Answer P Pearson vec ? rad/s Next >
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