Figure P18.14 shows a 1000-kg mass being lowered by a cable at a uniform rate of 4 m/s from a drum of 550-mm diameter weighing 2.5 kN and having a 250-mm radius of gyration. (a) What is the kinetic energy in the system? (b) The uniform rate of descent is maintained by a brake on the drum which applies a torque of 2698 N m. What additional brake torque is required to bring the system to rest in 0.60 s? 4m/s 1000 kg (d) FIGURE P18.14 Ans. Part a.) 9685 J Part b.) 2219 Nm
Figure P18.14 shows a 1000-kg mass being lowered by a cable at a uniform rate of 4 m/s from a drum of 550-mm diameter weighing 2.5 kN and having a 250-mm radius of gyration. (a) What is the kinetic energy in the system? (b) The uniform rate of descent is maintained by a brake on the drum which applies a torque of 2698 N m. What additional brake torque is required to bring the system to rest in 0.60 s? 4m/s 1000 kg (d) FIGURE P18.14 Ans. Part a.) 9685 J Part b.) 2219 Nm
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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![Figure P18.14 shows a 1000-kg mass being lowered by a cable at a uniform
rate of 4 m/s from a drum of 550-mm diameter weighing 2.5 kN and having
a 250-mm radius of gyration.
(a) What is the kinetic energy in the system?
(b) The uniform rate of descent is maintained by a brake on the drum
which applies a torque of 2698 N m. What additional brake torque is
required to bring the system to rest in 0.60 s?
4m/s
1000 kg
(d)
FIGURE P18.14
Ans.
Part a.) 9685 J
Part b.) 2219 Nm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fccb600fb-f597-4789-a805-df5336dda19a%2F9fa3090b-890f-48d3-8f54-83106cc3076a%2Fu2dtjz_processed.png&w=3840&q=75)
Transcribed Image Text:Figure P18.14 shows a 1000-kg mass being lowered by a cable at a uniform
rate of 4 m/s from a drum of 550-mm diameter weighing 2.5 kN and having
a 250-mm radius of gyration.
(a) What is the kinetic energy in the system?
(b) The uniform rate of descent is maintained by a brake on the drum
which applies a torque of 2698 N m. What additional brake torque is
required to bring the system to rest in 0.60 s?
4m/s
1000 kg
(d)
FIGURE P18.14
Ans.
Part a.) 9685 J
Part b.) 2219 Nm
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