Concept explainers
(a)
The angular acceleration of gear A
(a)
Answer to Problem 16.36P
The angular acceleration of gear A is
Explanation of Solution
The mass of the gear A and B
The radius of gyration
The mas of the gear C
The radius of gyration
The magnitude of couple (M) is 5 N-m.
Calculation:
Find the tangential acceleration
Here, r radius of gear.
Calculate the tangential acceleration of gear A:
Calculate the tangential acceleration of gear B.
Calculate the tangential acceleration of gear C.
Equate Equation (1) and (2).
Equate Equation (1) and (3).
Show the free body diagram and kinetic diagram of Gear B as in Figure (1).
Take moment about point B.
Since, the system of external forces is equivalent to system of effective forces. Therefore, express the system of external moment:
Take counterclockwise moment as positive.
Take moment about point A
Take moment about point A
Substitute
Show the free body diagram and kinetic diagram of Gear C as in Figure (2).
Calculate the moment of inertia
Substitute 3 kg for
Since, the system of external forces is equivalent to system of effective forces. Therefore, express the system of external moment:
Take counterclockwise moment as positive.
Take moment about point C
Take moment about point C
Substitute
Substitute
Show the free body diagram and kinetic diagram of gear A as in Figure (3).
Since the system of external forces is equivalent to system of effective forces, express the system of external moment:
Take clockwise moment as positive.
Take moment about point C
Take moment about point C
Substitute
Substitute
Calculate the moment of inertia of gear C.
Substitute 3 kg for
Calculate the moment of inertia
Substitute 9 kg for
The moment of inertia of gear A (
Substitute
Thus, the angular acceleration of gear are
(b)
The tangential force
(b)
Answer to Problem 16.36P
The tangential force
Explanation of Solution
Given information:
The mass of the gear A and B
The radius of gyration
The mas of the gear C
The radius of gyration
The magnitude of couple (M) is 5N-m.
Calculation:
Calculate the tangential force
Substitute
Therefore, the tangential force
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Chapter 16 Solutions
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