(a)
The magnitude of the torque.
(a)
Answer to Problem 28P
The magnitude of the torque is
Explanation of Solution
Write the formula for torque on a rotor.
Here,
Conclusion:
Substitute
The magnitude of the torque is
(b)
The peak power output.
(b)
Answer to Problem 28P
The peak power output is
Explanation of Solution
Write the formula for power on a motor.
Here,
Conclusion:
Substitute
The peak power output is
(c)
The amount of work performed.
(c)
Answer to Problem 28P
The amount of work performed is
Explanation of Solution
Write the formula for work in one half revolutions is,
Here,
Write the formula for potential energy.
Here,
Write the formula for torque on a rotor.
Here,
Write the formula for torque on a rotor.
Here,
Equate expression (III) and (IV) and substitute in (V)
Conclusion:
Substitute
Equate expression (III) and (IV) and substitute in (V),
Substitute
In one full revolution,
The amount of work performed is
(d)
The average power of the motor.
(d)
Answer to Problem 28P
The average power of the motor is
Explanation of Solution
Write the formula for power on a motor.
Here,
Conclusion:
The time for revolution is
Substitute
The average power of the motor is
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Chapter 22 Solutions
Principles of Physics: A Calculus-Based Text
- look at answer show all work step by steparrow_forwardLook at the answer and please show all work step by steparrow_forward3. As a woman, who's eyes are h = 1.5 m above the ground, looks down the road sees a tree with height H = 9.0 m. Below the tree is what appears to be a reflection of the tree. The observation of this apparent reflection gives the illusion of water on the roadway. This effect is commonly called a mirage. Use the results of questions 1 and 2 and the principle of ray reversibility to analyze the diagram below. Assume that light leaving the top of the tree bends toward the horizontal until it just grazes ground level. After that, the ray bends upward eventually reaching the woman's eyes. The woman interprets this incoming light as if it came from an image of the tree. Determine the size, H', of the image. (Answer 8.8 m) please show all work step by steparrow_forward
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