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In an electromechanical energy conversion device, the developed torque depends upon
  • a)
    stator field strength and torque angle
  • b)
    stator field and rotor field strengths
  • c)
    stator field and rotor field strengths and the torque angle
  • d)
    stator field strength only
Correct answer is 'C'. Can you explain this answer?
Most Upvoted Answer
In an electromechanical energy conversion device, the developed torque...
Explanation:
An electromechanical energy conversion device converts electrical energy into mechanical energy. It consists of a stator and a rotor. The stator is a stationary part and produces a magnetic field when an electrical current flows through it. The rotor is a rotating part and contains conductors that interact with the stator's magnetic field to produce torque.

The developed torque in an electromechanical energy conversion device depends on the following factors:

Stator field strength: The strength of the stator's magnetic field determines the magnitude of the torque produced. A stronger magnetic field results in a higher torque.

Rotor field strength: The strength of the rotor's magnetic field also affects the torque produced. A stronger rotor magnetic field results in a higher torque.

Torque angle: The torque angle is the angle between the stator's magnetic field and the rotor's magnetic field. It determines the direction of the torque produced. A larger torque angle results in a higher torque.

Therefore, the developed torque depends on the stator field strength, rotor field strength, and torque angle. Hence, the correct option is C.
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Community Answer
In an electromechanical energy conversion device, the developed torque...
C
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In an electromechanical energy conversion device, the developed torque depends upona)stator field strength and torque angleb)stator field and rotor field strengthsc)stator field and rotor field strengths and the torque angled)stator field strength onlyCorrect answer is 'C'. Can you explain this answer?
Question Description
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