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A winding is distributed in the slots along the air-gap periphery
1. to add mechanical strength to the winding.
2. to reduce the amount of conductor material required.
3. to reduce the harmonics in the generated emf.
4. to reduce the size of the machine.
5. for full utilization of iron and conductor materials.
From these, the correct answer is 
  • a)
    1, 3, 4, 5
  • b)
    1,2, 4, 5
  • c)
     1,2, 3, 5
  • d)
    1,3,5
Correct answer is option 'D'. Can you explain this answer?
Most Upvoted Answer
A winding is distributed in the slots along the air-gap periphery1. to...
Distributed Winding in Slots of a Machine

Distributed winding is a type of winding that is evenly distributed in the slots along the air-gap periphery of a machine. This type of winding has several advantages, which are discussed below.

Mechanical Strength

The distributed winding adds mechanical strength to the machine by holding the coils firmly in place, reducing the risk of the coils coming loose during operation. This is because the distributed winding is wound around the entire circumference of the machine, which provides a more secure hold on the coils.

Reduced Conductor Material

The distributed winding requires less conductor material because the winding is distributed over the entire circumference of the machine, reducing the amount of conductor material required to make the coils. The reduction in conductor material also reduces the cost of the machine.

Reduced Harmonics

The distributed winding reduces the harmonics in the generated emf because the winding is evenly distributed in the slots along the air-gap periphery. This results in a more sinusoidal waveform, which reduces the harmonic distortion.

Reduced Size of the Machine

The distributed winding reduces the size of the machine because the winding is evenly distributed in the slots along the air-gap periphery. This results in a more compact design, which is beneficial for applications where space is limited.

Full Utilization of Iron and Conductor Materials

The distributed winding allows for the full utilization of iron and conductor materials because the winding is evenly distributed in the slots along the air-gap periphery. This results in a more efficient use of materials, which reduces the cost of the machine.

Conclusion

In conclusion, the correct answer is option D, which states that the distributed winding is used to add mechanical strength to the winding, reduce harmonics in the generated emf, reduce the size of the machine, and for full utilization of iron and conductor materials. Additionally, distributed winding also reduces the amount of conductor material required, which reduces the cost of the machine.
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it depends on the length of the conductor the capacitance of the line is proportional to the length of the transmission line their effect is negligible on the performance of short having a length less than 80 km and low voltage transmission accidents of the transmission line along with the conductances forms the shunted mittens the conductance and the transmission line is because of the leakage over the surface of the conductor considered a line consisting of two conductors and be each of radius are the distance between the conductors being Des shown in the diagram below minus the potential difference between the conductors and via's work QA charge on conductor QB charge on conductor vvab pencil difference between conductor and the Epsilon minus absolute primitivity QA plus QV = 0 so that QA equals QB - equals DBA equals data equals DB equals our substituting these values and voltage equation we get the capacitance between the conductors is cab is referred to as lying to line capacitance if the two conductors are in VR oppositely charge then the potential difference between them is zero then the potential of each conductor is given by one half bath the capacitance between each conductor and point of zero potential and is capacitive CN is called the capacitance to neut or capacitance to ground capacitance cab is the combination of two equal capacity and VN series thus capacitance to neutral is twice the capacitance between the conductors IE CN equals to Cave the absolute primitivity Epsilon is given by Epsilon equals epsilono Epsilon are where epsilano is the permittivity of the free space and Epsilon or is the relative primitivity of the medium prayer capacitance reactants between one conductor and neutral capacitance of the symmetrical three phase line let a balanced system of voltage be applied to a symmetrical three-phase line shown below the phasor diagram of the three phase line with equilateral spacing is shown below take the voltage of conductor to neutral as a reference phaser the potential difference between conductor and we can be written the similarly potential difference between conductors and sea is on adding equations one and two we get also combining equation three and four from equation 6 and 7 the line to neutral capacitance the capacitance of symmetrical three phase line is same as that of the two wire line Related: Capacitance of Transmission Lines?

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A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer?
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A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer? for Electrical Engineering (EE) 2024 is part of Electrical Engineering (EE) preparation. The Question and answers have been prepared according to the Electrical Engineering (EE) exam syllabus. Information about A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer? covers all topics & solutions for Electrical Engineering (EE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer?.
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Here you can find the meaning of A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer?, a detailed solution for A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer? has been provided alongside types of A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice A winding is distributed in the slots along the air-gap periphery1. to add mechanical strength to the winding.2. to reduce the amount of conductor material required.3. to reduce the harmonics in the generated emf.4. to reduce the size of the machine.5. for full utilization of iron and conductor materials.From these, the correct answer isa)1, 3, 4, 5b)1,2, 4, 5c)1,2, 3, 5d)1,3,5Correct answer is option 'D'. Can you explain this answer? tests, examples and also practice Electrical Engineering (EE) tests.
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