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A shunt generator gives full load output of 10kw at a terminal voltage of 200v. The armature and shunt field resistance are 0.5ohm and 50ohm respectively. The iron & frictional losses are 1000watt . Calculate generated emf, & coper losses and efficiency.?
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A shunt generator gives full load output of 10kw at a terminal voltage...
Loss and friction and windage loss are 500w and 200w respectively.

To find the efficiency of the generator, we first need to find the input power.

Input power = output power + losses

Output power = 10kW

Losses = iron loss + friction and windage loss

Losses = 500W + 200W = 700W

Input power = 10kW + 700W = 10.7kW

Now, we can calculate the efficiency of the generator:

Efficiency = output power / input power

Efficiency = 10kW / 10.7kW = 0.934

Therefore, the efficiency of the shunt generator is 93.4%.
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A shunt generator gives full load output of 10kw at a terminal voltage of 200v. The armature and shunt field resistance are 0.5ohm and 50ohm respectively. The iron & frictional losses are 1000watt . Calculate generated emf, & coper losses and efficiency.?
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A shunt generator gives full load output of 10kw at a terminal voltage of 200v. The armature and shunt field resistance are 0.5ohm and 50ohm respectively. The iron & frictional losses are 1000watt . Calculate generated emf, & coper losses and efficiency.? for JEE 2025 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about A shunt generator gives full load output of 10kw at a terminal voltage of 200v. The armature and shunt field resistance are 0.5ohm and 50ohm respectively. The iron & frictional losses are 1000watt . Calculate generated emf, & coper losses and efficiency.? covers all topics & solutions for JEE 2025 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A shunt generator gives full load output of 10kw at a terminal voltage of 200v. The armature and shunt field resistance are 0.5ohm and 50ohm respectively. The iron & frictional losses are 1000watt . Calculate generated emf, & coper losses and efficiency.?.
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