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(A): Norton’s theorem is applied to a network for which no equivalent Thevenin’ s network exists.
(R): Norton’s theorem enables one to calculate quickly current and voltage in a particular branch of interest in a complicated network.
  • a)
    Both A and R are true and R is a correct explanation of A
  • b)
    Both A and R are true but R is not a correct explanation of A
  • c)
    A is true but R is false
  • d)
    R is false but R is true
Correct answer is option 'D'. Can you explain this answer?
Most Upvoted Answer
(A): Norton’s theorem is applied to a network for which no equiv...
Statement A: "Norton's theorem is applied to a network for which no equivalent Thevenin's network exists."
Statement R: "Norton's theorem enables one to calculate quickly current and voltage in a particular branch of interest in a complicated network."
Statement A is true. Norton's theorem is a circuit analysis technique that is applied to networks for which an equivalent Thevenin's network does not exist. The theorem allows us to simplify a complex network by replacing the network with an equivalent current source and a parallel resistor.
Statement R is false. Norton's theorem does not specifically enable the quick calculation of current and voltage in a particular branch of interest in a complicated network. While Norton's theorem can be used to determine the equivalent Norton's current and resistance of a network, it does not provide a direct method for calculating current and voltage in specific branches.
Norton's theorem simplifies a network by replacing it with an equivalent current source and a parallel resistor. It provides an alternative representation that allows for simpler analysis of certain aspects of the network, such as the behavior of the network as seen from a specific load or branch. However, it does not directly enable quick calculations of current and voltage in specific branches.
Therefore, the correct answer is D: R is false, but A is true.
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(A): Norton’s theorem is applied to a network for which no equiv...
(B): Anti-virus.
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(A): Norton’s theorem is applied to a network for which no equivalent Thevenin’ s network exists.(R): Norton’s theorem enables one to calculate quickly current and voltage in a particular branch of interest in a complicated network.a)Both A and R are true and R is a correct explanation of Ab)Both A and R are true but R is not a correct explanation of Ac)A is true but R is falsed)R is false but R is trueCorrect answer is option 'D'. Can you explain this answer?
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(A): Norton’s theorem is applied to a network for which no equivalent Thevenin’ s network exists.(R): Norton’s theorem enables one to calculate quickly current and voltage in a particular branch of interest in a complicated network.a)Both A and R are true and R is a correct explanation of Ab)Both A and R are true but R is not a correct explanation of Ac)A is true but R is falsed)R is false but R is trueCorrect 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): Norton’s theorem is applied to a network for which no equivalent Thevenin’ s network exists.(R): Norton’s theorem enables one to calculate quickly current and voltage in a particular branch of interest in a complicated network.a)Both A and R are true and R is a correct explanation of Ab)Both A and R are true but R is not a correct explanation of Ac)A is true but R is falsed)R is false but R is trueCorrect 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): Norton’s theorem is applied to a network for which no equivalent Thevenin’ s network exists.(R): Norton’s theorem enables one to calculate quickly current and voltage in a particular branch of interest in a complicated network.a)Both A and R are true and R is a correct explanation of Ab)Both A and R are true but R is not a correct explanation of Ac)A is true but R is falsed)R is false but R is trueCorrect answer is option 'D'. Can you explain this answer?.
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