in Education by
In the following circuit, when R = 0 Ω, the current IR equals to 10 A. The maximum power will be? (a) 50 W (b) 100 W (c) 200 W (d) 400 W I had been asked this question in an interview for job. The query is from Advanced Problems on Superposition Theorem topic in chapter Useful Theorems in Circuit Analysis of Network Theory Select the correct answer from above options network theory questions and answers, network theory questions pdf, network theory question bank, network theory gate questions and answers pdf, mcq on network theory pdf, gate network theory questions and solutions, network theory mcq Test , ies network theory questions, Network theory Questions for GATE EC Exam, Network Theory MCQ (Multiple Choice Questions)

1 Answer

0 votes
by
Correct choice is (a) 50 W For explanation: Using Superposition Theorem, we get, I = 10 A and R = 2 Ω ∴ Pmax = (\(\frac{10}{2}\))^2 × 2 = 5 × 5 × 2 = 50 W.

Related questions

0 votes
0 votes
    A three-phase balanced delta connected load of (4+j8) Ω is connected across a 400V, 3 - Ø balanced supply. ... for GATE EC Exam, Network Theory MCQ (Multiple Choice Questions)...
asked Oct 17, 2021 in Education by JackTerrance
0 votes
    In the circuit given below, the current source is 1∠0° A, R = 1 Ω, the impedances are ZC = -j Ω and ... Questions for GATE EC Exam, Network Theory MCQ (Multiple Choice Questions)...
asked Oct 16, 2021 in Education by JackTerrance
0 votes
    In the circuit given below, what is the amount of maximum power transfer to R? (a) 56 W (b) 76 W (c) ... Questions for GATE EC Exam, Network Theory MCQ (Multiple Choice Questions)...
asked Oct 20, 2021 in Education by JackTerrance
0 votes
    For a series RLC circuit, excited by voltage V = 20 sinωt. The values of R = 2 Ω, L = 1mH and C ... Questions for GATE EC Exam, Network Theory MCQ (Multiple Choice Questions)...
asked Oct 19, 2021 in Education by JackTerrance
...