Question

The internal impedance of a source is 3 + j 7 Ω. For maximum power transfer, load impedance should be

a.

3 + j 7 Ω

b.

3 - j 7 Ω

c.

7 + j 3 Ω

d.

7 - j 3 Ω

Answer: (b).3 - j 7 Ω

Interact with the Community - Share Your Thoughts

Uncertain About the Answer? Seek Clarification Here.

Understand the Explanation? Include it Here.

Q. The internal impedance of a source is 3 + j 7 Ω. For maximum power transfer, load impedance should be

Similar Questions

Explore Relevant Multiple Choice Questions (MCQs)

Q. A wave trap is a

Q. In an ac series RLC circuit the maximum phase difference between any two voltages can be

Q. In a series circuit with XL constant and R variable the current locus lies in the third quadrant.

Q. One coulomb charge is equal to the charge on

Q. Two capacitors of 16 μF each are connected in series. Another capacitor of 16 μF is connected in parallel with this combination. The total capacitance will be

Q. Assertion (A): Operator has a value 1 ∠ - 90° or 1 ∠ 90°.

Reason (R): Operator 'a' has a value 1 ∠ 120°.

Q. The maximum current and voltage ratings for a 0.5 W, 10 kW resistor are

Q. The network has 10 nodes and 17 branches. The number of different node power voltages would be

Q. Two capacitor of 1 F each are connected in parallel. Another 1 F capacitor is connected in series with the parallel combination. The total capacitance is

Q. The realization of the term Ks yields

Q. If operator 'a' = 1 ∠120° then (1 - a²) =

Q. If A = 3 + j1 and B = 4 + j3, A + B =

Q. When a constant voltage source and constant current source are in series, the current source is ineffective.

Q. A system has transfer function 10/(s+1)(s+2). The dc gain is

Q. In a series RLC circuit, the current at resonance is I₀ the total energy stored in the circuit at resonance is

Q. If J, I and a denote current density, current and area of cross section of a conductor, then

Q. If A = 3 + j1, A⁴

Q. The sum of positive real functions

Q. Twelve 1 Ω resistance are used as edges to form a cube. The resistance between two diagonally opposite corners of the cube is

Q. A parallel RLC circuit has ω₀ = 10⁶ and Q = 30, Given C = 30 pF, the value of R is

Recommended Subjects

Are you eager to expand your knowledge beyond Electronics and Communication Engineering? We've handpicked a range of related categories that you might find intriguing.

Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!