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Question 1 · Electrical Engineering (SSC JE) · Circuit Theory and Networks Thevenin’s equivalent of a linear network at a pair of terminals consists of
Choose your answer for question 1 A. two voltage sources in parallel B. a voltage source in series with a resistance C. a current source in parallel with a resistance D. a resistance onlyAnswer and explanation Correct answer: B
The source voltage is the open-circuit voltage and the resistance is that seen into the terminals with the sources deactivated.
Question 2 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A source of 12 V with an internal resistance of 4 Ω supplies a variable load. The maximum power that can be delivered to the load is
Choose your answer for question 2 A. 9 W B. 3 W C. 18 W D. 36 WAnswer and explanation Correct answer: A
Maximum power occurs at RL = 4 Ω: P = V²/(4R) = 144/16 = 9 W.
Question 3 · Electrical Engineering (SSC JE) · Circuit Theory and Networks Three resistors of 9 Ω each are connected in delta. The equivalent star resistance of each arm is
Choose your answer for question 3 A. 27 Ω B. 6 Ω C. 3 Ω D. 9 ΩAnswer and explanation Correct answer: C
In the delta-star conversion with equal resistances, R_star = R_delta/3 = 3 Ω.
Question 4 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A series RLC circuit has L = 1 mH and C = 1 μF. The resonant frequency is about
Choose your answer for question 4 A. 1 kHz B. 5.03 kHz C. 15.9 kHz D. 159 HzAnswer and explanation Correct answer: B
f0 = 1 / (2π√(LC)) = 1 / (2π × √(10⁻⁹)) = 1/(2π × 3.162 × 10⁻⁵) = 5033 Hz.
Question 5 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A series circuit has R = 3 Ω and XL = 4 Ω. Its power factor is
Choose your answer for question 5 A. 0.75 lagging B. 0.6 lagging C. 0.8 lagging D. unityAnswer and explanation Correct answer: B
|Z| = √(9 + 16) = 5 Ω and cos φ = R/|Z| = 3/5 = 0.6.
Question 6 · Electrical Engineering (SSC JE) · Circuit Theory and Networks In a balanced star connection, the line voltage is related to the phase voltage as
Choose your answer for question 6 A. VL = √3 Vph B. VL = Vph / √3 C. VL = 3 Vph D. VL = VphAnswer and explanation Correct answer: A
The line voltage is the phasor difference of two phase voltages 120° apart, which gives √3 times the phase voltage.
Question 7 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A balanced three-phase load takes a line current of 10 A at 400 V line voltage with a power factor of 0.8. The total real power is about
Choose your answer for question 7 A. 5.54 kW B. 3.2 kW C. 4.0 kW D. 9.6 kWAnswer and explanation Correct answer: A
P = √3 VL IL cos φ = 1.732 × 400 × 10 × 0.8 = 5542 W.
Question 8 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A sinusoidal voltage has a peak value of 325 V. Its RMS value is about
Choose your answer for question 8 A. 230 V B. 460 V C. 162 V D. 325 VAnswer and explanation Correct answer: A
Vrms = Vm/√2 = 325/1.414 = 229.8 V.
Question 9 · Electrical Engineering (SSC JE) · Circuit Theory and Networks The form factor of a sinusoidal waveform is
Choose your answer for question 9 A. 1.11 B. 1.414 C. 1.57 D. 0.707Answer and explanation Correct answer: A
Form factor = RMS value / average value = 0.707 Vm / 0.637 Vm = 1.11.
Question 10 · Electrical Engineering (SSC JE) · Circuit Theory and Networks At the instant of switching on a circuit, an uncharged capacitor behaves as
Choose your answer for question 10 A. a short circuit B. an infinite resistance C. a voltage source D. an open circuitAnswer and explanation Correct answer: A
With zero initial voltage and a changing current, the capacitor initially passes current freely, like a short circuit.
Question 11 · Electrical Engineering (SSC JE) · Circuit Theory and Networks Kirchhoff’s voltage law is based on the conservation of
Choose your answer for question 11 A. charge B. momentum C. energy D. massAnswer and explanation Correct answer: C
The algebraic sum of voltage rises and drops around a closed loop is zero.
Question 12 · Electrical Engineering (SSC JE) · Circuit Theory and Networks Nodal analysis of a network is based on
Choose your answer for question 12 A. Norton’s theorem B. Kirchhoff’s current law C. Kirchhoff’s voltage law D. Thevenin’s theoremAnswer and explanation Correct answer: B
Node voltages are the unknowns, and KCL is written at each node.
Question 13 · Electrical Engineering (SSC JE) · Circuit Theory and Networks The superposition theorem is applicable to
Choose your answer for question 13 A. unilateral networks only B. linear bilateral networks C. non-linear networks D. networks with diodes onlyAnswer and explanation Correct answer: B
It requires linearity. Power cannot be superposed because it is not linear in the voltage or current.
Question 14 · Electrical Engineering (SSC JE) · Circuit Theory and Networks In the two-wattmeter method of measuring three-phase power, at unity power factor the two wattmeters read
Choose your answer for question 14 A. equal values with opposite signs B. equal values C. zero and the total power D. one reads three times the otherAnswer and explanation Correct answer: B
W1 = W2 = VL IL cos 30° when the power factor is unity. At 0.5 lagging, one wattmeter reads zero.
Question 15 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A series circuit with R = 30 Ω, XL = 70 Ω and XC = 30 Ω is connected to a 100 V ac supply. The current is
Choose your answer for question 15 A. 1 A B. 10 A C. 3.3 A D. 2 AAnswer and explanation Correct answer: D
X = 70 − 30 = 40 Ω. |Z| = √(30² + 40²) = 50 Ω. I = 100/50 = 2 A.
Question 16 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A load has V = 200∠0° V and I = 10∠−30° A. The reactive power is
Choose your answer for question 16 A. 500 VAr B. 2000 VAr C. 1000 VAr D. 1732 VArAnswer and explanation Correct answer: C
Q = V I sin φ = 200 × 10 × sin 30° = 1000 VAr. The real power is 200 × 10 × cos 30° = 1732 W.
Question 17 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A parallel resonant circuit has L = 1 mH, C = 1 μF and a coil resistance of 10 Ω. The dynamic impedance at resonance is
Choose your answer for question 17 A. 10 Ω B. 31.6 Ω C. 100 Ω D. 1000 ΩAnswer and explanation Correct answer: C
Zd = L / (C R) = 10⁻³ / (10⁻⁶ × 10) = 100 Ω.
Question 18 · Electrical Engineering (SSC JE) · Circuit Theory and Networks In a series RC circuit being charged from a dc supply, the capacitor voltage reaches what fraction of the final value after one time constant?
Choose your answer for question 18 A. 50 percent B. 63.2 percent C. 36.8 percent D. 86.5 percentAnswer and explanation Correct answer: B
v(t) = V (1 − e^(−t/τ)). At t = τ this is V (1 − 0.368) = 0.632 V.
Question 19 · Electrical Engineering (SSC JE) · Circuit Theory and Networks For a reciprocal two-port network, the ABCD parameters satisfy
Choose your answer for question 19 A. AD − BC = 0 B. AD − BC = 1 C. AD + BC = 1 D. AD = BCAnswer and explanation Correct answer: B
Reciprocity requires the determinant of the transmission matrix to be one.
Question 20 · Electrical Engineering (SSC JE) · Circuit Theory and Networks A series RLC circuit has R = 10 Ω, L = 1 mH and C = 1 μF. The quality factor is about
Choose your answer for question 20 A. 31.6 B. 0.316 C. 3.16 D. 316Answer and explanation Correct answer: C
Q = (1/R) √(L/C) = (1/10) × √(10⁻³/10⁻⁶) = 31.62/10 = 3.16.