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Question 1 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A 12 V battery is connected across a 4 Ω resistor. The current drawn is
Choose your answer for question 1 A. 3 A B. 48 A C. 8 A D. 0.33 AAnswer and explanation Correct answer: A
By Ohm’s law I = V/R = 12/4 = 3 A.
Question 2 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A heater rated 230 V, 1150 W has a resistance of
Choose your answer for question 2 A. 5 Ω B. 26 450 Ω C. 0.2 Ω D. 46 ΩAnswer and explanation Correct answer: D
R = V²/P = 230² / 1150 = 52 900 / 1150 = 46 Ω.
Question 3 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The length of a wire is doubled and its diameter is halved. Its resistance becomes
Choose your answer for question 3 A. 4 times B. 16 times C. 2 times D. 8 timesAnswer and explanation Correct answer: D
R = ρl/A. Length ×2 and area ÷4 (area ∝ d²) give R × 2 × 4 = 8 times.
Question 4 · Electrical Engineering (SSC JE) · Basic Electrical Engineering Two resistors of 10 Ω and 15 Ω are connected in parallel. The equivalent resistance is
Choose your answer for question 4 A. 150 Ω B. 25 Ω C. 6 Ω D. 12.5 ΩAnswer and explanation Correct answer: C
R = (10 × 15)/(10 + 15) = 150/25 = 6 Ω.
Question 5 · Electrical Engineering (SSC JE) · Basic Electrical Engineering Kirchhoff’s current law is based on the law of conservation of
Choose your answer for question 5 A. charge B. mass of the conductor C. energy D. momentumAnswer and explanation Correct answer: A
At a node, the charge entering equals the charge leaving, so the algebraic sum of currents is zero.
Question 6 · Electrical Engineering (SSC JE) · Basic Electrical Engineering One kilowatt-hour is equal to
Choose your answer for question 6 A. 3600 J B. 360 MJ C. 36 kJ D. 3.6 MJAnswer and explanation Correct answer: D
1 kWh = 1000 W × 3600 s = 3.6 × 10⁶ J.
Question 7 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The energy stored in a 100 μF capacitor charged to 100 V is
Choose your answer for question 7 A. 1 J B. 5 J C. 0.05 J D. 0.5 JAnswer and explanation Correct answer: D
E = ½CV² = 0.5 × 100 × 10⁻⁶ × 10⁴ = 0.5 J.
Question 8 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The temperature coefficient of resistance of a semiconductor is
Choose your answer for question 8 A. positive B. infinite C. zero D. negativeAnswer and explanation Correct answer: D
Heating frees more charge carriers in a semiconductor, so its resistance falls as temperature rises. In metals it rises.
Question 9 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The energy stored in an inductor of 2 H carrying 3 A is
Choose your answer for question 9 A. 12 J B. 9 J C. 18 J D. 6 JAnswer and explanation Correct answer: B
E = ½LI² = 0.5 × 2 × 9 = 9 J.
Question 10 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The time constant of a series RL circuit with R = 10 Ω and L = 0.5 H is
Choose your answer for question 10 A. 0.05 s B. 0.5 s C. 20 s D. 5 sAnswer and explanation Correct answer: A
τ = L/R = 0.5/10 = 0.05 s.
Question 11 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The SI unit of conductance is
Choose your answer for question 11 A. siemens B. henry C. weber D. ohmAnswer and explanation Correct answer: A
Conductance G = 1/R and is measured in siemens (formerly mho).
Question 12 · Electrical Engineering (SSC JE) · Basic Electrical Engineering The magnitude of the charge on an electron is approximately
Choose your answer for question 12 A. 9.1 × 10⁻¹⁹ coulomb B. 6.02 × 10²³ coulomb C. 1.6 × 10⁻³¹ coulomb D. 1.6 × 10⁻¹⁹ coulombAnswer and explanation Correct answer: D
1.6 × 10⁻¹⁹ C is the elementary charge. 9.1 × 10⁻³¹ kg is the mass of an electron.
Question 13 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A 6 Ω and a 3 Ω resistor in parallel are connected in series with a 4 Ω resistor across a 12 V supply. The current drawn from the supply is
Choose your answer for question 13 A. 3 A B. 1 A C. 4 A D. 2 AAnswer and explanation Correct answer: D
6 Ω ∥ 3 Ω = 2 Ω. Total = 2 + 4 = 6 Ω. I = 12/6 = 2 A.
Question 14 · Electrical Engineering (SSC JE) · Basic Electrical Engineering Resistors of 20 kΩ and 30 kΩ are connected in series across a 100 V supply. The voltage across the 30 kΩ resistor is
Choose your answer for question 14 A. 50 V B. 40 V C. 75 V D. 60 VAnswer and explanation Correct answer: D
V = 100 × 30 / (20 + 30) = 60 V.
Question 15 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A 2 kW heater runs for 3 hours every day for 30 days. At ₹6 per unit, the monthly cost of the energy is
Choose your answer for question 15 A. ₹540 B. ₹180 C. ₹1,080 D. ₹2,160Answer and explanation Correct answer: C
Energy = 2 × 3 × 30 = 180 kWh. Cost = 180 × 6 = ₹1,080.
Question 16 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A battery of emf 12 V and internal resistance 0.5 Ω supplies a 5.5 Ω load. The terminal voltage is
Choose your answer for question 16 A. 11.5 V B. 11 V C. 10.5 V D. 12 VAnswer and explanation Correct answer: B
I = 12/(0.5 + 5.5) = 2 A. Terminal voltage = 12 − 2 × 0.5 = 11 V.
Question 17 · Electrical Engineering (SSC JE) · Basic Electrical Engineering Capacitors of 6 μF and 3 μF are connected in series. The equivalent capacitance is
Choose your answer for question 17 A. 18 μF B. 2 μF C. 4.5 μF D. 9 μFAnswer and explanation Correct answer: B
C = (6 × 3)/(6 + 3) = 2 μF.
Question 18 · Electrical Engineering (SSC JE) · Basic Electrical Engineering If the distance between the plates of a parallel plate capacitor is doubled, keeping everything else the same, the capacitance
Choose your answer for question 18 A. becomes half B. remains the same C. becomes four times D. doublesAnswer and explanation Correct answer: A
C = εA/d, so C is inversely proportional to the plate separation d.
Question 19 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A resistor has a resistance of 10 Ω at 20 °C and a temperature coefficient of 0.004 per °C at 20 °C. Its resistance at 70 °C is
Choose your answer for question 19 A. 12 Ω B. 14 Ω C. 10.2 Ω D. 13 ΩAnswer and explanation Correct answer: A
Rt = R0 [1 + α (T − T0)] = 10 × [1 + 0.004 × 50] = 12 Ω.
Question 20 · Electrical Engineering (SSC JE) · Basic Electrical Engineering A current of 5 A flows for 2 minutes through a 10 Ω resistor. The heat produced is
Choose your answer for question 20 A. 3 kJ B. 30 kJ C. 600 J D. 300 kJAnswer and explanation Correct answer: B
H = I²Rt = 25 × 10 × 120 = 30 000 J.