NEET · Physics —

Current Electricity appeared 4 times across 1 year — 8.9% of Physics. This question is from Terminal Potential Difference.

Year 2024 Total
Questions 4 4

A resistor is connected to a battery of 12 V emf and internal resistance 2Ω . If the current in the circuit is 0.6 A, the terminal voltage of the battery is:

Solution & Explanation

Related Formula

V = E - I r

Core Logic

Circuit diagram solution for Q26
Circuit diagram solution for Q26

V = 12 - (0.6 × 2) = 12 - 1.2 = 10.8 V
Pattern Recognition

Terminal voltage during discharge equals EMF minus internal voltage drop.

Chapter Mix

Class 12 Physics: Current Electricity

Reference Study Guides

More Current Electricity Previous-Year Questions

Q9 neet_2024_05_may_morning Wheatstone Bridge Circuits
A uniform metallic wire having resistance 4Ω is bent to form a square loop (ABCD) (see figure). A resistance of 2Ω is connected between points B and D and a battery of 2 V is connected across points A and C as shown in the figure. Now the value of current (I) is
Wheatstone Bridge Circuits diagram for Q9 - NEET 2026 Code 12
Square loop formed by 4-ohm wire with additional 2-ohm resistor between BD and power supply across AC.
  • A. 2 A
  • B. 1 A
  • C. 3 A
  • D. 4.5 A

Solution

Related Formula
I = EReff
Core Logic

Each side of the square loop has resistance 1Ω.

Equivalent Wheatstone bridge diagram for Q9 solution
Square loop formed by 4-ohm wire with additional 2-ohm resistor between BD and power supply across AC.

This constitutes a balanced Wheatstone bridge between points A and C. No current flows through the central 2Ω resistor.

Equivalent Wheatstone bridge diagram for Q9 solution
Square loop formed by 4-ohm wire with additional 2-ohm resistor between BD and power supply across AC.

Reff, AC = ((1+1) × (1+1))/((1+1) + (1+1)) = 1Ω I = EReff = (2)/(1) = 2A
Pattern Recognition

Symmetrical bridge configuration leads to zero current in central resistor.

Chapter Mix

Class 12 Physics: Current Electricity

Q16 neet_2024_05_may_morning Metre Bridge Experiments
In a metre bridge experiment (see figure), the positions of the cell, E, and galvanometer, G, are interchanged. We shall observe in the galvanometer:
Metre Bridge Experiments diagram for Q16 - NEET 2026 Code 12
Metre bridge setup with cell E and galvanometer G connected.
  • A. Only the right-sided deflection
  • B. Only the left-sided deflection
  • C. There will be no deflection irrespective of the position of the jockey
  • D. Both right-sided and left-sided deflection and at balance point, no deflection

Solution

Related Formula
(R₁)/(R₂) = (l₁)/(100 - l₁)
Core Logic

Position of the null point does not change when galvanometer G and cell E are interchanged.

Interchanged metre bridge diagram solution for Q16
Metre bridge setup with cell E and galvanometer G connected.

At balance point, deflection is zero. Away from balance point, deflection will be present on left or right sides.

Pattern Recognition

Interchanging cell and galvanometer in Wheatstone bridge leaves the balance condition invariant.

Chapter Mix

Class 12 Physics: Current Electricity

Q29 neet_2024_05_may_morning Power Consumption in Resistors
A room heater is rated 400 W, 220 V. If the supply voltage drops to 200 V, what will be the power consumed (approximately)?
  • A. 121 W
  • B. 331 W
  • C. 200 W
  • D. 400 W

Solution

Related Formula
Pc = ((V)/(V₀))² P₀
Core Logic
Pc = ((200)/(220))² × 400 = ((10)/(11))² × 400 = (40000)/(121) ≈ 331 W
Pattern Recognition

Power scales quadratically with voltage for constant resistance.

Chapter Mix

Class 12 Physics: Current Electricity

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