Physics · JEE

Series and parallel combinations of resistors, temperature dependence of resistance Revision for JEE

18+ syllabus-aligned questions available

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Revise Series and parallel combinations of resistors, temperature dependence of resistance by covering every subtopic once, drilling formulas, then solving 18+ timed MCQs with full solutions.

Use this Series and parallel combinations of resistors, temperature dependence of resistance revision checklist before mocks and the final exam. Reinforce concepts with 18+ syllabus-aligned MCQs on Goodmarks.

Revision checklist

  1. 1.Core idea: Series and parallel combinations of resistors, temperature dependence of resistance
  2. 2.Relates to other subtopics in Current Electricity
  3. 3.Drift velocity, Ohm's law, resistivity
  4. 4.Series/parallel resistors, cells, Kirchhoff's laws
  5. 5.Master Series and parallel combinations of resistors, temperature dependence of resistance definitions and standard results
  6. 6.Solve 20 timed MCQs for Series and parallel combinations of resistors, temperature dependence of resistance

Free sample questions

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Q1PhysicsUnit 12: Current Electricity
The equivalent Resistance: This question has multiple correct options
Q2PhysicsUnit 12: Current Electricity
Two heater coils separately take 10 min and 5 min to boil a certain amount of water. If both the coils are connected in series, the time taken will be
Q3PhysicsUnit 12: Current Electricity
When two same conducting rod are kept at different temperature,
Q4PhysicsUnit 12: Current Electricity
If two resistors of resistance 30Ω30 \Omega and 40Ω40 \Omega are connected in parallel across a battery. The ratio of the potential difference across them is
Q5PhysicsUnit 12: Current Electricity
Nidhi has two bulbs connected across two cells in a simple circuit as shown. How can she make the bulbs glow dimmer?
Q6PhysicsUnit 12: Current Electricity
The resistance of an iron wire is 10Ω10 \Omega and its temperature coefficient of resistance is 5×103/oC.5 \times 10^{-3} /^{o} C . A current of 30mA30 \mathrm{mA} is flowing in it at 20C20^{\circ} \mathrm{C}. Keeping potential difference across its ends constant, if its temperature is increased to 120C120^{\circ} \mathrm{C} then the current flowing in the wire will be (in mA\mathrm{mA} )
Q7PhysicsUnit 12: Current Electricity
In a parallel circuit of bulbs,
Q8PhysicsUnit 12: Current Electricity
For a metallic wire, the ratio Vi\frac{V}{i} (where, V=\mathbf{V}= applied potential difference and i=\mathbf{i}= current flowing

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Frequently asked questions

How should I revise Series and parallel combinations of resistors, temperature dependence of resistance before JEE?

Follow the checklist on this page, revise formulas daily, and attempt mixed MCQs every 2–3 days.