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Combinations of Resistances

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Estimated time: 8 minutes
CISCE: Class 12

Definition: Equivalent Resistance

A single resistance that can replace a group of resistors between two points in a circuit without changing the current drawn or the potential difference across those points.

CISCE: Class 12

Definition: Mixed (Series-Parallel) Grouping

In many practical circuits, some resistors are connected in series while others are in parallel within the same network. Such networks are called mixed grouping.

CISCE: Class 12

Series Combination of Resistors

Concept

When resistors are connected end-to-end, so that the same current flows through each one, they are said to be in series. The total voltage divides across the resistors in proportion to their resistance.

Key Formula

R = R1 + R2 + R3

Key Results

  • Current is the same through every resistor: I1 = I2 = I3 = I.
  • Voltage divides in proportion to resistance: V1 : V2 : V3 = R1 : R2 : R3.
  • Equivalent resistance is always greater than the largest individual resistor.
CISCE: Class 12

Parallel Combination of Resistors

Concept

When resistors are connected such that their first ends meet at one common point and second ends at another, they are in parallel. Voltage across each branch is equal, but current divides among the branches.

Key Formula

\[\frac {1}{R}\] = \[\frac {1}{R_1}\] + \[\frac {1}{R_2}\] + \[\frac {1}{R_3}\]

Key Results

  • Voltage is the same across every branch: V1 = V2 = V3 = V.
  • Current divides inversely with resistance: I1 : I2 : I3 = \[\frac {1}{R_1}\] : \[\frac {1}{R_2}\] : \[\frac {1}{R_3}\].
  • Equivalent resistance is always less than the smallest individual resistance.
CISCE: Class 12

Series vs. Parallel — Comparison Table

Property Series Combination Parallel Combination
Current Same in all resistors Divides among branches
Voltage Divides across resistors Same across all branches
Equivalent Resistance Greater than largest resistor Less than the smallest resistor
Formula R = R1 + R2 + R3 \[\frac {1}{R}=\frac {1}{R_1}+\frac {1}{R_2}+\frac {1}{R_3}\]
Use Case Voltage divider circuits Household wiring, appliances
Failure Effect One break stops entire circuit One break does not affect others
CISCE: Class 12

Mixed Grouping

Solving Approach (Step-by-Step)

  1. Identify purely series sections and reduce them to a single equivalent resistance.
  2. Identify purely parallel sections and reduce them to a single equivalent resistance.
  3. Combine the reduced values with the remaining resistors, repeating steps 1-2 until one final equivalent resistance remains.
CISCE: Class 12

Real-Life Application

Household electrical appliances (fans, lights, refrigerators) are wired in parallel so that each device receives the full supply voltage and can operate independently — if one appliance fails or is switched off, others continue functioning normally.

Analogy: Think of series resistors as a single-lane road (all traffic/current must pass through each point one after another), while parallel resistors are like a multi-lane highway (traffic/current splits and flows independently through each lane).

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