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Q.(a) State Kirchhoff's laws in Electricity.

(b) What is the Net resistance between points A and B in the circuit shown?
Himachal HpboseHPBOSE Plus Two Board 2024Subjective· 3mImportance★★★★★
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Figure — Two-branch resistor network between terminals A and B — 6 Ω parallel 2 Ω then 3.5 Ω in series on the top branch, a 5 Ω bottom branch, and 2.5 Ω in series to B (HPBOSE 2024 Physics Q20b)
Figure — Two-branch resistor network between terminals A and B — 6 Ω parallel 2 Ω then 3.5 Ω in series on the top branch, a 5 Ω bottom branch, and 2.5 Ω in series to B (HPBOSE 2024 Physics Q20b)

State the two Kirchhoff laws, then reduce the network: combine the 6 Ω and 2 Ω in parallel, add the 3.5 Ω in series to get 5 Ω, put that in parallel with the 5 Ω branch, and add the final 2.5 Ω in series.

(a) Kirchhoff's Laws:

  1. Kirchhoff's Current Law / Junction Rule: At any junction in a circuit, the algebraic sum of currents is zero - the total current flowing into a junction equals the total current flowing out of it. This follows from conservation of electric charge (charge cannot accumulate at a junction in the steady state).

    ∑Iin=∑Iout\sum I_{in} = \sum I_{out}

  2. Kirchhoff's Voltage Law / Loop Rule: Around any closed loop, the algebraic sum of all potential differences (source EMFs and IRIR drops across resistors) is zero. This follows from conservation of energy.

    ∑ε=∑IR(around a closed loop)\sum \varepsilon = \sum IR \quad \text{(around a closed loop)}

(b) Net resistance between A and B:

Work inward from the resistors nearest A. The 6 Ω\Omega and 2 Ω\Omega resistors are in parallel: …

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