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Q.What is Kirchoff's current law of electric circuit? In the given figure, calculate the potential difference between A and C.

UPMSP Uttar Pradesh board Class 12 Physics current electricity bridge network: a square ABCD with side resistors A-D 40 ohm, D-C 20 ohm, C-B 20 ohm and A-B 40 ohm, a 60 ohm diagonal resistor across A to C, and a 110 V battery connected across A and B, used to find the potential difference between A and C.
Figure
Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2018Subjective· 2mImportance★★★★★
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KCL = 'sum of currents at a node is zero'. Solving the node equations gives V_A − V_C = 66 V.

Kirchhoff's current law (junction rule): At any junction in an electrical circuit, the algebraic sum of the currents meeting is zero — i.e. total current entering equals total current leaving. It is a statement of conservation of charge.

Solving the circuit: The resistors are A–B = 40 Ω (bottom), A–D = 40 Ω (left), D–C = 20 Ω (top), C–B = 20 Ω (right), and diagonal A–C = 60 Ω. The 110 V source is applied across A and B. Take V_B = 0 and V_A = 110 V; find V_C and V_D.

Node D (joined only to A via 40 Ω and to C via 20 Ω):

(110 − V_D)/40 = (V_D − V_C)/20

⇒ 110 + 2V_C = 3V_D. ...(1)

Node C (joined to D via 20 Ω, to B via 20 Ω, to A via 60 Ω):

(V_D − V_C)/20 + (110 − V_C)/60 = V_C/20 …

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