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  2. Kirchhoff's circuit laws - Wikipedia

    en.wikipedia.org/wiki/Kirchhoff's_circuit_laws

    The current entering any junction is equal to the current leaving that junction. i 2 + i 3 = i 1 + i 4. This law, also called Kirchhoff's first law, or Kirchhoff's junction rule, states that, for any node (junction) in an electrical circuit, the sum of currents flowing into that node is equal to the sum of currents flowing out of that node; or equivalently:

  3. Nodal analysis - Wikipedia

    en.wikipedia.org/wiki/Nodal_analysis

    Kirchhoff's current law is the basis of nodal analysis. In electric circuits analysis, nodal analysis, node-voltage analysis, or the branch current method is a method of determining the voltage (potential difference) between "nodes" (points where elements or branches connect) in an electrical circuit in terms of the branch currents.

  4. Duality (electrical circuits) - Wikipedia

    en.wikipedia.org/wiki/Duality_(electrical_circuits)

    2 Examples. Toggle Examples subsection. ... Kirchhoff's current lawKirchhoff's voltage law. KVL and KCL; Thévenin's theorem – Norton's theorem; History

  5. Current divider - Wikipedia

    en.wikipedia.org/wiki/Current_divider

    Figure 1: Schematic of an electrical circuit illustrating current division. Notation R T refers to the total resistance of the circuit to the right of resistor R X.. In electronics, a current divider is a simple linear circuit that produces an output current (I X) that is a fraction of its input current (I T).

  6. Nodal admittance matrix - Wikipedia

    en.wikipedia.org/wiki/Nodal_admittance_matrix

    The nodal admittance matrix of a power system is a form of Laplacian matrix of the nodal admittance diagram of the power system, which is derived by the application of Kirchhoff's laws to the admittance diagram of the power system. Starting from the single line diagram of a power system, the nodal admittance diagram is derived by:

  7. Mesh analysis - Wikipedia

    en.wikipedia.org/wiki/Mesh_analysis

    Solving for mesh currents instead of directly applying Kirchhoff's current law and Kirchhoff's voltage law can greatly reduce the amount of calculation required. This is because there are fewer mesh currents than there are physical branch currents. In figure 2 for example, there are six branch currents but only three mesh currents.

  8. Diode modelling - Wikipedia

    en.wikipedia.org/wiki/Diode_modelling

    Once is found, can be found from the Kirchhoff's law equation. Sometimes an iterative procedure depends critically on the first guess. In this example, almost any first guess will do, say =. Sometimes an iterative procedure does not converge at all: in this problem an iteration based on the exponential function does not converge, and that is ...

  9. File:KCL - Kirchhoff's circuit laws.svg - Wikipedia

    en.wikipedia.org/wiki/File:KCL_-_Kirchhoff's...

    This image is a derivative work of the following images: File:KCL.png licensed with CC BY-SA 3.0-migrated, GFDL . 2006-08-01T17:41:58Z Omegatron 196x195 (5359 Bytes) Also, user-created images may not be watermarked, distorted, have any credits in the image itself or anything else that would hamper their free use