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Learn how to identify and apply series and parallel rules to circuits with both types of interconnections. Find out how to calculate voltage, current, and resistance in series-parallel circuits using tables and examples.
Series vs Parallel Circuit Review: In a series circuit, all components are connected end-to-end, forming a single path for current flow. In a parallel circuit, all components are connected across each other, forming exactly two sets of electrically common points.
Learn the definitions, properties and examples of series and parallel circuits, two common types of electrical networks. A series circuit has the same current and the sum of voltages, while a parallel circuit has the same voltage and the sum of currents.
Learn how to analyze series-parallel circuits using equivalent resistances, current dividers and voltage dividers. See three examples with solutions and diagrams.
Learn how to analyse and solve DC circuits that consist of both series and parallel paths. Follow the steps to simplify the circuit, find the equivalent resistances, and calculate the currents and voltages.
Learn the difference between series and parallel circuits, how to calculate their resistances, and how to use them with capacitors and inductors. This tutorial covers basic components, current flow, and voltage drop in simple circuits.
Learn how to calculate the equivalent resistance of resistors connected in series or parallel circuits. See examples, diagrams, and equations for current, voltage, and power in series and parallel circuits.
Learn how to solve series-parallel circuits using equivalent resistances and voltage-divider principle. See circuit diagrams, calculations, and examples of series-parallel resistors.
Learn the fundamental differences between series and parallel circuits in terms of current flow, voltage distribution, component dependency, and practical applications. Compare the advantages and disadvantages of each type and see examples of real-world devices that use them.
Analysis of series-parallel networks involves recognizing those sub-circuits that are in series or that are in parallel among themselves, performing simplifications as needed, and winding up with a simple series-only or parallel-only equivalent.