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Parallel circuit examples
Parallel circuit examples









parallel circuit examples
  1. Parallel circuit examples install#
  2. Parallel circuit examples series#

In addition to voltage and current sources, there is one more parameter that is commonly owned by each component, namely resistance or load. On the total resistance of each circuit has a different way of addition including:

Parallel circuit examples series#

“Unlike the case with a series circuit, the voltage applied to all circuits will always be the same value in parallel circuits.” Electrical resistance “In a series circuit, the electric voltage is not as strong as the current, but the voltage that is installed is equal to the voltages on the components.” In a series circuit, the components are simpler consisting of a voltage source, cable and load. Although sometimes a series circuit uses a switch, a series circuit only requires one switch. “In parallel circuits, there are complex arrangements and there are branching of cables between loads or installed voltages.” Circuit Component DifferenceĪpart from the obvious differences in arrangement, we can distinguish series and parallel circuits from the components used. Although the amount of load or resistance can be adjusted, there are differences in the components, including: “The series circuit has a simple arrangement so that the series arrangement does not have cable branches between the load or the installed voltage source.” What we can clearly see from the difference between the two circuits is the arrangement of the components installed. The arrangement can be seen from the branching of the cable or the placement of its components. For more details, here is the description in detail:

parallel circuit examples

There is also a symbol regarding another parameter called electric current. Usually, electric current is indicated by the direction of the arrow on the circuit and the symbol “I” Difference between Series and Parallel CircuitsĪs we know, series and parallel circuits have significant differences. Some of these differences include: preliminaryīefore we dive deeper into series and parallel circuits, we need to know the basics first.Īn electrical circuit is a collection of several electrical components that are connected and attached to a voltage. Here are some electrical components along with symbols that are often used in circuits:

Parallel circuit examples install#

Knowledge of parallel series circuits is something that is commonly used by everyone. An example of its application is when someone wants to install a light installation in his house. Therefore, in this article, we will discuss series and parallel circuits starting from the differences, advantages and disadvantages along with examples of both. In the equivalent resistance of a network, a single resistor could substitute the complete network so that for a specific applied voltage and/or the equivalent current can be obtained similar to the one when used as a network.However, many people still do not understand electricity, especially the basics of electricity such as series and parallel circuits. Equivalent resistance may sound complicated, but it’s just a technical way to say “total resistance”. The equivalent resistance is defined between two terminals or nodes of the network. The equivalent resistance is defined as a point where the total resistance is measured in a parallel or series circuit (in either the whole circuit or in a part of the circuit).

  • Example 2 What is Equivalent Resistance?.
  • Difficult Equivalent Resistance Problems.
  • Which Circuit Has the Smallest Equivalent Resistance.
  • For the Combination of Resistors Shown, Find the Equivalent Resistance Between Points A and B.










  • Parallel circuit examples