# Wiring Diagram Volvo V40

By Vashti Swan
11 December, 2018 10:29:08
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It is difficult for students to understand how electric circuits function. The processes involved are invisible because they occur at the atomic level and thus are abstract in nature. Electricity can not be felt with using the personal senses (unless we receive an electric which is certainly unwanted), electricity cannot be manipulated directly, and what is happening is thus not readily apparent.

Such abstract concepts can be explained using analogies which use familiar words or ideas to represent the ideas which need to be conveyed. Analogies are selected which students should already be familiar with. However, no single analogy can represent all features of an electrical circuit and there are important differences between the analogies used and circuits. Instead appropriate analogies should be chosen to teach selected concepts and students should be prompted to compare analogies with circuits and identify how they differ.

They have been widely used in primary and secondary education (e.g. Duit 1991; de Bóo and Asoko 2000; Asoko and Boo 2001). Analogies are particularly suitable for use in physics (Reiners and Glynn 1995; Kircher and Hauser 1995). They are ideal for teaching principles relating to electricity (Dupin and Johsua 1989, Cosgrove 1995). Students can use analogies to relate with something they are already familiar with and see the similarities between the two systems.

In Electric circuit the End point is always called return because the electrons travel back to the source it came from.

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