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Unit 4 - Electricity Topic 3
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Resistance A property of a resistor or load that slows charges. It converts electrical energy into other forms of energy. Good conductors offer little resistance like metal wires. A toaster has nichrome wires which offers a lot of resistance creating a lot of heat.
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Calculating Resistance: The unit of resistance is the ohm The symbol is omega ( Ω ) Resistance is measured using an ohmmeter. The relationship between resistance, voltage, and current is called OHM’s LAW V = I x R voltage = current x resistance
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Problems: V = I x R I = V R R = V I V = I x R I = V R R = V I
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Try this example: I = ? I = ? V I = V / R V I = V / R I = 9 [V] / 18 [Ω] I = 9 [V] / 18 [Ω] I = 0.5 [A] I = 0.5 [A]
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Variable Resistors Some resistors can vary the amount of resistance they offer resulting in different amounts of energy being released. Examples: Dimmer switches Temperature controls on stoves Volume controls Variable speed motors like toy trains
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There are two types of electrical circuits: SERIES CIRCUITSPARALLEL CIRCUITS
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The components are connected end-to-end, one after the other. They make a simple loop for the current to flow round. SERIES CIRCUITS If one bulb ‘blows’ it breaks the whole circuit and all the bulbs go out.
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PARALLEL CIRCUITS The current has a choice of routes. The components are connected side by side. If one bulb ‘blows’ there is still be a complete circuit to the other bulb so it stays alight.
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Measuring current A A This is how we draw an ammeter in a circuit. SERIES CIRCUIT PARALLEL CIRCUIT
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Measuring current SERIES CIRCUIT PARALLEL CIRCUIT current is the same at all points in the circuit. 2A current is shared between the components 2A 1A
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Copy the following circuits and fill in the missing ammeter readings: ? ? 4A 3A? ? 1A ? 3A 1A
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