Physics · Professor Newton

Every card in Electricity and magnetism, Year 10: circuits, charge and resistance

The whole deck, in order — so you can read it through before your child ever sees it.

1 GCSE-PHYS-ELE-0001

In a circuit diagram, how can you tell that two lamps are connected in parallel and not in series?

Each lamp is on its own branch between the same two junctions

HintTrace the wire from the cell with a finger and see whether it ever splits.

WhyIn series, the components follow one another on a single loop with no junctions. In parallel, the wire divides, each lamp sits on a separate path, and the paths join up again. Reading this off a diagram is the first step in interpreting any circuit.

2 GCSE-PHYS-ELE-0002

A circuit diagram shows a cell joined to two parallel branches. Branch 1 holds a switch and lamp A. Branch 2 holds lamp B only. The switch is opened. Which lamps are lit?

Lamp B only

HintFollow each complete path from one end of the cell back to the other, and see which is broken.

WhyAn open switch breaks only the branch it is in. Branch 2 still makes a complete loop with the cell, so lamp B stays on, while no current can flow through lamp A. Interpreting a diagram means tracing every loop like this.

3 GCSE-PHYS-ELE-0003

Two or more cells connected together

A battery

HintIn everyday speech people use this word for a single AA cell as well.

WhyIn physics a single source of potential difference is a cell. Joining several end to end adds their potential differences, which is why a torch that needs 3 V holds two 1.5 V cells. Circuit diagrams use different symbols for the two.

4 GCSE-PHYS-ELE-0004

A pupil draws a circuit diagram with the ammeter on a separate branch, joined across the two ends of a lamp. Why is this a mistake?

An ammeter must be in series with the lamp

HintFor the meter to count the charge passing a component, where does that charge have to go?

WhyAn ammeter measures the current flowing through itself, so it has to sit on the same loop as the component, with all of that component's current passing through it. Joined across the lamp it would offer the current an easy path around the lamp instead. Checking a diagram for this error is part of drawing circuits correctly.

5 GCSE-PHYS-ELE-0005

A circuit diagram shows a cell, a switch and two lamps on a single loop. A voltmeter is drawn on its own short branch, joined to the wire on either side of the second lamp. What does the voltmeter measure?

The potential difference across the second lamp

HintLook at which component lies between the two points where the meter's leads touch the loop.

WhyA voltmeter compares two points in a circuit, so it is always connected in parallel with the component of interest. Whatever sits between its two connection points is what it measures. Here that is one lamp only, not the cell and not both lamps.

6 GCSE-PHYS-ELE-0006

The unit of electric charge

The coulomb

HintIts symbol is a capital C, and it is named after an eighteenth-century French physicist.

WhyCharge flow has the symbol Q. One of these units is the charge that passes a point when a current of 1 ampere flows for 1 second. An ampere is therefore one of them per second.

7 GCSE-PHYS-ELE-0007

The size of an electric current tells you how quickly electrical ____ is flowing.

charge

HintIt is the property that electrons carry, measured in coulombs.

WhyA bigger current means more of it passes each point every second. This is what the equation Q = I t says: the amount that flows is the current multiplied by the time. In a single closed loop the current has the same value at every point.

8 GCSE-PHYS-ELE-0008

A current of 2 A flows through a lamp for 30 s. How much charge flows through the lamp, in coulombs? (number only)

60

HintEach second, 2 C goes past.

WhyCharge flow = current × time, or Q = I t, so Q = 2 × 30. AQA expects this equation to be recalled. The time must be in seconds.

9 GCSE-PHYS-ELE-0009

A charge of 600 C flows through a phone charger in 5 minutes. Calculate the current.

2 A

HintBefore dividing, check the unit that the time has been given in.

WhyRearranging Q = I t gives I = Q ÷ t. The time must be in seconds: 5 minutes is 300 s, so I = 600 ÷ 300. The equation is one AQA expects pupils to recall.

10 GCSE-PHYS-ELE-0010

A complete loop of wire contains a lamp but no cell or battery. Why does no charge flow round it?

There is no source of potential difference

HintThe charges are free to move, but nothing is pushing them.

WhyA closed circuit is not enough on its own: the loop must also include something, such as a cell, battery or power supply, that provides a potential difference to drive the charge round. Take that away and the charges in the wire have no reason to drift one way more than the other.

11 GCSE-PHYS-ELE-0011

State, in words, the equation that links potential difference, current and resistance, with potential difference as the subject.

potential difference = current × resistance

HintThe two quantities on the right multiply; neither is divided.

WhyIn symbols this is V = I R, with V in volts, I in amperes and R in ohms. AQA expects it to be recalled and rearranged for any of the three quantities. It shows that, for a fixed potential difference, a larger resistance means a smaller current.

12 GCSE-PHYS-ELE-0012

A current of 20 mA flows through a 150 Ω resistor. Calculate the potential difference across the resistor, in volts. (number only)

3

HintThe current is not yet in the unit the equation needs.

WhyFirst convert: 20 mA = 0.020 A. Then V = I × R = 0.020 × 150. Currents in electronic circuits are often given in milliamps, and forgetting the conversion makes the answer a thousand times too large.

13 GCSE-PHYS-ELE-0013

At constant temperature, the resistance of a wire is directly proportional to its ____.

length

HintIt is the factor a pupil changes by sliding a crocodile clip along the wire.

WhyIn required practical 15, readings of potential difference and current are taken for different amounts of the same wire, and resistance is calculated each time. A graph of resistance against this quantity is a straight line through the origin, so doubling it doubles the resistance. The charge has to pass more of the metal on its way through.

14 GCSE-PHYS-ELE-0014

In the practical on how the length of a wire affects its resistance, the current is kept small and the circuit is switched off between readings. Why?

To stop the wire heating up, which would change its resistance

HintA current has a side effect you can feel with your fingers.

WhyThe resistance of a metal wire rises as it gets hotter. If the wire warmed during the experiment, the readings would reflect temperature as well as length, and the test would not be fair. AQA specifies that this investigation is done at constant temperature.

15 GCSE-PHYS-ELE-0015

A pupil plots resistance against length for a wire. The points lie on a straight line, but the line meets the resistance axis slightly above zero instead of passing through the origin. Is this the result of a random error or a systematic error?

A systematic error (a zero error)

HintEvery reading seems to be too large by the same small amount.

WhyA zero length of wire should have zero resistance. A constant extra amount on every reading points to a fault in the set-up: usually the resistance of the contacts at the crocodile clips, or a clip not sitting exactly at the start of the ruler. Random errors would scatter the points instead of shifting the whole line.

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