Lesson T5.1.1
T5.1.1 Current in series and parallel circuits Quiz: KS3 Physics, Unit 5
20 questions
In partnership with Revision Ninja
Lesson T5.1.1, Current in series and parallel circuits: 20 multiple choice questions for the KS3 Physics (National Curriculum), Unit 5: Electricity and magnetism, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
-
What is an electric current?
- The flow of heat energy along a wire, which carries warmth from the battery to each component
- The flow of electric charge around a circuit
- The voltage across a component, which measures how hard the battery pushes the charge along
- A stored quantity of charge that stays still in the wire until it is released by a switch
-
What unit is electric current measured in?
- Volts (V), which is the unit used for the energy given to each coulomb of charge in a circuit
- Amperes (A)
- Watts (W), which is the unit used for the rate at which energy is transferred by a device
- Ohms (Ω), which is the unit used for how strongly a component opposes the flow of current
-
In a series circuit, how does the current at different points compare?
- It is larger after each component, because each component adds to the current flowing round the loop.
- It is the same at all points.
- It is smaller after each component, because each component uses up a part of the current as it passes.
- It is different only at the battery, because the current changes only where it leaves the cell.
-
In a parallel circuit, what happens to the current at a junction where a branch splits off?
- The current stops at the junction and restarts in each branch, which resets it to zero there.
- The current in the main circuit doubles at the junction, because two branches always double it.
- The current splits, and the currents in the branches add up to the current entering.
- The current is the same in every branch, whatever the resistance of each branch happens to be.
-
Where should an ammeter be placed in a circuit?
- In parallel across the component being measured, which lets it sense the voltage across the component
- Across the battery only, so that it reads the total energy stored in the cell of the circuit
- Away from all components on a separate wire, so that it can read the current without any contact
- In series with the component being measured
-
A current of 2 A flows for 30 seconds. How much charge flows? (Charge = current × time)
- 60 C
- 15 C, which is found by dividing the current by the time and then by the number of seconds
- 600 C, which is found by multiplying the current by the time and then by ten for safety
- 32 C, which is found by adding the current and the time together before doing the sum
-
Three lamps are connected in a series circuit with a battery. What happens to the current at each lamp?
- The current is largest at the last lamp, because the charge builds up as it moves round.
- The current is the same through each lamp.
- The current is zero at each lamp except the first, because the others block the flow of charge.
- The current is largest at the first lamp, because the battery pushes the most charge there.
-
Two identical lamps are connected in parallel to a battery. How does the current through the battery compare with one lamp alone?
- It is twice as large.
- It is the same, because the two lamps together draw no more current than a single lamp alone.
- It is half as large, because the two lamps share the current between them and reduce it.
- It is zero, because the lamps share the current so that the battery supplies none of it at all.
-
Which way does conventional current flow in a circuit?
- From the negative terminal to the positive terminal, which is the direction electrons are taken to move
- From the positive terminal of the cell, round the circuit to the negative terminal
- Equally in both directions at the same time, which keeps the charge from moving on overall
- Only in the bulbs and not in the wires, which is where the charge is used up by the circuit
-
What is the circuit symbol for a cell?
- A circle with a cross inside, which is the symbol used for a lamp in most circuit diagrams
- A long line and a short line, one after another
- A circle with a curved line inside, which is the symbol used for a motor in most circuit diagrams
- A box with a zigzag inside, which is the symbol used for a resistor in most circuit diagrams
-
In a parallel circuit, if one branch is broken, what happens to the other branches?
- They continue to work because they still have a complete path.
- They reverse the direction of their current, which lets the broken branch restart on its own.
- They stop working because the whole circuit is broken, since every part shares the same loop.
- They become brighter because they receive more current from the battery when one branch fails.
-
In a series circuit with two lamps, what happens if one lamp is removed?
- The other lamp is unchanged, because the lamps in a series circuit do not depend on each other.
- The current doubles through the remaining lamp, which is why it becomes much brighter than before.
- The other lamp goes out because the circuit is broken.
- The other lamp becomes brighter, because removing one lamp leaves more current for the remaining one.
-
The total current from a battery is 0.6 A and it splits equally into two identical branches. What is the current in each branch?
- 0.12 A in each branch, because the current is divided by the number of branches and then by five
- 0.6 A in each branch, because the full current from the battery flows through every branch in turn
- 0.3 A in each branch
- 1.2 A in each branch, because each branch receives the total current added to itself again
-
Which quantity is equal to charge divided by time?
- Potential difference, which is the energy transferred per unit of charge passing a component
- Resistance, which is the ratio of potential difference to current in a component of a circuit
- Power, which is the rate at which energy is transferred by a device in a circuit
- Current
-
Which of these is the flow of charge in a circuit?
- Resistance, which is how strongly a component opposes the flow of charge through it
- Energy stored in the battery, which is released slowly as the charge flows around the circuit
- Potential difference, which is the energy transferred for each unit of charge in a circuit
- Current
-
What happens to the current in a series circuit when another lamp is added?
- It stays exactly the same for a fixed battery, because the battery always supplies a set current.
- It decreases, because the total resistance increases.
- It becomes zero as the lamps share the current, leaving none to flow round the circuit at all.
- It increases, because there is more load on the battery and so it supplies more current.
-
Why is an ammeter connected with very low resistance?
- So that it does not significantly change the current in the circuit.
- So that it stores charge for the circuit, which then releases it to the components slowly.
- So that it makes the current larger in the circuit, which lets the meter read a bigger value.
- So that it turns the current into voltage, which is needed for the meter to display a reading.
-
Which statement describes a parallel circuit correctly?
- It has more than one path for the current to take.
- It never has current flowing through its components, because the branches only carry the voltage.
- It has only one path for the current to take, so the current follows a single loop only.
- It always has the same current in each branch as the battery supplies, whatever the branch is.
-
What is the unit of charge?
- Coulomb (C)
- Volt (V), which is the unit of potential difference, the energy given to each unit of charge
- Ampere (A), which is the unit of current, the rate of flow of charge around a circuit
- Ohm (Ω), which is the unit of resistance, a measure of how a component opposes current
-
A battery supplies a current to a circuit with two identical lamps in series. If the battery is replaced with one that gives twice the voltage, what happens to the current?
- It stays the same, because the current in a series circuit depends only on the number of lamps.
- It becomes zero, because the higher voltage blocks the flow of charge through the series loop.
- It doubles, if the lamps keep the same resistance.
- It halves, because the larger voltage pushes the charge more slowly through the lamps in series.
Related quizzes
- Potential difference and resistance Quiz · T5.1.2 · 20 questions
- Conductors and insulators Quiz · T5.1.3 · 20 questions
- Charge transfer by rubbing Quiz · T5.2.1 · 20 questions
- Electric fields Quiz · T5.2.2 · 20 questions
- Magnetic poles and field lines Quiz · T5.3.1 · 20 questions
- Earth's magnetism and compasses Quiz · T5.3.2 · 20 questions
- Electromagnets and D.C. motors Quiz · T5.3.3 · 20 questions
- Energy transfers between stores Quiz · T1.1.1 · 20 questions
- Speed, distance and time Quiz · T2.1.1 · 20 questions
- Pressure, force and area Quiz · T3.1.1 · 20 questions