Unit 2: The Particulate Nature of Matter

Topic 2.5: Current and Circuits Questions

Practice 20 exam-style questions for IB Physics SL Topic 2.5. Review the question stems below, then unlock the full Question Bank to access markschemes, model answers, and AI grading.

1Determine2 marks
Aimnova practice
Two resistors, 5.0 Ω and 15 Ω, are connected in series with a cell of negligible internal resistance.

The current in the circuit is 0.40 A.

Determine the emf of the cell.
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2Deduce2 marks
Aimnova practice
A length of constantan wire has a resistance of 6.0 Ω.

A second wire of the same material and the same cross-sectional area has three times the length of the first.

Deduce the resistance of the second wire.
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3Determine2 marks
Aimnova practice
A torch bulb carries a steady current of 0.25 A.

Determine the charge that flows through the bulb in 1.0 minute.
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4State1 mark
Aimnova practice
State what is meant by the resistance of an electrical component.
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5Estimate2 marks
Aimnova practice
A phone charger delivers a steady 5.0 W to a phone while charging it.

The phone takes 2.5 hours to charge fully.

Estimate the electrical energy delivered to the phone during one full charge, giving your answer in joules.
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6Calculate4 marks
Aimnova practice
An electric kettle is labelled 2300 W when connected to the 230 V mains supply.
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7State1 mark
Aimnova practice
State what is meant by the emf of a cell.
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8Outline2 marks
Aimnova practice
A cell is connected to a fixed external resistor.

Outline why the terminal potential difference of the cell is smaller than its emf when current flows.
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9Define2 marks
Aimnova practice
Define potential difference between two points in a circuit.
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10Determine2 marks
Aimnova practice
A potential difference of 12 V is applied across a fixed resistor and a current of 2.5 A flows through it.

Determine the resistance of the resistor.
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11State1 mark
Aimnova practice
State what is meant by an electric current of 1 ampere.
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12Calculate2 marks
Aimnova practice
A cell of emf 4.5 V and internal resistance 1.2 Ω is connected to a single resistor of resistance 7.8 Ω.

Calculate the current in the circuit.
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13Identify2 marks
Aimnova practice
Identify whether the current or the potential difference is the same for two resistors connected in parallel, and state which resistor — the larger or the smaller — carries the greater current.
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14Explain3 marks
Aimnova practice
A heating element of fixed resistance is run from a supply whose voltage can be adjusted.

The voltage across the element is reduced to half its original value.

State and explain what happens to the power dissipated by the element.
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15Determine4 marks
Aimnova practice
A student connects a cell of emf 6.0 V to a 5.5 Ω resistor and measures a current of 1.0 A.

Determine the internal resistance of the cell, then state what current would flow if the internal resistance were instead negligible.
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16Calculate3 marks
Aimnova practice
A torch cell of emf 1.5 V has an internal resistance of 0.30 Ω.

It is connected to a small bulb and a current of 0.40 A flows.

Calculate the terminal p.d. across the cell, and state how much energy per coulomb is lost inside the cell.
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17Determine1 mark
A 12 V battery is connected to a network of four identical resistors, each of resistance R. The network has two parallel branches between the same two points: one branch contains a single resistor R, and the other branch contains the remaining three resistors connected in series. The current in the single-resistor branch is I₁ and the current in the three-resistor branch is I₂.

What is the ratio I₂ : I₁?
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18Determine1 mark
Two straight wires, X and Y, are made from the same metal and have the same uniform cross-sectional area.

When wire X is connected across a 12 V supply it dissipates 60 W.

When wire Y is connected across an 18 V supply it dissipates 90 W.

What is the length of wire Y in terms of the length L of wire X?
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19Calculate1 mark
In a Van de Graaff generator, a rubber belt carries a uniform surface charge density of 2.0 × 10⁻⁵ C m⁻² on one face.

The belt is 0.15 m wide and moves at a constant speed of 8.0 m s⁻¹, carrying its charge up to the dome where the charge is removed into a wire.

What is the current in the wire?
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20Show that3 marks
Aimnova practice
A cell of emf ε and internal resistance r delivers a current I to an external resistor R.

Show that the power dissipated inside the cell is given by P = I²r, and calculate this internal power loss for ε = 9.0 V, r = 0.75 Ω and I = 1.6 A.
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