Unit 3: Wave Behaviour

Topic 3.2: Wave Model Questions

Practice 20 exam-style questions for IB Physics SL Topic 3.2. Review the question stems below, then unlock the full Question Bank to access markschemes, model answers, and AI grading.

1Identify2 marks
Aimnova practice
A displacement-distance graph (a snapshot) and a displacement-time graph are drawn for the same wave.

Identify which quantity is read directly off each graph, and state the equation that combines them to give the wave speed.
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2Describe2 marks
Aimnova practice
Describe two properties that are shared by every wave in the electromagnetic spectrum, from radio waves to gamma rays.
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3Identify3 marks
Aimnova practice
Identify whether each of the following waves is transverse or longitudinal: (i) a sound wave in air; (ii) visible light; (iii) a wave sent along a stretched spring by pushing and pulling one end along its length.
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4State2 marks
Aimnova practice
State the difference between a transverse wave and a longitudinal wave in terms of how the particles of the medium move relative to the direction the wave travels.
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5Calculate2 marks
Aimnova practice
An FM radio station broadcasts at a frequency of 96 MHz.

Electromagnetic waves travel through air at 3.0 × 10⁸ m s⁻¹.

Calculate the wavelength of these radio waves.
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6Calculate2 marks
Aimnova practice
An FM radio station broadcasts at a frequency of 100 MHz.

Using c = 3.00 × 10⁸ m s⁻¹, calculate the wavelength of the radio wave.
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7Determine2 marks
Aimnova practice
A loudspeaker emits a sound wave whose plane wavefronts are drawn 0.85 m apart.

Determine the wavelength of the sound and outline what the spacing between neighbouring wavefronts tells you.
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8State1 mark
Aimnova practice
State whether electromagnetic waves are transverse or longitudinal.
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9Identify1 mark
Aimnova practice
A wave is drawn using both wavefronts and a ray.

Identify how the ray is oriented relative to the wavefronts.
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10State1 mark
Aimnova practice
On a wave diagram, state what a single wavefront represents.
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11State1 mark
Aimnova practice
State the wave equation that relates the speed v of a wave to its frequency f and wavelength λ.
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12Outline2 marks
Aimnova practice
Outline the difference between a wavefront and a ray when used to represent a wave.
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13Determine2 marks
Aimnova practice
A microwave oven produces electromagnetic waves of wavelength 0.12 m.

Electromagnetic waves travel at 3.0 × 10⁸ m s⁻¹.

Determine the frequency of these microwaves.
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14Determine4 marks
Aimnova practice
A transverse water wave travels to the right.

A snapshot of the surface shows the displacement repeating every 2.4 m, and a float bobbing on the surface completes 2.5 full up-and-down cycles every second.

Determine the wavelength and the speed of the wave.
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15Explain3 marks
Aimnova practice
A loudspeaker emits a sound wave that travels horizontally across a room.

As the wave passes, the air molecules vibrate horizontally, back and forth along the same line as the wave moves.

State whether the wave is transverse or longitudinal, name the two types of region it produces in the air, and explain why sound cannot be transverse in a gas.
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16Determine4 marks
Aimnova practice
A transverse wave travels to the right along a string.

A snapshot (displacement–distance graph) shows the pattern repeating every 0.80 m with a maximum displacement of 2.0 cm.

A separate displacement–time graph of one point on the string repeats every 0.40 s.

Determine the wavelength, amplitude and wave speed, and state how a particle on the string moves relative to the wave's direction of travel.
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17Calculate3 marks
Aimnova practice
A buoy bobbing on the sea takes 4.0 s to complete one full up-and-down cycle, and successive wave crests are observed to be 6.0 m apart.

Calculate
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18Calculate4 marks
Aimnova practice
A snapshot of straight, parallel wavefronts on the surface of water shows them at 0.30 m, 0.70 m and 1.10 m measured along a ray from the wave source.

The source dips at 6.0 Hz.

Calculate the wavelength and the speed of the water wave, and state what the spacing between the wavefronts represents.
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19Identify1 mark
A dermatology clinic uses an ultraviolet lamp to treat a skin condition. A student is asked to describe the radiation the lamp emits.

Which row correctly gives an approximate frequency of the ultraviolet light AND the type of wave that all electromagnetic radiation is?
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20Calculate1 mark
A transverse wave travels along a stretched string in the positive x-direction.

The graph shows the displacement y of the string against distance x at one instant.

The wave has a period of 0.20 s.

What is the average speed of a single particle of the string during one complete oscillation?

[Diagram: x-axis from 0 to 8 label x, y-axis from -4 to 4 label y, polyline: (0,0)-(1,4)-(2,0)-(3,-4)-(4,0)-(5,4)-(6,0)-(7,-4)-(8,0) "y/cm vs x/cm"]
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