Oscillations that transfer energy from one place to another without transferring matter

Diagram showing the amplitude and wavelength of a wave


Period T and frequency f of a travelling wave
The graph below shows a travelling wave.
Determine:
(i) The amplitude?A?of the wave in metres (m)
(ii) The frequency?f of the wave in hertz (Hz)
(i) Identify the amplitude?A?of the wave on the graph?
(ii) Calculate the frequency of the wave
Step 1: Identify the period?T?of the wave on the graph?

T?= 1 × 10–3 s
Step 2: Write down the relationship between the frequency?f?and the period?T?
Step 3: Substitute the value of the period determined in Step 1
![]()
f?= 1000 Hz
c = fλ

c = fλ
A travelling wave has a period of 1.0?μs and travels at a velocity of?100?cm?s–1. Calculate the wavelength of the wave. Give your answer in metres (m).
Step 1: Write down the known quantities
Note the conversions:
Step 2: Write down the relationship between the frequency?f?and the period?T
![]()
Step 3: Substitute the value of the period into the above equation to calculate the frequency?
![]()
f?= 1.0 × 106?Hz
Step 4: Write down the wave equation
c = fλ
Step 5: Rearrange the wave equation to calculate the wavelength?λ
![]()
Step 6: Substitute the numbers into the above equation?
![]()
λ?= 1 × 10–6?m
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