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Figure 4 shows the apparatus used to investigate the waves in a stretched string - AQA - GCSE Physics - Question 2 - 2019 - Paper 1

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Figure 4 shows the apparatus used to investigate the waves in a stretched string. The frequency of the signal generator is adjusted so that the wave shown in Figure... show full transcript

Worked Solution & Example Answer:Figure 4 shows the apparatus used to investigate the waves in a stretched string - AQA - GCSE Physics - Question 2 - 2019 - Paper 1

Step 1

What piece of apparatus would have been suitable for measuring this wavelength?

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Answer

A metre rule or a tape measure would be suitable for measuring the wavelength of 80 cm.

Step 2

Write down the equation which links frequency, wavelength and wave speed.

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Answer

The equation that links these quantities is:

wave speed=frequency×wavelength\text{wave speed} = \text{frequency} \times \text{wavelength}

or more succinctly,

v=fλv = f \lambda

Step 3

Calculate the wave speed of the wave shown in Figure 4.

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Answer

To find the wave speed, we can use the equation:

v=fλv = f \lambda

Where:

  • Frequency, f=55 Hzf = 55 \text{ Hz}
  • Wavelength, λ=80 cm=0.8 m\lambda = 80 \text{ cm} = 0.8 \text{ m}

Thus, substituting these values:

v=55×0.8=44 m/sv = 55 \times 0.8 = 44 \text{ m/s}

Step 4

Describe how the apparatus could be adjusted to show one complete wave without reducing the frequency.

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Answer

To observe one complete wave while maintaining frequency, the wooden bridge can be moved to the right, or additional mass/weights can be added to the string to adjust the tension.

Step 5

Describe a method the student could use for this investigation.

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Answer

  1. Set up the apparatus with a consistent frequency using the signal generator.
  2. Vary the tension in the string by adding or removing weights.
  3. Measure the speed of the wave each time the tension is altered, using the relationship between wave speed, frequency, and wavelength.
  4. Record the data and analyze how wave speed changes with different tensions.

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