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Figure 4 shows a sailing boat crossing an ocean - AQA - GCSE Physics Combined Science - Question 3 - 2021 - Paper 1

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Figure 4 shows a sailing boat crossing an ocean. There is a wind turbine on the boat. The wind turbine generates electricity to charge a battery on the boat. Name... show full transcript

Worked Solution & Example Answer:Figure 4 shows a sailing boat crossing an ocean - AQA - GCSE Physics Combined Science - Question 3 - 2021 - Paper 1

Step 1

Name one other renewable energy resource that could be used on the boat to generate electricity.

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Answer

One other renewable energy resource that could be used on the boat to generate electricity is solar energy.

Step 2

Give two reasons why this is useful.

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Answer

  1. Sometimes there is no wind, but the battery can still be charged using the generator.

  2. When there is wind, less fuel is burned, resulting in reduced fuel costs.

Step 3

Explain one environmental impact of using fossil fuels to generate electricity.

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Answer

One environmental impact of using fossil fuels to generate electricity is that it releases carbon dioxide, which increases global warming.

Step 4

Calculate the speed of the boat.

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Answer

To find the speed of the boat, we use the formula for kinetic energy:

KE=12mv2KE = \frac{1}{2} mv^2

Substituting the known values: 81 000=12×8000×v281 \ 000 = \frac{1}{2} \times 8000 \times v^2

Rearranging gives: v2=81 000×28000v^2 = \frac{81 \ 000 \times 2}{8000}

v=162 00080004.5 m/sv = \sqrt{\frac{162 \ 000}{8000}}\approx 4.5 \text{ m/s}

Step 5

Calculate the change in height of the centre of mass of the boat as it passes over the wave.

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Answer

To calculate the change in height, we can use the formula for gravitational potential energy:

PE=mghPE = mgh

Where:

  • PE = change in potential energy = 19 600 J
  • m = mass of the boat = 8000 kg
  • g = gravitational field strength = 9.8 N/kg

Rearranging gives: h=PEmg=196008000×9.80.25mh = \frac{PE}{mg} = \frac{19600}{8000 \times 9.8} \approx 0.25 m

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