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Figure 4 shows a theme park ride called AquaShute - AQA - GCSE Physics - Question 2 - 2020 - Paper 1

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Figure 4 shows a theme park ride called AquaShute. Riders of the AquaShute sit on a sled and move down a slide. There is a layer of water between the sled and the s... show full transcript

Worked Solution & Example Answer:Figure 4 shows a theme park ride called AquaShute - AQA - GCSE Physics - Question 2 - 2020 - Paper 1

Step 1

How does the layer of water affect the friction between the sled and the slide?

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Answer

The layer of water decreases the friction between the sled and the slide. This occurs because the water provides a lubrication effect, allowing the sled to glide more easily down the slide.

Step 2

Calculate the gravitational potential energy of the rider at the top of the slide.

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Answer

To calculate the gravitational potential energy (E_p) of the rider at the top of the slide, we use the formula:

Ep=mass×gravitational field strength×heightE_p = \text{mass} \times \text{gravitational field strength} \times \text{height}

Substituting the values:

Ep=62.5 kg×9.8 N/kg×16.0 m=9800 JE_p = 62.5 \text{ kg} \times 9.8 \text{ N/kg} \times 16.0 \text{ m} = 9800 \text{ J}

Step 3

Calculate the kinetic energy of the rider at the bottom of the slide.

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Answer

To calculate the kinetic energy (E_k) of the rider at the bottom of the slide, we use the formula:

Ek=0.5×mass×(speed)2E_k = 0.5 \times \text{mass} \times (\text{speed})^2

Substituting the values:

Ek=0.5×62.5 kg×(12 m/s)2=4500 JE_k = 0.5 \times 62.5 \text{ kg} \times (12 \text{ m/s})^2 = 4500 \text{ J}

Step 4

Give two factors that will affect how far the sled will move before it stops.

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Answer

  1. The speed of the sled at the bottom of the slide.

  2. The friction between the sled (and the rider) and the surface of the slide, as well as air resistance.

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