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Hailstones are small balls of ice - AQA - GCSE Physics - Question 4 - 2022 - Paper 1

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Hailstones are small balls of ice. Hailstones form in clouds and fall to the ground. Figure 7 shows different-sized hailstones. A hailstone falls from a cloud and a... show full transcript

Worked Solution & Example Answer:Hailstones are small balls of ice - AQA - GCSE Physics - Question 4 - 2022 - Paper 1

Step 1

Why does the hailstone accelerate?

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Answer

The hailstone accelerates due to the resultant force acting on it. Initially, the only force acting is the weight of the hailstone, which is greater than the air resistance opposing its motion.

Step 2

Explain why the hailstone reaches terminal velocity.

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Answer

As the hailstone falls, its velocity increases, causing air resistance to increase. Eventually, the air resistance becomes equal to the weight of the hailstone, leading to a resultant force of zero. At this point, the hailstone stops accelerating and continues to fall at a constant terminal velocity.

Step 3

Why does terminal velocity increase with mass?

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Answer

Terminal velocity increases with mass because as mass increases, the weight of the hailstone also increases. Since terminal velocity occurs when the weight equals the air resistance, a heavier hailstone will have a greater terminal velocity.

Step 4

Explain the difference in the maximum kinetic energy of a hailstone with a mass of 10 g and a hailstone with a mass of 20 g.

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Answer

The maximum kinetic energy (KE) is given by the formula Ek=12mv2E_k = \frac{1}{2} mv^2. A hailstone with a mass of 10 g has a certain maximum velocity before reaching terminal velocity, whereas a 20 g hailstone will have a greater weight and, hence, a higher maximum velocity. Since kinetic energy depends on both mass and the square of velocity, the 20 g hailstone will possess significantly more kinetic energy than the 10 g hailstone, proportionate to the increase in both mass and velocity at terminal conditions.

Step 5

Which of the following is the same as 1 joule?

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Answer

1 J is equivalent to 1 N m.

Step 6

Determine the average force on the hailstone as it hit the ground.

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Answer

To determine the average force, we use the formula:

F=mvtF = \frac{mv}{t}

where the mass is 0.0185 kg, the terminal velocity is 25 m/s, and the time taken is 0.060 s.

Substituting the values:

F=0.0185kg×25m/s0.060s=7.708NF = \frac{0.0185 \, \text{kg} \times 25 \, \text{m/s}}{0.060 \, \text{s}} = 7.708 \, \text{N}

Thus, the average force on the hailstone is approximately 7.71 N.

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