Hailstones are small balls of ice - AQA - GCSE Physics - Question 4 - 2022 - Paper 1
Question 4
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 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 because there is a resultant force acting on it. Initially, the force due to gravity is greater than the air resistance acting upwards, resulting in an overall downward force that causes the hailstone to accelerate.
Step 2
Explain why the hailstone reaches terminal velocity.
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Answer
The hailstone reaches terminal velocity when the force of air resistance increases as its speed increases until it equals the weight of the hailstone. At this point, the resultant force becomes zero, and the hailstone continues to fall at constant speed.
Step 3
Why does terminal velocity increase with mass?
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Terminal velocity increases with mass because as the mass of the hailstone increases, its weight also increases. A heavier hailstone requires a greater force of air resistance to balance this increased weight. Therefore, it can achieve a higher speed before the forces are balanced.
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 kinetic energy (E_k) of an object is given by the formula:
Ek=21mv2
As the mass of the hailstone increases from 10 g (0.01 kg) to 20 g (0.02 kg), the kinetic energy will also increase more than double because kinetic energy is proportional to the mass. Thus, the hailstone with a mass of 20 g will possess greater kinetic energy due to both its greater mass and the higher terminal velocity attained.
Step 5
Which of the following is the same as 1 joule?
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Answer
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 can use the formula:
F=ΔtΔv
where (\Delta v = 25 \text{ m/s}) and (\Delta t = 0.060 \text{ s}). Thus,
First, we find the mass in kg: 10 g = 0.01 kg, and with the hailstone's velocity: F=0.01 kg×25 m/s/0.060 s=4.167 N
The average force on the hailstone as it hit the ground is approximately 4.167 N.