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Figure 7 shows a drone - Edexcel - GCSE Physics - Question 3 - 2020 - Paper 1

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Figure 7 shows a drone. The drone has four spinning blades. The upward force produced enables the drone to rise in the air. The speed at which the blades spin is ... show full transcript

Worked Solution & Example Answer:Figure 7 shows a drone - Edexcel - GCSE Physics - Question 3 - 2020 - Paper 1

Step 1

Describe the relationship between upward force and speed shown by this graph.

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Answer

The upward force produced by the drone's blades increases with speed. Initially, the relationship is non-linear, showing exponential growth after a certain speed threshold, indicating that as the speed increases, the force produced also rises significantly.

Step 2

Calculate the change in gravitational potential energy when the drone rises through a height of 20 m.

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Answer

The change in gravitational potential energy (GPE) can be calculated using the formula:

extGPE=mimesgimesh ext{GPE} = m imes g imes h

Substituting the values:

extGPE=4.5extkgimes10extN/kgimes20extm=900extJ ext{GPE} = 4.5 ext{ kg} imes 10 ext{ N/kg} imes 20 ext{ m} = 900 ext{ J}

Step 3

State the amount of useful work done by the blades as the drone rises through 20 m.

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Answer

The useful work done by the blades as the drone rises through 20 m is 900 J.

Step 4

Calculate the useful power developed by the blades in this time of 4 s.

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Answer

The power developed can be calculated using the formula:

extPower=Work doneTime taken ext{Power} = \frac{\text{Work done}}{\text{Time taken}}

Substituting the values:

Power=900extJ4exts=225extW\text{Power} = \frac{900 ext{ J}}{4 ext{ s}} = 225 ext{ W}

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