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This question is about energy transfers - Edexcel - GCSE Physics - Question 6 - 2023 - Paper 2

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This question is about energy transfers. Figure 13 shows the apparatus used for investigating the transfer between gravitational potential energy and kinetic energy... show full transcript

Worked Solution & Example Answer:This question is about energy transfers - Edexcel - GCSE Physics - Question 6 - 2023 - Paper 2

Step 1

Calculate the mean speed.

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Answer

To calculate the mean speed, we take the sum of the individual speeds and divide by the number of measurements.

The speeds recorded are: 1.31 m/s, 1.27 m/s, and 1.16 m/s.

Calculating:

extmeanspeed=1.31+1.27+1.163=3.743=1.25 m/s ext{mean speed} = \frac{1.31 + 1.27 + 1.16}{3} = \frac{3.74}{3} = 1.25 \text{ m/s}

Step 2

Suggest one reason why the measurements of speed were repeated.

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Answer

One reason for repeating the measurements is to improve reliability, as having multiple measurements allows for the identification of any anomalous results and ensures more precise average values.

Step 3

Calculate the change in gravitational potential energy.

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Answer

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

ΔGPE=m×g×ΔhΔGPE = m \times g \times Δh

Substituting the values:

  • Mass (m) = 0.052 kg
  • Gravitational field strength (g) = 10 N/kg
  • Change in height (Δh) = 5.0 cm = 0.05 m

Calculating:

ΔGPE=0.052×10×0.05=0.026 JΔGPE = 0.052 \times 10 \times 0.05 = 0.026 \text{ J}

Step 4

To measure the change in vertical height, Δh.

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Answer

Draw a ruler vertically aligned with the ball in position to measure the height. Indicate the minimum vertical distance of 5 cm that the ball falls.

Step 5

Describe how the measurement of the change in vertical height, Δh, could be improved using the set square.

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Answer

The measurement can be improved by placing a set square against the ruler to ensure that the vertical position is accurately measured. One edge of the set square should be aligned at a right angle to the ruler, ensuring that it remains vertical, which enhances the precision of the height measurement.

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