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A student lifts a toy car from a bench and places the toy car at the top of a slope as shown in Figure 16 - Edexcel - GCSE Physics - Question 8 - 2020 - Paper 1

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A student lifts a toy car from a bench and places the toy car at the top of a slope as shown in Figure 16. (a) Describe an energy transfer that occurs when the stud... show full transcript

Worked Solution & Example Answer:A student lifts a toy car from a bench and places the toy car at the top of a slope as shown in Figure 16 - Edexcel - GCSE Physics - Question 8 - 2020 - Paper 1

Step 1

Describe an energy transfer that occurs when the student lifts the toy car from the bench and places the toy car at the top of the slope.

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Answer

When the student lifts the toy car from the bench, gravitational potential energy (GPE) is transferred to the toy car. This energy transfer occurs because work is done against the force of gravity. As the toy car is raised to a higher position, its gravitational potential energy increases due to the height it gains.

Step 2

Describe how the student could find, by experiment, the speed of the toy car at the bottom of the slope.

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Answer

To find the speed of the toy car at the bottom of the slope, the student could follow these steps:

  1. Measure the length of the slope (distance traveled by the car).
  2. Use a stopwatch to record the time taken for the car to reach the bottom of the slope.
  3. Calculate the speed using the formula: speed = distance / time.
  4. To ensure accuracy, this experiment could be repeated several times, and the average speed calculated.

Step 3

State the other measurements the student must make.

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Answer

The student must measure the following:

  1. The vertical height of the slope (the height difference from the starting point to the bottom).
  2. The mass of the toy car.

Step 4

State how the student could calculate the amount of energy transferred to the surroundings as the toy car rolls down the slope.

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Answer

The student could calculate the amount of energy transferred to the surroundings by using the formula:

Etransferred=EoriginalEfinalE_{transferred} = E_{original} - E_{final}

where EoriginalE_{original} is the gravitational potential energy at the top (calculated using mass and height) and EfinalE_{final} is the kinetic energy at the bottom (calculated using the mass and speed of the car).

Step 5

Explain one way the student could reduce the amount of thermal energy transferred to the surroundings as the toy car rolls down the slope.

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Answer

One way to reduce the amount of thermal energy transferred to the surroundings is to lubricate or oil the wheels of the toy car. This action would decrease friction between the wheels and the slope, resulting in less energy being converted to thermal energy due to frictional forces.

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