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1 (a) Figure 1 shows air inside a cylinder with a movable piston - Edexcel - GCSE Physics - Question 1 - 2018 - Paper 1

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1 (a) Figure 1 shows air inside a cylinder with a movable piston. The piston is pulled a little way in the direction of the arrow, but stays inside the cylinder. W... show full transcript

Worked Solution & Example Answer:1 (a) Figure 1 shows air inside a cylinder with a movable piston - Edexcel - GCSE Physics - Question 1 - 2018 - Paper 1

Step 1

Which of these increases?

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Answer

The correct choice is D) The pressure of the air inside the cylinder. When the piston is pulled, the volume available to the air decreases, which causes the pressure to increase, according to Boyle's Law.

Step 2

The air inside the tube exerts an outward force on the wall of the tube.

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Answer

The angle that this outward force makes with the wall of the tube is 90 degrees. The force exerted by the air is perpendicular to the surface of the wall.

Step 3

Calculate the volume of air inside the tube.

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Answer

To find the volume of air inside the tube, we can use the formula derived from the ideal gas law:

P1×V1=P2×V2P_1 \times V_1 = P_2 \times V_2

Substituting the values:

400000×V1=100000×4.8400000 \times V_1 = 100000 \times 4.8

Rearranging gives:

V1=100000×4.8400000=1.2 litresV_1 = \frac{100000 \times 4.8}{400000} = 1.2 \text{ litres}

Step 4

Explain why the air in the bicycle pump gets warm.

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Answer

The air in the bicycle pump gets warm because work is done in compressing the air. This increases the kinetic energy of the air particles, which raises the thermal energy of the system. The relationship between work done and thermal energy can be expressed as:

W=F×d=p×ΔVW = F \times d = p \times \Delta V

where WW is work, FF is force, dd is distance, pp is pressure, and ΔV\Delta V is the change in volume.

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