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3.3 Particle model and pressure

3.3 Particle model and pressure

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Question 3

An investigator studies the behavior of a fixed mass of gas trapped inside a research cylinder with a tightly sealed, movable piston. The relationship between the pressure and the volume of the gas is given by the equation:

pressure×volume=constant \text{pressure} \times \text{volume} = \text{constant} pressure×volume=constant
a.

State the physical quantity, other than mass, that must be kept constant for this relationship to hold.

[1]
b.

The initial volume of the gas inside the cylinder is 35 cm3 and its initial pressure is 140,000 Pa140,000\text{ Pa}140,000 Pa. Calculate the value of the constant in Pa cm3\text{Pa cm}^3Pa cm3.

[2]
c.

The piston is pushed slowly inwards so that the gas is compressed and its volume decreases to 28 cm3. Calculate the new pressure of the gas in Pa\text{Pa}Pa.

[2]
d.

Choose whether there is more space, less space, or the same space between the gas particles as the volume decreases.

[1]
Markscheme

3.3 Particle model and pressure Questions

  1. GCSE
  2. /Physics
  3. /3.3 Particle model and pressure

8 exam-style questions on AQA GCSE Physics 3.3 Particle model and pressure, covering 3.3.1 Particle motion in gases, 3.3.2 Pressure in gases, and 3.3.3 Increasing the pressure of a gas (HT only). Each one has a worked solution and a mark scheme showing where the marks go.

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