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When water boils and turns into steam, there are changes in the arrangement of particles and the density - Edexcel - GCSE Physics - Question 9 - 2022 - Paper 1

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When water boils and turns into steam, there are changes in the arrangement of particles and the density. Which of these shows the changes? A bigger than in w... show full transcript

Worked Solution & Example Answer:When water boils and turns into steam, there are changes in the arrangement of particles and the density - Edexcel - GCSE Physics - Question 9 - 2022 - Paper 1

Step 1

When water boils and turns into steam, there are changes in the arrangement of particles and the density. Which of these shows the changes?

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Answer

The correct answer is A: Bigger than in water, greater than water. When water transitions to steam, the space between the particles increases, resulting in a lower density than that of water.

Step 2

Calculate the mass of the lump of iron.

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Answer

We know the density of iron is 7.9 g/cm³, and the change in water level is given by:

530cm3490cm3=40cm3530 cm³ - 490 cm³ = 40 cm³

Using the formula for density:

density=massvolumedensity = \frac{mass}{volume}

We can rearrange this to find mass:

mass=density×volume=7.9g/cm3×40cm3=316gmass = density \times volume = 7.9 g/cm³ \times 40 cm³ = 316 g

Thus, the mass of the lump of iron is 320 g when rounded to two significant figures.

Step 3

Explain why the method used in part (b) cannot be used to determine the mass of the piece of wood.

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Answer

The method cannot be used for wood because wood is less dense than water; it will float on the surface instead of displacing water. Therefore, it will not provide an accurate measure of its volume using water displacement, leading to an incorrect result for its mass.

Step 4

Describe the method the student should use to determine the specific heat capacity of water.

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Answer

To determine the specific heat capacity of water, the student should use the following method:

  1. Use a low voltage heater to heat a known mass of water in a beaker.
  2. Measure the initial temperature of the water using a thermometer.
  3. Heat the water for a set period and record the temperature at regular intervals until its temperature stabilizes.
  4. Calculate the energy supplied using the heater's power and the time of heating.
  5. Use the formula for specific heat capacity: c=QmΔTc = \frac{Q}{m \Delta T} where:
    • cc is the specific heat capacity,
    • QQ is the heat energy supplied,
    • mm is the mass of the water,
    • ΔT\Delta T is the change in temperature.
  6. Ensure to carry out the measurements accurately, and the experiment can be repeated for validation.

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