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Two bottles, I and II, have the same volume and are at the same temperature - VCE - SSCE Chemistry - Question 17 - 2007 - Paper 1

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Two bottles, I and II, have the same volume and are at the same temperature. Bottle I contains 10 g of argon gas only. Bottle II contains 10 g of neon gas only. Comp... show full transcript

Worked Solution & Example Answer:Two bottles, I and II, have the same volume and are at the same temperature - VCE - SSCE Chemistry - Question 17 - 2007 - Paper 1

Step 1

number of atoms

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Answer

To determine the number of atoms in each bottle, we can use the molar mass of the gases.

  • The molar mass of argon (Ar) is approximately 40 g/mol.
  • The molar mass of neon (Ne) is approximately 20 g/mol.

Calculating the number of moles for each:

For argon: nAr=10 g40 g/mol=0.25 moln_{Ar} = \frac{10\text{ g}}{40\text{ g/mol}} = 0.25 \text{ mol}

For neon: nNe=10 g20 g/mol=0.5 moln_{Ne} = \frac{10\text{ g}}{20\text{ g/mol}} = 0.5 \text{ mol}

Now, we convert moles to atoms using Avogadro's number, approximately 6.02×10236.02 \times 10^{23} atoms/mol:

For argon: NAr=0.25 mol×6.02×1023 atoms/mol1.51×1023 atomsN_{Ar} = 0.25 \text{ mol} \times 6.02 \times 10^{23} \text{ atoms/mol} \approx 1.51 \times 10^{23} \text{ atoms}

For neon: NNe=0.5 mol×6.02×1023 atoms/mol3.01×1023 atomsN_{Ne} = 0.5 \text{ mol} \times 6.02 \times 10^{23} \text{ atoms/mol} \approx 3.01 \times 10^{23} \text{ atoms}

Thus, the number of atoms in bottle II is approximately double that in bottle I.

Step 2

pressure

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Answer

Both bottles have the same volume and contain gases at the same temperature, which allows us to use the ideal gas law to analyze the relationship between pressure and the number of moles. The ideal gas law is given by:

PV=nRTPV = nRT

Where:

  • P = pressure
  • V = volume
  • n = number of moles
  • R = ideal gas constant
  • T = temperature

Since the volume and temperature are constant for both bottles, we can infer that pressure is directly proportional to the number of moles. Since bottle II has approximately double the number of moles compared to bottle I, the pressure in bottle II will also be higher than in bottle I.

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