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The molar volume of oxygen, in L, at 1.00 atmosphere and 100°C, is closest to A - VCE - SSCE Chemistry - Question 2 - 2006 - Paper 1

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The molar volume of oxygen, in L, at 1.00 atmosphere and 100°C, is closest to A. 30.6 B. 24.5 C. 22.4 D. 8.2

Worked Solution & Example Answer:The molar volume of oxygen, in L, at 1.00 atmosphere and 100°C, is closest to A - VCE - SSCE Chemistry - Question 2 - 2006 - Paper 1

Step 1

Calculate the molar volume of oxygen at 1.00 atm and 100°C

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Answer

To find the molar volume of a gas under specific conditions, we can use the Ideal Gas Law, which is expressed as:

PV=nRTPV = nRT

Where:

  • P = pressure (in atm)
  • V = volume (in L)
  • n = number of moles
  • R = Ideal Gas Constant
  • T = temperature (in K)

First, we convert the temperature from Celsius to Kelvin: T(K)=100+273.15=373.15KT(K) = 100 + 273.15 = 373.15 \, K

Next, we can rearrange the Ideal Gas Law to find the molar volume (V/n): V=nRTPV = \frac{nRT}{P}

For one mole of gas (n = 1), the equation simplifies to: V=RTPV = \frac{RT}{P}

Using the Ideal Gas Constant for R = 0.0821 L·atm/(K·mol), we can substitute the values:

  • R = 0.0821 L·atm/(K·mol)
  • T = 373.15 K
  • P = 1.00 atm

Substituting into the equation: V=(0.0821L\cdotpatm/(K\cdotpmol))(373.15K)1.00atmV = \frac{(0.0821 \, \text{L·atm/(K·mol)}) (373.15 \, K)}{1.00 \, atm}

Calculating this gives: V30.6116L/molV \approx 30.6116 \, L/mol

Thus, the closest option for the molar volume of oxygen in the given conditions is A. 30.6 L.

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