Question
Question: Half mole of an ideal mono-atomic gas is heated at constant pressure of \(1\,atm\) from \(20^\circ C...
Half mole of an ideal mono-atomic gas is heated at constant pressure of 1atm from 20∘C to 90∘C. Work done by gas is close to: (Gas constant R=8.31J/mol.K )
A) 73J
B) 291J
C) 581J
D) 146J
Solution
We are given that the gas used is ideal gas. Use the principles and concepts of ideal gas in the solution and transform the usual formula of work done by a gas such that it coincides with the values we are provided with.
Formula Used:
Work Done by a gas, WD=PΔV
Where, P is the pressure during the reaction and ΔV is the change in volume of the gas during the reaction
For an ideal gas, PΔV=nRΔT
Where, P is the pressure during the reaction, ΔV is the change in volume of the gas during the reaction, n is the number of moles of the gas, R is the Gas Constant (value given in question), ΔT is the change in temperature of the gas during the reaction
Complete Step by Step Solution:
We are given that during the reaction half mole of the gas is used, the pressure is 1atm , and the temperature changes from 20∘C to 90∘C. Now, we know that work done by a gas, WD=PΔV.
Also, the gas used is ideal. We know that in the case of an ideal gas, PΔV=nRΔT
Hence, we conclude that WD=nRΔT
On putting the respective values, we get WD=0.5×8.31×(90−20)
Simplifying, WD=0.5×8.31×70
WD=0.5×581.7=290.85≃291J
Hence, option B is the correct answer.
Note: Do not forget to check the number of moles in the question. Like in this question, we are given that half mole of the gas has been used. We often ignore this and end up solving the question with one mole which makes our answer incorrect. Questions like these mostly have an option with the answer that you would have got if the number of moles was one (like in this question option C). Pay attention to the given values.