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A vessel contains 1.6 g of dioxygen at STP (273.15 K, 1 atm pressure). The gas is now transferred to another vessel at constant temperature, where pressure becomes half of the original pressure. Calculate (A) volume of the new vessel. (B) number of molecules of dioxygen. |
Answer» <html><body><p> </p>Solution :(A) `p_(1)=1` atm, `p_(2)=1/2 = 0.5` atm, `T_(1)=273.15, V_(2)=(?)` <br/> 32g of dioxygen occupies `=22.4 L` volume at STP <br/> `:.1.6g` dioxygen will occupy `=(22.4Lxx1.6g)/(32g)` <br/> `=1.12L` <br/> `V_(1)=1.12L` <br/> From Boyle.s law <br/> `p_(1)V_(1)=p_(2)V_(2)` <br/> `V_(2)=(p_(1)V_(1))/(p_(2))= (1 "atm"xx1.12L)/(0.5 "atm")=2.24L` <br/> Number of moles of dioxygen `=("<a href="https://interviewquestions.tuteehub.com/tag/mass-1088425" style="font-weight:bold;" target="_blank" title="Click to know more about MASS">MASS</a> of dioxygen")/("Molar mass of dioxygen")` <br/> `n_(O_(2))=(1.6)/(<a href="https://interviewquestions.tuteehub.com/tag/32-307188" style="font-weight:bold;" target="_blank" title="Click to know more about 32">32</a>)=0.05` mol <br/> 1 mol of dioxygen contains `= 6.022xx10^(23)` molecules <br/> `:.` 0.5 mol of dioxygen <a href="https://interviewquestions.tuteehub.com/tag/contain-409810" style="font-weight:bold;" target="_blank" title="Click to know more about CONTAIN">CONTAIN</a> <br/> `= 0.05xx6.022xx10^(23)` molecule <br/> `=3.011xx10^(22)` molecules</body></html> | |