16 Q16.Consider the reaction below: 2Hg(g) + O2(g)→ 2H9O(s) Hg and O2 gases were mixed in a 3.0 L container at 370.0 °C. If the pressure of Hg was 3.5 atm and the pressure of O2 was 2.5 atm. (Molar mass of HgO=216.6 g/mol) [R = 8.314 J/mol.K 0.0821 L.atm/mol.K], Calculate the mass of HgO produced? %D a) 58.5 g b) 73.8 g c) 30.8 g d) 43.1 g e) 615 g

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Chapter18: Thermodynamics And Equilibrium
Section: Chapter Questions
Problem 18.97QP: When 1.000 g of gaseous butane, C4H10, is burned at 25C and 1.00 atm pressure, H2O(l) and CO2(g) are...
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Q16
Q16.Consider the reaction below:
2Hg(g) + O2(g)→ 2HgO(s)
->
Hg and O2 gases were mixed in a 3.0 L container at 370.0 °C. If the pressure of
Hg was 3.5 atm and the pressure of O2 was 2.5 atm. (Molar mass of HgO = 216.6
gimol) [R= 8.314 J/mol.K 0.0821 L.atm/mol.K], Calculate the mass of HgO
produced?
a) 58.5 g
b) 73.8 g
c) 30.8 g
d) 43.1 g e) 615 g
. The vapor pressure of methanol (CH3OH) [Molar mass 32 g/mol) at 20 °C
omHg, and the vapor pressure of ethanol (C;H3OH) (molar mass 46 g/mol)
ne same temperature is 44 mmHg. A mixture of 30.0 g of methanol and 45.0 g
Transcribed Image Text:Q16 Q16.Consider the reaction below: 2Hg(g) + O2(g)→ 2HgO(s) -> Hg and O2 gases were mixed in a 3.0 L container at 370.0 °C. If the pressure of Hg was 3.5 atm and the pressure of O2 was 2.5 atm. (Molar mass of HgO = 216.6 gimol) [R= 8.314 J/mol.K 0.0821 L.atm/mol.K], Calculate the mass of HgO produced? a) 58.5 g b) 73.8 g c) 30.8 g d) 43.1 g e) 615 g . The vapor pressure of methanol (CH3OH) [Molar mass 32 g/mol) at 20 °C omHg, and the vapor pressure of ethanol (C;H3OH) (molar mass 46 g/mol) ne same temperature is 44 mmHg. A mixture of 30.0 g of methanol and 45.0 g
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