concentration of Oxygen is M of oxygen and 0.4M of SO2, pls calculate concentration of oxyg reaches new equilibrium at 25°C. Question 3: The vapor pressure of a solution containing 53.6 g glycerin (C3HSO3, 92.10 g/mol nonvolatile, covalent compound) in 133.7 g ethanol (CHSOH, 46.07 g/mol) is 113 torr at 40°C. Calculate the vapor pressure of pure ethanol at 40°C. Assume ideal behavior.
concentration of Oxygen is M of oxygen and 0.4M of SO2, pls calculate concentration of oxyg reaches new equilibrium at 25°C. Question 3: The vapor pressure of a solution containing 53.6 g glycerin (C3HSO3, 92.10 g/mol nonvolatile, covalent compound) in 133.7 g ethanol (CHSOH, 46.07 g/mol) is 113 torr at 40°C. Calculate the vapor pressure of pure ethanol at 40°C. Assume ideal behavior.
Introduction to General, Organic and Biochemistry
11th Edition
ISBN:9781285869759
Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Publisher:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Chapter5: Gases, Liquids, And Solids
Section: Chapter Questions
Problem 5.120P
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Question 1: Reaction: CH.(g) +2H;0 (g) = CO:(g)+4H2 (g)
Calculate AH398., AS°298, AG°295 of this reaction.
Knew heat of formation at 25°C (kcal/mol) of CH, H;O and CO2 are-17,89; -57,80; and -94,10,
respectively. Standard entropy at 25°C (cal/mol.K) of CH4, H20,CO2 and Hz are 45,50; 45,13:
51,10 and 31,21, respectively.
Question 2: There is the reversible reaction S (s) + O2 (g)/ < SO2 (g). At 25°C, initial
concentration of oxygen is 1M, SOz is 0.6M. Knew that when the reaction reaches equilibrium,
concentration of Oxygen is 0.8. Calculate Kp and Kc of this reaction. At equilibrium, adding 0.2
Mof oxygen and 0.4M of SO;, pls calculate concentration of oxygen and SO2 when the system
reaches new equilibrium at 25°C.
Question 3: The vapor pressure of a solution containing 53.6 g glycerin (C3HSO3, 92.10 g/mol
nonvolatile, covalent compound) in 133.7 g ethanol (C:HSOH, 46.07 g/mol) is 113 torr at 40°C.
Calculate the vapor pressure of pure ethanol at 40°C. Assume ideal behavior.
eto
Nwo r ted State
8:39 AM
04/05/2021](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc21b0495-0d8b-4148-83ad-91c32254039d%2F97073cd2-6ccd-4986-9afd-a541a0232554%2Flxfrbmh_processed.jpeg&w=3840&q=75)
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Question 1: Reaction: CH.(g) +2H;0 (g) = CO:(g)+4H2 (g)
Calculate AH398., AS°298, AG°295 of this reaction.
Knew heat of formation at 25°C (kcal/mol) of CH, H;O and CO2 are-17,89; -57,80; and -94,10,
respectively. Standard entropy at 25°C (cal/mol.K) of CH4, H20,CO2 and Hz are 45,50; 45,13:
51,10 and 31,21, respectively.
Question 2: There is the reversible reaction S (s) + O2 (g)/ < SO2 (g). At 25°C, initial
concentration of oxygen is 1M, SOz is 0.6M. Knew that when the reaction reaches equilibrium,
concentration of Oxygen is 0.8. Calculate Kp and Kc of this reaction. At equilibrium, adding 0.2
Mof oxygen and 0.4M of SO;, pls calculate concentration of oxygen and SO2 when the system
reaches new equilibrium at 25°C.
Question 3: The vapor pressure of a solution containing 53.6 g glycerin (C3HSO3, 92.10 g/mol
nonvolatile, covalent compound) in 133.7 g ethanol (C:HSOH, 46.07 g/mol) is 113 torr at 40°C.
Calculate the vapor pressure of pure ethanol at 40°C. Assume ideal behavior.
eto
Nwo r ted State
8:39 AM
04/05/2021
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