equilibrium pressures of all the reactants and products? wing reaction: CH3OH(g) + HCI9) CH3CI9) + H2O(g); Kp = 5.9 x 103. If enough methanol and hydrogen Chloromethane, CH3CI, which has been used as a refrigerant and a local anesthetic, can be made from the are added to a container at 120 °C to yield an initial pressure of 0.75 atm for each, what will be ochloride (PCH, CI), (PCH, OH)0 (PH,0)eg sigis = 0.74 atm !! swers: eq (PHCI)eq = 0.01 atm %D eq
equilibrium pressures of all the reactants and products? wing reaction: CH3OH(g) + HCI9) CH3CI9) + H2O(g); Kp = 5.9 x 103. If enough methanol and hydrogen Chloromethane, CH3CI, which has been used as a refrigerant and a local anesthetic, can be made from the are added to a container at 120 °C to yield an initial pressure of 0.75 atm for each, what will be ochloride (PCH, CI), (PCH, OH)0 (PH,0)eg sigis = 0.74 atm !! swers: eq (PHCI)eq = 0.01 atm %D eq
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:equilibrium pressures of all the reactants and products?
nochloride are added to a container at 120 °C to yield an initial pressure of 0.75 atm for each, what will be
owing reaction: CH3OH(g) + HClg CH3CI9) + H2O(g); Kp = 5.9 x 103. If enough methanol and hydrogen
Chloromethane, CH3CI, which has been used as a refrigerant and a local anesthetic, can be made from the
amethane, CH3CI, which has been used as a refrigerant and a local anesthetic, can be made from the
(PCH,CI) = (PH20) = 0.74 atm
(PCH,0H) eq
slqi
%3D
eq
%3D
nswers:
(PHCI)eg = 0.01 atm
%3D
VALUATION (60 MINS)
The equilibrium 2 NO(9) + Cl2g) 2 NOCI9) is established at 500 K. An equilibrium mixture of the three
gases
has partial pressures of 0.095 atm, 0.171 atm and 0.28 atm for NO, Cl2 and NOCI, respectively.
Calculate the Kp for this reaction at 500 K.
Answer: Kp = 51
%3D
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