Suppose a 0.028 M aqueous solution of oxalic acid (H2C2O4) is prepared. Calculate the equilibrium molarity of C204 of oxalic acid in the ALEKS Data resource. Round your answer to 2 significant digits. Шм x10 2- You'll find information on the properties Suppose a 500. mL flask is filled with 1.6 mol of NO2 and 0.60 mol of NO. This reaction becomes possible: 2NO2(g) 2NO(g) +O2(g) Complete the table below, so that it lists the initial molarity of each compound, the change in molarity of each compound due to the reaction, and the equilibrium molarity of each compound after the reaction has come to equilibrium. Use x to stand for the unknown change in the molarity of O2. You can leave out the M symbol for molarity. initial change equilibrium NO₂ NO 02 x ப ☑ ⑤

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter4: Stoichiometry
Section: Chapter Questions
Problem 4.97PAE
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Suppose a 0.028 M aqueous solution of oxalic acid (H2C2O4) is prepared. Calculate the equilibrium molarity of C204
of oxalic acid in the ALEKS Data resource.
Round your answer to 2 significant digits.
Шм
x10
2-
You'll find information on the properties
Transcribed Image Text:Suppose a 0.028 M aqueous solution of oxalic acid (H2C2O4) is prepared. Calculate the equilibrium molarity of C204 of oxalic acid in the ALEKS Data resource. Round your answer to 2 significant digits. Шм x10 2- You'll find information on the properties
Suppose a 500. mL flask is filled with 1.6 mol of NO2 and 0.60 mol of NO. This reaction becomes possible:
2NO2(g) 2NO(g) +O2(g)
Complete the table below, so that it lists the initial molarity of each compound, the change in molarity of each compound due to the reaction, and the
equilibrium molarity of each compound after the reaction has come to equilibrium.
Use x to stand for the unknown change in the molarity of O2. You can leave out the M symbol for molarity.
initial
change
equilibrium
NO₂
NO
02
x
ப
☑
⑤
Transcribed Image Text:Suppose a 500. mL flask is filled with 1.6 mol of NO2 and 0.60 mol of NO. This reaction becomes possible: 2NO2(g) 2NO(g) +O2(g) Complete the table below, so that it lists the initial molarity of each compound, the change in molarity of each compound due to the reaction, and the equilibrium molarity of each compound after the reaction has come to equilibrium. Use x to stand for the unknown change in the molarity of O2. You can leave out the M symbol for molarity. initial change equilibrium NO₂ NO 02 x ப ☑ ⑤
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