Question

The reaction SO3(g) + NO(g) NO2(g) + SO2(g) has Kc = 0.500.If 0.100 mol of SO3...

The reaction SO3(g) + NO(g) NO2(g) + SO2(g) has Kc = 0.500.If 0.100 mol of SO3 and 0.200 mol NO were placed in a 2.0 L container and allowed to react, what would be the NO2 and SO2 concentrations be at equilibrium?

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
A reaction mixture was prepared by mixing 0.100 mol SO2, 0.200 mol NO2, 0.100 mol NO,...
A reaction mixture was prepared by mixing 0.100 mol SO2, 0.200 mol NO2, 0.100 mol NO, and 0.150 mol SO3 in a 5.00 L reaction vessel. The reaction is allowed to reach equilibrium at 460 K, when Kc = 85.0. What is the equilibrium concentration of each substance? SO2(g) + NO2(g) NO(g) + SO3(g)
SO3(g) + NO(g) NO2(g) + SO2(g) Kc was found to be 0.500 at a certain temperature....
SO3(g) + NO(g) NO2(g) + SO2(g) Kc was found to be 0.500 at a certain temperature. A reaction mixture is prepared in which 0.189 mol NO2 and 0.189 mol of SO2 are placed in a 4.00 L vessel. After the system reaches equilibrium what will be the equilibrium concentrations of all four gases?
4. At a given temperature, the equilibrium constant Kc for the reaction 2SO2(g) + O2(g) ⇌...
4. At a given temperature, the equilibrium constant Kc for the reaction 2SO2(g) + O2(g) ⇌ 2SO3(g) is 3.0x10^9 . If 1.00 mol of SO2 and 2.00 mol of O2 are placed in a 1.00 L container and allowed to react to equilibrium at this temperature, what is the concentration of SO3 at equilibrium? a) 0.500 M b) 1.00 M c) 2.00 M d) 3.87 x10^4 M e) none of these
The equilibrium constant for the reaction SO2(g)+NO2(g)⇌SO3(g)+NO(g) is 2.9. Find the amount of NO2 that must...
The equilibrium constant for the reaction SO2(g)+NO2(g)⇌SO3(g)+NO(g) is 2.9. Find the amount of NO2 that must be added to 2.2 mol of SO2 in order to form 1.2 mol of SO3 at equilibrium.
At a particular temperature, K = 3.11 for the reaction SO2(g)+NO2(g)=SO3(g)+NO(g) If all four gases had...
At a particular temperature, K = 3.11 for the reaction SO2(g)+NO2(g)=SO3(g)+NO(g) If all four gases had initial concentrations of 0.800 M, calculate the equilibrium concentrations of the gases. [SO2]= ___________M [NO2]= ___________M [SO3]= ___________M [NO]= ____________M
For the reaction SO2 (g) + Cl2 (g) ⇔ SO2Cl2 (g), Kc = 55.5 at a...
For the reaction SO2 (g) + Cl2 (g) ⇔ SO2Cl2 (g), Kc = 55.5 at a certain temperature. If 1.00 mole of SO2 (g) and 1.00 mole of Cl2 (g) are placed in a 10.0-L container and allowed to come to equilibrium, what is the equilibrium concentration of SO2Cl2?
What are the equlibirum concentrations of the products of the following reaction SO2 (g) + NO2...
What are the equlibirum concentrations of the products of the following reaction SO2 (g) + NO2 (g) <=> SO3 (g) +NO (g) Kc=2.50 if the reaction mixture initially contained:0.50 M SO2, 0.50 M NO2, 0.0050 MSO3, and 0.0050 M NO?
At a certain temperature, 0.920 mol of SO3 is placed in a 2.50-L container. 2 SO3...
At a certain temperature, 0.920 mol of SO3 is placed in a 2.50-L container. 2 SO3 (g) ⇌ 2 SO2 (g) + O2 (g) At equilibrium, 0.140 mol of O2 is present. Calculate Kc.
At a certain temperature, 0.760 mol of SO3 is placed in a 1.50-L container. 2SO3(g)--> 2SO2(g)+O2(g)...
At a certain temperature, 0.760 mol of SO3 is placed in a 1.50-L container. 2SO3(g)--> 2SO2(g)+O2(g) At equilibrium, 0.200 mol of O2 is present. Calculate Kc.
Determine the Kc value for the reaction SO2 (g) + O2 (g) ⇌ SO3 (g) when...
Determine the Kc value for the reaction SO2 (g) + O2 (g) ⇌ SO3 (g) when [SO2]=0.4 M, [O2]= 0.3 M, and [SO3]= 2 M. (1 point ) * 103 11.3 83.33 Cannot be determined What is the equilibrium constant expression for the reaction CO2 (g) + H2O (l) ⇌ H2CO3 (aq)? (1 point ) * K = [CO2] K = [H2CO3] / [CO2] K = [H2CO3] / [H2O] None of the above
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT