Nitric oxide (NO) reacts readily with chlorine gas as
follows:
2NO(g)+Cl2(g)⇌2NOCl(g)
At 700 K the equilibrium constant Kp for this reaction is 0.26.
Predict the behavior of each of the following mixtures at this
temperature.
A) PNO=0.15atm, PCl2=0.31atm and PNOCl=0.11atm
| reaction will shift to the left (toward reactants) |
| reaction will shift to the right (toward products) |
| reaction is at equilibrium |
B) PNO=0.12atm, PCl2=0.10atm, and PNOCl=0.050atm
| reaction will shift to the left (toward reactants) |
| reaction will shift to the right (toward products) |
| reaction is at equilibrium |
C) PNO=0.15atm, PCl2=0.20atm, and PNOCl=5.10×10−3atm
| reaction will shift to the left (toward reactants) |
| reaction will shift to the right (toward products) |
| reaction is at equilibrium |
Nitric oxide (NO) reacts readily with chlorine gas as follows: 2NO(g)+Cl2(g)⇌2NOCl(g) At 700 K the equilibrium...
3. Nitric oxide, NO(g) reacts with chlorine gas, Cl2(g), in the reaction 2NO(g) + Cl2(g) → 2NOCIG) Initial rates of reaction are determined for various combinations of initial concentrations of reactants and recorded below; Trial Initial [NO] (mol/L) 0.10 0.10 0.20 Initial (C12] (mol/L) 0.10 0.20 0.20 Rate of production of NOCI (mol/L.s) 1.8 x 107 3.6 x 102 1.43 x 10" a) What is the rate law equation for the reaction? (1 mark) b) What is the rate-determining step?...
The equilibrium constant, K, for the formation of nitrosyl chloride from nitric oxide and chlorine. 2NO(g) + Cl2(8) = 2NOCI(g) is 6.5 x 104 at 35°C. In which direction will the reaction proceed to reach equilibrium if the starting concentrations of NO, Cl., and NOCI are 2.6 x 10-3 M, 7.4 x 10-M, and 5.8 M respectively? o o O shift right shift lent neither
Nitric oxide (NO) reacts with chlorine gas (Cl) to form nitrosyl chloride (NOC) according to the reaction below: 2 NO(g) + C12()=2 NOCI(g) Kp = ? at 700 K A rigid vessel initially contains equimolar amounts of NO and C1, (and nothing else) at 700 K and a total pressure of 2.00 bar. After the system reaches equilibrium at 700 K, the total pressure is found to be 1.84 bar. What is the value of the equilibrium constant Kp? A)...
given: 2NO(g)+Cl2(g)⇌2NOCl(g) Kp=0.27 at 700 K A reaction mixture initially contains equal partial pressures of NO and Cl2. At equilibrium, the partial pressure of NOCl was measured to be 115 torr. What were the initial partial pressures of NO and Cl2?
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At 35°C, K = 1.6 x 10-5 for the reaction: 2NOCl(g) « 2NO(g) + Cl2(g) 16. Determine the concentration for Cl2 at equilibrium for a reaction setup with 2.0 moles of NOCl in a 2.0L flask: A. 0.016 M *** B. 0.032 M C. 0.049 M D. 2 M
Nitric oxide gas (NO) reacts with chlorine gas according to the chemical equation given below. NO + Cl2 → NOCI The following initial rates of reaction have been measured for the given reagent concentrations. Expt. # Rate (M/hr) NO (M) Cl2.(M) 1 1.19 0.50 0.50 2 4.79 1.00 0.50 3 9.59 1.00 1.00 Which of the following is the rate law (rate equation) for this reaction? O rate = k[NO][C1212 rate =k[NO](C2 Orate = k[NO]2[Cl2] O rate = k[NO]2[C1212
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Phosphorus trichloride gas and chlorine gas react to form phosphorus pentachloride according to the following equilibrium: PCl3(g)+Cl2(g)⇌PCl5(g) A 7.5-L gas vessel is charged with a mixture of PCl3(g) and Cl2(g), which is allowed to equilibrate at 450 K . At equilibrium, the partial pressures of the three gases are PPCl3 = 0.121 atm ,PCl2 = 0.159 atm , and PPCl5 = 1.60 atm A. What is the value of Kp at this temperature? B. Does the equilibrium favor reactants or...
21. Nitric oxide gas reacts with chlorine gas according to the equation: The following data were obtained for this reaction initial rate mol(I br. initial [NO] initial [Cl2] 1.19 0.50 0.50 4.19 1.00 0.50 1.00 1.00 9.59 1.50 32.27 1.50 Which of the following rate laws is consistent with these data? A. Rate kINO1 1/2 C. Rate kINO][C12] D. Rate kINO]2[Cl2] E. Rate k[NO] [Cl212