ism valid or no? law is second orer in NO and first order in Br₂. Is the proposed 2. Problem below If a 10.00 L flask at 500 K is filled with a 0.30 mole of hydrogen and 0.30 mole of iodine, what are the equilibrium concentrations of the three gases? 3. The equilibrium constant Kc = 45.0. The relevant reaction is H₂(g) 12(g) For the reaction: CO + H₂O₂) → CO the initial concentration of 2HI(g)

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c. The experimental rate law is second orer in NO and first order in Br₂. Is the proposed
mechanism valid or no?
2. Problem below
If a 10.00 L flask at 500 K is filled with a 0.30 mole of hydrogen and 0.30 mole of iodine,
what are the equilibrium concentrations of the three gases?
The equilibrium constant Kc = 45.0. The relevant reaction is
H₂(g) + 12(g)
2HI(g)
For the reaction: CO + H₂O₂) → CO2(g) + H2), KC 3.80 under certain conditions. If
the initial concentration of each reactant is 2.00 M,
3.
Find the equilibrium concentrations for each item in the equation.
Transcribed Image Text:c. The experimental rate law is second orer in NO and first order in Br₂. Is the proposed mechanism valid or no? 2. Problem below If a 10.00 L flask at 500 K is filled with a 0.30 mole of hydrogen and 0.30 mole of iodine, what are the equilibrium concentrations of the three gases? The equilibrium constant Kc = 45.0. The relevant reaction is H₂(g) + 12(g) 2HI(g) For the reaction: CO + H₂O₂) → CO2(g) + H2), KC 3.80 under certain conditions. If the initial concentration of each reactant is 2.00 M, 3. Find the equilibrium concentrations for each item in the equation.
1. The formation of NOBr, 2 NO (g) + Br2 (g) → 2 NOBr (g), is studied, and the following
mechanism is proposed:
Step 1 NO (g) + Br2 (g) → NOBr2(g) (fast, equilibrium)
Step 2 NO (g) + NOBr2 (g) → 2 NOBr (g) (slow)
a. Determine any catalysts and intermediates in the mechanism.
b. Determine the proposed rate law.
c. The experimental rate law is second orer in NO and first order in Br2. Is the proposed
mechanism valid or no?
2. Problem below
If a 10.00 L flask at 500 K is filled with a 0.30 mole of hydrogen and 0.30 mole of iodine,
what are the equilibrium concentrations of the three gases?
Transcribed Image Text:1. The formation of NOBr, 2 NO (g) + Br2 (g) → 2 NOBr (g), is studied, and the following mechanism is proposed: Step 1 NO (g) + Br2 (g) → NOBr2(g) (fast, equilibrium) Step 2 NO (g) + NOBr2 (g) → 2 NOBr (g) (slow) a. Determine any catalysts and intermediates in the mechanism. b. Determine the proposed rate law. c. The experimental rate law is second orer in NO and first order in Br2. Is the proposed mechanism valid or no? 2. Problem below If a 10.00 L flask at 500 K is filled with a 0.30 mole of hydrogen and 0.30 mole of iodine, what are the equilibrium concentrations of the three gases?
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