2 NOCI(g) = Cl:(g) + 2 NO (g) Consider this chemical reaction. A 1.5 liter reaction vessel container contains a gaseous mixture of 2.1 mol NOCI, 0.52 mol NO, and 0.21 mol Cl. If Kc is 0.035 at 673 Kelvin, what will the reaction quotient and the direction of the reaction be? * Note: convert concentration first to molar concentration by using the formula (mol solute / L of the solution) 0.00875; Forward O 0.013; Forward O 0.013; Reverse O 0.00875; Reverse

Chemistry: The Molecular Science
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Chapter12: Chemical Equilibrium
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2 NOCI(g) = Cl:(g) + 2 NO (g) Consider this chemical reaction. A 1.5 liter
reaction vessel container contains a gaseous mixture of 2.1 mol NOCI, 0.52
mol NO, and 0.21 mol Cl. If Kc is 0.035 at 673 Kelvin, what will the reaction
quotient and the direction of the reaction be? *
Note: convert concentration first to molar concentration by using the formula (mol solute / L of
the solution)
0.00875; Forward
O 0.013; Forward
O 0.013; Reverse
O 0.00875; Reverse
Which of the following is true for a chemical reaction at equilibrium? *
only the forward reaction stops
only the reverse reaction stops
both the forward and reverse reactions stop
the number of moles for the forward and reverse reactions are equal
the rates of the forward and reverse reactions are equal
Transcribed Image Text:2 NOCI(g) = Cl:(g) + 2 NO (g) Consider this chemical reaction. A 1.5 liter reaction vessel container contains a gaseous mixture of 2.1 mol NOCI, 0.52 mol NO, and 0.21 mol Cl. If Kc is 0.035 at 673 Kelvin, what will the reaction quotient and the direction of the reaction be? * Note: convert concentration first to molar concentration by using the formula (mol solute / L of the solution) 0.00875; Forward O 0.013; Forward O 0.013; Reverse O 0.00875; Reverse Which of the following is true for a chemical reaction at equilibrium? * only the forward reaction stops only the reverse reaction stops both the forward and reverse reactions stop the number of moles for the forward and reverse reactions are equal the rates of the forward and reverse reactions are equal
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