For the following chemical equilibrium: N2(g) + O2(g) 2NO(g), the equilibrium constant (Kp) was experimentally determined to be 0.0017 at 2300 K. At a given point in time, the partial pressures of the gases were found to be: PN2 = 0.660 atm, Po2 = 0.660 atm, and PNO = 0.0272 atm. Which of the statements noted below is TRUE? %3D O Q, < Kp, so the reaction will continue to generate more products. O Q, > Kp, so the reaction will consume products in order to generate more reactants. O Q, = Kp, so the system is at chemical equilibrium. O The value of Kp will decrease until it is equal to Qp. O The value of K, will increase until it is equal to Qp-

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For the following chemical equilibrium: N2(g) + O2(g) → 2NO(g), the
equilibrium constant (Kp) was experimentally determined to be 0.0017 at
2300 K. At a given point in time, the partial pressures of the gases were
found to be: PN2 = 0.660 atm, Po2 = 0.660 atm, and PNO = 0.0272 atm.
Which of the statements noted below is TRUE?
%3!
O Qp < Kp, so the reaction will continue to generate more products.
O Q, > Kp, so the reaction will consume products in order to generate more
reactants.
O Q, = Kp, so the system is at chemical equilibrium.
O The value of K, will decrease until it is equal to Qp.
O The value of K, will increase until it is equal to Qp-
Transcribed Image Text:For the following chemical equilibrium: N2(g) + O2(g) → 2NO(g), the equilibrium constant (Kp) was experimentally determined to be 0.0017 at 2300 K. At a given point in time, the partial pressures of the gases were found to be: PN2 = 0.660 atm, Po2 = 0.660 atm, and PNO = 0.0272 atm. Which of the statements noted below is TRUE? %3! O Qp < Kp, so the reaction will continue to generate more products. O Q, > Kp, so the reaction will consume products in order to generate more reactants. O Q, = Kp, so the system is at chemical equilibrium. O The value of K, will decrease until it is equal to Qp. O The value of K, will increase until it is equal to Qp-
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