Select all that apply. Select the equilibrium constant expressions (K, and Kp) for the formation of nickel tetracarbonyl, which is used to separate nickel from other impurities. Ni(s) + 4CO(g) 5 Ni(CO)4(g) PNCO)A (е) Кр3 [Ni(CO)4] (a) (a) K. = [CO] (Рсо) (b) (c) [Ni(CO)4] PNi(CO)4 () К, - [coj* (f) Kp = (Pco) (d) (e) [Ni(CO)4] (c) K. PNi(CO)4 [Ni][CO] (g) Kp = - (f) (Py)(Pco) [Ni(CO)4] (d) K. : [Ni][COj PN(CO), (h) (h) Kp = (Py)(Pco)

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Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.79PAE
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Select all that apply.
Select the equilibrium constant expressions (K, and Kp) for the formation of nickel tetracarbonyl, which
is used to separate nickel from other impurities.
Ni(s) + 4CO(g) 5 Ni(CO),(g)
(a)
[Ni(CO)4]
PN(CO).
(a) K. =
(е) Кр3
[CO]
(Pco)
(b)
(c)
[Ni(CO)4]
PN{CO).
(b) K =
[coj*
(1) Kp =
(Pco)
(d)
[Ni(CO)4]
(e)
(c) K.
PNi(CO)4
[Ni][CO]
(g) Kp = -
(f)
(Py)(Pco)
[Ni(CO)4]
(d) K. =
PN(CO),
[Ni][COJ*
(h) Kp =
(h)
(PN)(Pco)
Transcribed Image Text:Select all that apply. Select the equilibrium constant expressions (K, and Kp) for the formation of nickel tetracarbonyl, which is used to separate nickel from other impurities. Ni(s) + 4CO(g) 5 Ni(CO),(g) (a) [Ni(CO)4] PN(CO). (a) K. = (е) Кр3 [CO] (Pco) (b) (c) [Ni(CO)4] PN{CO). (b) K = [coj* (1) Kp = (Pco) (d) [Ni(CO)4] (e) (c) K. PNi(CO)4 [Ni][CO] (g) Kp = - (f) (Py)(Pco) [Ni(CO)4] (d) K. = PN(CO), [Ni][COJ* (h) Kp = (h) (PN)(Pco)
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