7. If the dissociation constant of di chloro acetic acid is Ka = 5 x 103 and its concentration before dissociation (0.28M)), the value of the concentration of [H] in an acid solution by the following equation: C2CHCOOH > CHCHCOO- H+ is equal to: A) 0.2690 B) 0. 0925 C) 0.374 D)0.5238 8. The relationship between k, and k, for the following equation: CH:(g)+ H;O (g) CO (g) + 3H2(g) A) k = k. (RT)-1 B) Kp = K. C) k = k. (RT) -2 D) Kp = Kc (RT)2.

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7. If the dissociation constant of di chloro acetic acid is Ka = 5 x 10-3 and its
concentration before dissociation (0.28M)), the value of the concentration of [H]
in an acid solution by the following equation:
CLCHCOOH
> C2CHCOO-
H+
is equal to:
A) 0.2690
B) 0. 0925
C) 0.374
D)0.5238
8. The relationship between k and k, for the following equation:
CH4(g)+ H20 (g) CO (g)
+ 3H2(g)
A) k= k. (RT) B) Kp = K.
C) k = k. (RT) 2 D) Kp = Kc (RT)2 .
Transcribed Image Text:homework(8) [Compatibility Mode] - Word (Product Activation Failed) References Mailings Review View Tell me what you want to do... 7. If the dissociation constant of di chloro acetic acid is Ka = 5 x 10-3 and its concentration before dissociation (0.28M)), the value of the concentration of [H] in an acid solution by the following equation: CLCHCOOH > C2CHCOO- H+ is equal to: A) 0.2690 B) 0. 0925 C) 0.374 D)0.5238 8. The relationship between k and k, for the following equation: CH4(g)+ H20 (g) CO (g) + 3H2(g) A) k= k. (RT) B) Kp = K. C) k = k. (RT) 2 D) Kp = Kc (RT)2 .
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