The form of the expression for the equilibrium constant, Keq, for the reaction below is:
2 NaIO3 (s) 2 NaI (s) + 3 O2 (g)
A) ![The form of the expression for the equilibrium constant, K<sub>eq</sub>, for the reaction below is: 2 NaIO<sub>3</sub> (s) \rightarrow 2 NaI (s) + 3 O<sub>2</sub> (g) A) B) C) D) K<sub>eq</sub> = [O<sub>2</sub>]<sup>3</sup>](https://d2lvgg3v3hfg70.cloudfront.net/TB10281/11eeb92b_d2e6_6231_b585_db1cc2e1fc8a_TB10281_11.jpg)
B) ![The form of the expression for the equilibrium constant, K<sub>eq</sub>, for the reaction below is: 2 NaIO<sub>3</sub> (s) \rightarrow 2 NaI (s) + 3 O<sub>2</sub> (g) A) B) C) D) K<sub>eq</sub> = [O<sub>2</sub>]<sup>3</sup>](https://d2lvgg3v3hfg70.cloudfront.net/TB10281/11eeb92b_d2e6_8942_b585_ef73372d4029_TB10281_11.jpg)
C) ![The form of the expression for the equilibrium constant, K<sub>eq</sub>, for the reaction below is: 2 NaIO<sub>3</sub> (s) \rightarrow 2 NaI (s) + 3 O<sub>2</sub> (g) A) B) C) D) K<sub>eq</sub> = [O<sub>2</sub>]<sup>3</sup>](https://d2lvgg3v3hfg70.cloudfront.net/TB10281/11eeb92b_d2e6_8943_b585_f92406f0c714_TB10281_11.jpg)
D) Keq = [O2]3
Correct Answer:
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