The reactions shown here can be combined to make the overall reaction C(s) + H;O(g) CO(g) + H2(8) by reversing some and/or dividing all the coefficients by a number. As a group, determine how the reactions need to be modified to sum to the overall process. Then have each group member determine the value of K for one of the reactions to be combined. Finally, combine all the values of K to determine the value of K for the overall reaction. a. C(s) + O2(g) CO(g) K = 1.363 x 1069 K= 1.389 x 100 K = 1.477 X 1090 b. 2 H2(8) + Oz(8) 2 H20(g) c. 2 CO(g) + O2(g) 2 CO2(g)

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Chapter1: Chemical Foundations
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The reactions shown here can be combined to make the overall
reaction C(s) + H;O(g) CO(g) + H2(8) by reversing some
and/or dividing all the coefficients by a number. As a group,
determine how the reactions need to be modified to sum to the
overall process. Then have each group member determine the
value of K for one of the reactions to be combined. Finally,
combine all the values of K to determine the value of K for the
overall reaction.
a. C(s) + O2(g) CO(g)
K = 1.363 x 1069
K= 1.389 x 100
K = 1.477 X 1090
b. 2 H2(8) + Oz(8)
2 H20(g)
c. 2 CO(g) + O2(g) 2 CO2(g)
Transcribed Image Text:The reactions shown here can be combined to make the overall reaction C(s) + H;O(g) CO(g) + H2(8) by reversing some and/or dividing all the coefficients by a number. As a group, determine how the reactions need to be modified to sum to the overall process. Then have each group member determine the value of K for one of the reactions to be combined. Finally, combine all the values of K to determine the value of K for the overall reaction. a. C(s) + O2(g) CO(g) K = 1.363 x 1069 K= 1.389 x 100 K = 1.477 X 1090 b. 2 H2(8) + Oz(8) 2 H20(g) c. 2 CO(g) + O2(g) 2 CO2(g)
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