C;H2 (g) +2 H2 (8) = CHs (g) The standard Gibb's free energy of formation values for CH2, H2, and C;H, are 209.2 kJ/mol, Okl/mol, and -32.9 kJ/mol, respectively. Given this information, what is the calculated equilibrium constant for this reaction at 298.15 K? O 526 x 104 O 3.10 O 1.10 O 3.86 x 104 O 261 x 10

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C2H2 (g) + 2 H2 (g) = C2H6 (g)
The standard Gibb's free energy of formation values for CH2, H2, and C2H6 are 209.2 kJ/mol, O J/mol, and -32.9
kJ/mol, respectively.
Given this information, what is the calculated equilibrium constant for this reaction at 298.15 K?
O 5.26 x 1024
O 3.10
O 1.10
O 3.86 x 10 43
O 2.61 x 10
Transcribed Image Text:C2H2 (g) + 2 H2 (g) = C2H6 (g) The standard Gibb's free energy of formation values for CH2, H2, and C2H6 are 209.2 kJ/mol, O J/mol, and -32.9 kJ/mol, respectively. Given this information, what is the calculated equilibrium constant for this reaction at 298.15 K? O 5.26 x 1024 O 3.10 O 1.10 O 3.86 x 10 43 O 2.61 x 10
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