Consider the reaction whose K = 48.3 at a higher temperature. If an equimolar mixture of the reactant gives the concentration of the product to be 0.4 M at equilibrium, calculate the concentration of the hydrogen. H, (g) + 1, (g) 2HI(g) 7.2x10-2 M 0.01M O 5.2x103 M 5.8x10 2 M 3.6x10 2 M

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Consider the reaction whose K = 48.3 at a higher temperature. If an equimolar
mixture of the reactant gives the concentration of the product to be 0.4 Mat
equilibrium, calculate the concentration of the hydrogen.
H, (g) + , (g)
2HI(g)
7.2x102 M
0.01M
5.2x103 M
5.8x102 M
3.6x10 2 M
Transcribed Image Text:Consider the reaction whose K = 48.3 at a higher temperature. If an equimolar mixture of the reactant gives the concentration of the product to be 0.4 Mat equilibrium, calculate the concentration of the hydrogen. H, (g) + , (g) 2HI(g) 7.2x102 M 0.01M 5.2x103 M 5.8x102 M 3.6x10 2 M
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