Ask Question
15 June, 13:17

The equilibrium constant for the reaction of hydrogen gas and oxygen gas to produce water at 500 k is 2.4 * 1047. what does the magnitude of the equilibrium constant tell us about the reaction? 2 h2 (g) + o2 (g) ⇄ 2 h2o (g) k = 2.4 * 1047

+5
Answers (1)
  1. 15 June, 14:29
    0
    Given reaction:

    2H2 (g) + O2 (g) ↔ 2H2O (g)

    The equilibrium constant can be expressed as

    1) a ratio of the concentration of products to that of the reactants

    Keq = [H2O]²/[H2]²[O2] = 2.4 * 10⁴⁷

    2) It can also be expressed as a ratio of the rate of forward reaction to that of the reverse

    Keq = k (forward) / k (reverse)

    Since the Keq value is quite high, this implies that k (f) >> k (r). i. e. the rate of formation of product (water) is much higher than the reactant
Know the Answer?
Not Sure About the Answer?
Get an answer to your question ✅ “The equilibrium constant for the reaction of hydrogen gas and oxygen gas to produce water at 500 k is 2.4 * 1047. what does the magnitude ...” in 📙 Physics if there is no answer or all answers are wrong, use a search bar and try to find the answer among similar questions.
Search for Other Answers