
In a chemical reaction, chemical equilibrium is the state in which both reactants and products are present in concentrations which have no further tendency to change with time. Usually, this state results when the forward reaction proceeds at the same rate as the reverse reaction. The reaction rates of the forward and backward reactions are genera...
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http://en.wikipedia.org/wiki/Chemical_equilibrium

a condition in the course of a reversible chemical reaction in which no net change in the amounts of reactants and products occurs. A reversible ... [10 related articles]
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http://www.britannica.com/eb/a-z/c/63

A state of dynamic balance in which the rates of forward and reverse reactions are equal; there is no net change in concentrations of reactants or products while a system is at equilibrium.
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http://www.chemistry-dictionary.com/definition/chemical+equilibrium.php

A state of dynamic balance in which the rates of forward and reverse reactions are equal, there is no net change in concentrations of reactants or products while a system is at equilibrium.
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<chemistry> A state in a reversible chemical reaction at which the reactants are turning into products at the same rate as the products are turning back into the reactants, so that the amounts of each reactant and product remains constant. ... (09 Oct 1997) ...
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http://www.encyclo.co.uk/local/20973

[
n] - a chemical reaction and its reverse proceed at equal rates
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http://www.webdictionary.co.uk/definition.php?query=chemical%20equilibrium
equilibrium noun a chemical reaction and its reverse proceed at equal rates
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https://www.encyclo.co.uk/local/20974

Condition in which the products of a chemical reaction are formed at the same rate at which they decompose back into the reactants, so that the concentration of each reactant and product remains constant. It is a reversible reaction; the reaction can happen in both directions. For example, in the Haber process, nitrogen and hydrogen combine to ...
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https://www.encyclo.co.uk/local/21221

The condition when the forward and reverse reaction rates are equal and the concentrations of the products remain constant.
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https://www.encyclo.co.uk/local/21571
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