The number of moles of each substance that will be present in scene B when the mixture reaches equilibrium has to be calculated. The given reaction is M 2 + N 2 ⇌ 2MN Figure 1 Scene A represents mixture at equilibrium with M black and N orange. Each molecule represents 0 .10 mol and the volume is 1 .0 L . Concept Introduction: Equilibrium constant: The relationship between the concentration of products and concentration of reactants in a chemical reaction at equilibrium is said to be equilibrium constant. It is denoted by K . For a reaction, xX + yY ⇌ zZ The expression of K can be given as K c = [Z] z [X] x [Y] y where, [X] = equilibrium concentration of X [Y] = equilibrium concentration of Y [Z] = equilibrium concentration of Z
The number of moles of each substance that will be present in scene B when the mixture reaches equilibrium has to be calculated. The given reaction is M 2 + N 2 ⇌ 2MN Figure 1 Scene A represents mixture at equilibrium with M black and N orange. Each molecule represents 0 .10 mol and the volume is 1 .0 L . Concept Introduction: Equilibrium constant: The relationship between the concentration of products and concentration of reactants in a chemical reaction at equilibrium is said to be equilibrium constant. It is denoted by K . For a reaction, xX + yY ⇌ zZ The expression of K can be given as K c = [Z] z [X] x [Y] y where, [X] = equilibrium concentration of X [Y] = equilibrium concentration of Y [Z] = equilibrium concentration of Z
Definition Definition Transformation of a chemical species into another chemical species. A chemical reaction consists of breaking existing bonds and forming new ones by changing the position of electrons. These reactions are best explained using a chemical equation.
Chapter 17, Problem 17.92P
Interpretation Introduction
Interpretation:
The number of moles of each substance that will be present in scene B when the mixture reaches equilibrium has to be calculated.
The given reaction is
M2+ N2⇌2MN
Figure 1
Scene A represents mixture at equilibrium with M black and N orange. Each molecule represents 0.10 mol and the volume is 1.0 L.
Concept Introduction:
Equilibrium constant:
The relationship between the concentration of products and concentration of reactants in a chemical reaction at equilibrium is said to be equilibrium constant. It is denoted by K.
For a reaction,
xX + yY ⇌ zZ
The expression of K can be given as
Kc = [Z]z[X]x[Y]ywhere,[X] = equilibrium concentration of X[Y] = equilibrium concentration of Y[Z] = equilibrium concentration of Z
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