
(a)
Interpretation:
Unit of rate constants in first order has to be identified.
Concept Introduction:
Order of a reaction: The sum of exponents of the concentrations in the rate law for the reaction is said to be order of a reaction.
Rate law: It is an equation that relates the
- Depending on order of the
chemical reaction , the rate law or rate equation also varies.
(b)
Interpretation:
Unit of rate constant in second order has to be identified.
Concept Introduction:
Order of a reaction: The sum of exponents of the concentrations in the rate law for the reaction is said to be order of a reaction.
Rate law: It is an equation that relates the rate of reaction to the concentrations or pressures of substrates (reactants). It is also said to be as rate equation.
- Depending on order of the chemical reaction, the rate law or rate equation also varies.
(c)
Interpretation:
Unit of rate constant in third order has to be identified.
Concept Introduction:
Order of a reaction: The sum of exponents of the concentrations in the rate law for the reaction is said to be order of a reaction.
Rate law: It is an equation that relates the rate of reaction to the concentrations or pressures of substrates (reactants). It is also said to be as rate equation.
- Depending on order of the chemical reaction, the rate law or rate equation also varies.
(d)
Interpretation:
Unit of rate constants in given order has to be identified.
Concept Introduction:
Order of a reaction: The sum of exponents of the concentrations in the rate law for the reaction is said to be order of a reaction.
Rate law: It is an equation that relates the rate of reaction to the concentrations or pressures of substrates (reactants). It is also said to be as rate equation.
- Depending on order of the chemical reaction, the rate law or rate equation also varies.

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Chapter 16 Solutions
Chemistry: The Molecular Nature of Matter and Change
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