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 4, Problem 86GQ
(a)
Interpretation Introduction
Interpretation:
The reactants involved in the reaction should be named.
(a)
Expert Solution
Answer to Problem 86GQ
Sodium iodate (NaIO3) and sodium bisulfite (NaHSO3 ) are the reactants involved in the reaction.
Explanation of Solution
Balanced chemical equation for the given reaction is,
Reactant of a chemical reaction is the substrate compounds or the compounds which undergo a chemical reaction.
Here the reactants involved in this reaction are Sodium iodate (NaIO3) and sodium bisulfite (NaHSO3 ) respectively.
(b)
Interpretation Introduction
Interpretation:
The masses of NaIO3 and NaHSO3 required to produce 1kgofI2 has to be calculated.
Concept introduction:
For chemical reaction balanced chemical reaction equation written in accordance with the Law of conservation of mass.
Law of conservation of mass states that for a reaction total mass of the reactant and product must be equal.
The molar mass of an element or compound is the mass in grams of 1 mole of that substance, and it is expressed in the unit of grams per mol (g/mol).
Stoichiometric factor is a relationship between reactant and product which is obtained from the balanced chemical equation for a particular reaction.
Limiting reagent: limiting reagent is a reactant, which consumes completely in the chemical reaction. The quantity of the product depends on this limiting reagent, it can be determined with the help of balanced chemical equation for the reaction
(b)
Expert Solution
Answer to Problem 86GQ
Mass of NaIO3 and NaHSO3 required to produce 1kg of I2 are 1.55941kg and 2.05005kg respectively.
Explanation of Solution
Balanced chemical equation for the given reaction is,
Here more NaIO3 present, therefore NaHSO3 is the limiting reagent.
Using the stoichiometric factor the amount of I2 can be calculated as follows,
0.1066molNaHSO3×1molI25molNaHSO3=0.02132molI2
The mass of I2 produced in the reaction is 5.41g. It is obtained by multiplying the amount of I2 with its molar mass (molar mass of I2 is 253.80g/mol )
Therefore the theoretical yield of I2 produced in the reaction with 15.0gofNaIO3 and 125mLof0.853M is 5.41g
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