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(a)
Interpretation:
The stoichiometry concept map is to be drawn and the mass of
Concept introduction:
Stoichiometry measures the amount of reactant and product consumed or formed in a
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Answer to Problem 26E
The stoichiometry concept map is shown below.
The mass of
Explanation of Solution
It is given that
The given chemical reaction is stated below.
The stoichiometry concept map is shown below.
Figure 1
The chemical reaction (1) should be balanced first to calculate the mass of
The number of potassium atom and the hydrogen atom are not equal on both sides. A coefficient of
The balanced equation is stated below.
The equation (2) shows that
At
Therefore, the number of moles of
The molar mass of potassium is
The molar mass of oxygen is
The molar mass of hydrogen is
The molar mass of carbon is
The number of moles of
The mass for
Therefore, the mass of
The stoichiometry concept map is shown in Figure 1. The mass of
(b)
Interpretation:
The stoichiometry concept map is to be drawn and the mass of the
Concept introduction:
Stoichiometry measures the amount of reactant and product consumed or formed in a chemical reaction. It gives the relationship between the reactants and products. Stoichiometry concept maps are used to determine the relation of reactant and product in terms of stoichiometry.
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Answer to Problem 26E
The stoichiometry map is shown below.
The mass of
Explanation of Solution
The stoichiometry concept mass is shown below.
Figure 1
The number of potassium atom and the hydrogen atom are not equal on both sides. A coefficient of
The balanced equation is stated below.
The equation (2) shows that
The molar mass of
The mass calculated of
The number of moles of
The molar mass of potassium is
The molar mass of oxygen is
The molar mass of carbon is
The mass of
The number of moles of
The mass for
Therefore, the mass of
The mass of
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Chapter 15 Solutions
Introductory Chemistry: Concepts and Critical Thinking (8th Edition)
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