(a) Interpretation: A net ionic equation for the reaction of OH − with Sb 3+ forming a precipitate needs to be determined. Concept introduction: Net ionic equation is the ionic equation in which reactants are written in the form of ions, if they occur as ions in a reaction medium and product form are shown as combination of ions. The charges of ions and each atom in the reaction are balanced.
(a) Interpretation: A net ionic equation for the reaction of OH − with Sb 3+ forming a precipitate needs to be determined. Concept introduction: Net ionic equation is the ionic equation in which reactants are written in the form of ions, if they occur as ions in a reaction medium and product form are shown as combination of ions. The charges of ions and each atom in the reaction are balanced.
Solution Summary: The author explains the net ionic equation for the reaction of OH- with antimony (III) hydroxide.
A net ionic equation for the reaction of OH− with Sb3+ forming a precipitate needs to be determined.
Concept introduction:
Net ionic equation is the ionic equation in which reactants are written in the form of ions, if they occur as ions in a reaction medium and product form are shown as combination of ions. The charges of ions and each atom in the reaction are balanced.
Interpretation Introduction
(b)
Interpretation:
The net ionic equation for the reaction of OH− with antimony (III) hydroxide, when more OH- is added needs to be determined.
Concept introduction:
Net ionic equation is the ionic equation in which reactants are written in the form of ions if they occur as ions in a reaction medium, and product form are shown as combination of ions. The charges of ions and each atom in the reaction are balanced.
Interpretation Introduction
(c)
Interpretation:
A net ionic equation for the reaction of Sb3+ with OH− which forms a complex ion needs to be determined.
Concept introduction:
Net ionic equation is the ionic equation in which reactants are written in the form of ions if they occur as ions in a reaction medium and product form are shown as combination of ions. The charges of ions and each atom in the reaction are balanced.
3) Determine if the pairs are constitutional isomers, enantiomers, diastereomers, or mesocompounds.
(4 points)
In the decomposition reaction in solution B → C, only species C absorbs UV radiation, but neither B nor the solvent absorbs. If we call At the absorbance measured at any time, A0 the absorbance at the beginning of the reaction, and A∞ the absorbance at the end of the reaction, which of the expressions is valid? We assume that Beer's law is fulfilled.
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