(a) Interpretation: The balance net ionic equation for the reaction of the amphoteric oxide ZnO with hydrochloric acid needs to be determined. Concept introduction: Non-metals forms acidic oxides and tend to form covalent hydride as they have tendency to share their valence electrons to form covalent bond. Metallic oxides are ionic in nature whereas non-metallic oxides are covalent in nature. As the charge on cation increases in oxide, the covalent nature increases due to more polarization of anion from smaller cation.
(a) Interpretation: The balance net ionic equation for the reaction of the amphoteric oxide ZnO with hydrochloric acid needs to be determined. Concept introduction: Non-metals forms acidic oxides and tend to form covalent hydride as they have tendency to share their valence electrons to form covalent bond. Metallic oxides are ionic in nature whereas non-metallic oxides are covalent in nature. As the charge on cation increases in oxide, the covalent nature increases due to more polarization of anion from smaller cation.
Solution Summary: The author explains the balance net ionic equation for the reaction of the amphoteric oxide ZnO with hydrochloric acid needs to be determined.
The balance net ionic equation for the reaction of the amphoteric oxide ZnO with hydrochloric acid needs to be determined.
Concept introduction:
Non-metals forms acidic oxides and tend to form covalent hydride as they have tendency to share their valence electrons to form covalent bond. Metallic oxides are ionic in nature whereas non-metallic oxides are covalent in nature. As the charge on cation increases in oxide, the covalent nature increases due to more polarization of anion from smaller cation.
Interpretation Introduction
(b)
Interpretation:
The balance net ionic equation for the reaction of the amphoteric oxide ZnO with aqueous sodium hydroxide needs to be determined.
Concept introduction:
Non-metals forms acidic oxides and tend to form covalent hydride as they have tendency to share their valence electrons to form covalent bond. Metallic oxides are ionic in nature whereas non-metallic oxides are covalent in nature. As the charge on cation increases in oxide, the covalent nature increases due to more polarization of anion from smaller cation.
So I need help with understanding how to solve these types of problems. I'm very confused on how to do them and what it is exactly, bonds and so forth that I'm drawing. Can you please help me with this and thank you very much!
So I need help with this problem, can you help me please and thank you!
Draw the reaction mechanism to predict the product of the transformation below:
N
H
?
H₂O