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Ch.7 - Periodic Properties of the Elements
Brown - Chemistry: The Central Science 14th Edition
Brown14th EditionChemistry: The Central ScienceISBN: 9780134414232당신이 사용하는 게 아니라요?교과서 변경
7장, 문제 59

Predict whether each of the following oxides is ionic or molecular: SnO2, Al2O3, CO2, Li2O, Fe2O3, H2O.

검증된 단계별 안내
1
Identify the type of elements involved in each oxide. Metals typically form ionic oxides, while nonmetals form molecular oxides.
For SnO_2, Sn is a metal, so SnO_2 is likely ionic.
For Al_2O_3, Al is a metal, so Al_2O_3 is likely ionic.
For CO_2, C is a nonmetal, so CO_2 is likely molecular.
For Li_2O, Li is a metal, so Li_2O is likely ionic.

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주요 개념

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Ionic vs. Molecular Compounds

Ionic compounds are formed when electrons are transferred from one atom to another, typically between metals and nonmetals, resulting in charged ions that attract each other. In contrast, molecular compounds consist of atoms that share electrons through covalent bonds, usually between nonmetals. Understanding the nature of the bonding helps in predicting whether a compound is ionic or molecular.
추천 영상:
가이드 코스
02:11
Ionic Compounds Naming

Electronegativity

Electronegativity is a measure of an atom's ability to attract and hold onto electrons in a bond. When the difference in electronegativity between two atoms is large (generally greater than 1.7), the bond is likely ionic, while a smaller difference indicates a covalent bond. This concept is crucial for determining the type of bonding in oxides.
추천 영상:
가이드 코스
02:10
Electronegativity Trends

Metallic and Nonmetallic Oxides

Oxides can be classified based on the nature of the elements involved. Metallic oxides, formed from metals and oxygen, tend to be ionic, while nonmetallic oxides, formed from nonmetals and oxygen, are usually molecular. Recognizing the type of elements in the oxide helps in predicting its bonding characteristics.
추천 영상:
가이드 코스
00:58
Oxide Reactions