Introductory Chemistry: A Foundation - 8th Edition - by Steven S. Zumdahl, Donald J. DeCoste - ISBN 9781285199030
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Introductory Chemistry: A Foundation
8th Edition
Steven S. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
ISBN: 9781285199030

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Chapter 3.2 - Physical And Chemical Properties And ChangesChapter 3.4 - Mixtures And Pure SubstancesChapter 3.5 - Separation Of MixturesChapter 4 - Chemical Foundations: Elements, Atoms, And IonsChapter 4.4 - Formulas Of CompoundsChapter 4.5 - The Structure Of The AtomChapter 4.7 - IsotopesChapter 4.8 - Introduction To The Periodic TableChapter 4.11 - Compounds That Contain IonsChapter 5 - NomenclatureChapter 5.2 - Naming Binary Compounds That Contain A Metal And A Nonmetal (types I And Ii)Chapter 5.3 - Naming Binary Compounds That Contain Only Nonmetals (type Iii)Chapter 5.4 - Naming Binary Compounds: A ReviewChapter 5.5 - Naming Compounds That Contain Polyatomic IonsChapter 5.7 - Writing Formulas From NamesChapter 6 - Chemical Reactions: An IntroductionChapter 6.2 - Chemical EquationsChapter 6.3 - Balancing Chemical EquationsChapter 7 - Reactions In Aqueous SolutionsChapter 7.2 - Reactions In Which A Solid FormsChapter 7.3 - Describing Reactions In Aqueous SolutionsChapter 7.5 - Reactions Of Metals With Nonmetals (oxidation– Reduction)Chapter 7.7 - Other Ways To Classify ReactionsChapter 8 - Chemical CompositionChapter 8.2 - Atomic Masses: Counting Atoms By WeighingChapter 8.3 - The MoleChapter 8.5 - Molar MassChapter 8.6 - Percent Composition Of CompoundsChapter 8.8 - Calculation Of Empirical FormulasChapter 8.9 - Calculation Of Molecular FormulasChapter 9 - Chemical QuantitiesChapter 9.2 - Mole–mole RelationshipsChapter 9.3 - Mass CalculationsChapter 9.5 - Calculations Involving A Limiting ReactantChapter 9.6 - Percent YieldChapter 10 - EnergyChapter 10.1 - The Nature Of EnergyChapter 10.4 - ThermodynamicsChapter 10.5 - Measuring Energy ChangesChapter 10.6 - Thermochemistry (enthalpy)Chapter 10.7 - Hess’s LawChapter 10.9 - Energy And Our WorldChapter 10.10 - Energy As A Driving ForceChapter 11 - Modern Atomic TheoryChapter 11.4 - The Energy Levels Of HydrogenChapter 11.8 - The Wave Mechanical Model: Further DevelopmentChapter 11.9 - Electron Arrangements In The First 18 Atoms On The Periodic TableChapter 11.10 - Electron Configurations And The Periodic TableChapter 12 - Chemical BondingChapter 12.2 - ElectronegativitlyChapter 12.5 - Ionic Bonding And Structures Of Ionic CompoundsChapter 12.6 - Lewis StructuresChapter 12.7 - Lewis Structures Of Molecules With Multiple BondsChapter 12.9 - Molecular Structure: The Vsepr ModelChapter 13 - GasesChapter 13.1 - PressureChapter 13.2 - Pressure And Volume: Boyle’s LawChapter 13.3 - Volume And Temperature: Charles’s LawChapter 13.4 - Volume And Moles: Avogadro’s LawChapter 13.5 - The Ideal Gas LawChapter 13.6 - Dalton’s Law Of Partial PressuresChapter 13.8 - The Kinetic Molecular Theory Of GasesChapter 13.10 - Gas StoichiometryChapter 14 - Liquids And SolidsChapter 14.2 - Energy Requirements For The Changes Of StateChapter 14.3 - Intermolecular ForcesChapter 14.6 - Bonding In SolidsChapter 15 - SolutionsChapter 15.3 - Solution Composition: Mass PercentChapter 15.4 - Solution Composition: MolarityChapter 15.5 - DilutionChapter 15.6 - Stoichiometry Of Solution ReactionsChapter 15.7 - Neutralization ReactionsChapter 15.8 - Solution Composition: NormalityChapter 16 - Acids And BasesChapter 16.1 - Acids And BasesChapter 16.2 - Acid StrengthChapter 16.3 - Water As An Acid And A BaseChapter 16.4 - The Ph ScaleChapter 16.5 - Calculating The Ph Of Strong Acid SolutionChapter 17 - EquilibriumChapter 17.1 - How Chemical Reactions OccurChapter 17.2 - Conditions That Affect Reaction RatesChapter 17.5 - The Equilibrium Constant: An IntroductionChapter 17.6 - Heterogeneous EquilibriaChapter 17.7 - Le Châtelier’s PrincipleChapter 17.9 - Solubility EquilibriaChapter 18 - Oxidation–reduction Reactions And ElectrochemistryChapter 18.1 - Oxidation– Reduction ReactionsChapter 18.2 - Oxidation StatesChapter 18.3 - Oxidation– Reduction Reactions Between NonmetalsChapter 18.4 - Balancing Oxidation–reduction Reactions By The Half-reaction MethodChapter 18.7 - CorrosionChapter 19 - Radioactivity And Nuclear EnergyChapter 19.1 - Radioactive DecayChapter 19.3 - Detection Of Radioactivity And The Concept Of Half-lifeChapter 19.8 - Nuclear ReactorsChapter 20 - Organic ChemistryChapter 20.2 - AlkanesChapter 20.4 - Naming AlkanesChapter 20.5 - PetroleumChapter 20.7 - Alkenes And AlkynesChapter 20.9 - Naming Aromatic CompoundsChapter 20.11 - AlcoholsChapter 20.14 - Naming Aldehydes And KetonesChapter 21 - BiochemistryChapter 21.9 - Lipids

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INTRODUCTORY CHEMISTRY: A FOUNDATION combines enhanced problem-solving structure with substantial pedagogy to enable students to become strong independent problem solvers in the introductory course and beyond. Capturing student interest through early coverage of chemical reactions, accessible explanations and visualizations, and an emphasis on everyday applications, the authors explain chemical concepts by starting with the basics, using symbols or diagrams, and conclude by encouraging students to test their own understanding of the solution. This step-by-step approach has already helped hundreds of thousands of students master chemical concepts and develop problem-solving skills. The book is known for its focus on conceptual learning and for the way it motivates students by connecting chemical principles to real-life experiences in chapter-opening discussions and "Chemistry in Focus" boxes.

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