Chemistry: The Molecular Nature of Matter and Change - 9th Edition - by Martin Silberberg - ISBN 9781260477467

Chemistry: The Molecular Nature of Matt...
9th Edition
Martin Silberberg
Publisher: Mcgraw-hill Higher Education (us)
ISBN: 9781260477467

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Chapter 2.7 - Compounds: Introduction To BondingChapter 2.8 - compounds: Formulas, Names, And MassesChapter 3 - Stoichiometry Of Formulas And EquationsChapter 3.1 - The MoleChapter 3.2 - Determining The Formula Of An Unknown CompoundChapter 3.3 - Writing And Balancing Chemical EquationsChapter 3.4 - Calculating Quantities Of Reactant And ProductChapter 4 - Three Major Classes Of Chemical ReactionsChapter 4.1 - Solution Concentration And The Role Of Water As A SolventChapter 4.2 - Precipitation ReactionsChapter 4.3 - Acid-base ReactionsChapter 4.4 - Oxidation-reduction (redox) ReactionsChapter 4.5 - Elements In Redox ReactionsChapter 5 - Gases And The Kinetic-molecular TheoryChapter 5.2 - Gas Pressure And Its MeasurementChapter 5.3 - The Gas Laws And Their Experimental FoundationsChapter 5.4 - Rearrangements Of The Ideal Gas LawChapter 5.5 - The Kinetic-molecular Theory: A Model For Gas BehaviorChapter 6 - Thermochemistry: Energy Flow And Chemical ChangeChapter 6.1 - Forms Of Energy And Their InterconversionChapter 6.2 - Enthalpy: Changes At Constant PressureChapter 6.3 - Calorimetry: Measuring The Heat Of A Chemical Or Physical ChangeChapter 6.4 - Stoichiometry Of Thermochemical EquationsChapter 6.5 - hess’s Law: Finding Δh Of Any ReactionChapter 6.6 - Standard Enthalpies Of Reaction (δhrxn∘)Chapter 7 - Quantum Theory And Atomic StructureChapter 7.1 - The Nature Of LightChapter 7.2 - Atomic SpectraChapter 7.3 - The Wave-particle Duality Of Matter And EnergyChapter 7.4 - The Quantum-mechanical Model Of The AtomChapter 8 - Electron Configuration And Chemical PeriodicityChapter 8.2 - The Quantum-mechanical Model And The Periodic TableChapter 8.3 - Trends In Three Atomic PropertiesChapter 8.4 - Atomic Properties And Chemical ReactivityChapter 9 - Models Of Chemical BondingChapter 9.2 - The Ionic Bonding ModelChapter 9.3 - The Covalent Bonding ModelChapter 9.4 - Bond Energy And Chemical ChangeChapter 9.5 - Between The Extremes: Electronegativity And Bond PolarityChapter 10 - The Shapes Of MoleculesChapter 10.1 - Depicting Molecules And Ions With Lewis StructuresChapter 10.2 - Valence-shell Electron-pair Repulsion (vsepr) TheoryChapter 10.3 - Molecular Shape And Molecular PolarityChapter 11 - Theories Of Covalent BondingChapter 11.1 - Valence Bond (vb) Theory And Orbital HybridizationChapter 11.2 - Modes Of Orbital Overlap And The Types Of Covalent BondsChapter 11.3 - Molecular Orbital (mo) Theory And Electron DelocalizationChapter 12 - Intermolecular Forces: Liquids, Solids, And Phase ChangesChapter 12.2 - Quantitative Aspects Of Phase ChangesChapter 12.3 - Types Of Intermolecular ForcesChapter 12.6 - The Solid State: Structure, Properties, And BondingChapter 13 - The Properties Of Mixtures: Solutions And ColloidsChapter 13.1 - Types Of Solutions: Intermolecular Forces And SolubilityChapter 13.3 - Why Substances Dissolve: Breaking Down The Solution ProcessChapter 13.4 - Solubility As An Equilibrium ProcessChapter 13.5 - Concentration TermsChapter 13.6 - Colligative Properties Of SolutionsChapter 13.7 - The Structure And Properties Of ColloidsChapter 14 - Periodic Patterns In The Main-group ElementsChapter 15 - Organic Compounds And The Atomic Properties Of CarbonChapter 15.2 - The Structures And Classes Of HydrocarbonsChapter 15.3 - Some Important Classes Of Organic ReactionsChapter 15.4 - Properties And Reactivities Of Common Functional GroupsChapter 15.6 - The Monomer-polymer Theme Ii: Biological MacromoleculesChapter 16 - Kinetics: Rates And Mechanisms Of Chemical ReactionsChapter 16.2 - Expressing The Reaction RateChapter 16.3 - The Rate Law And Its ComponentsChapter 16.4 - Integrated Rate Laws: Concentration Changes Over TimeChapter 16.5 - Theories Of Chemical KineticsChapter 16.6 - Reaction Mechanisms: The Steps From Reactant To ProductChapter 16.7 - Catalysis: Speeding Up A ReactionChapter 17 - Equilibrium: The Extent Of Chemical ReactionsChapter 17.2 - The Reaction Quotient And The Equilibrium ConstantChapter 17.3 - Expressing Equilibria With Pressure Terms: Relation Between Kc And KpChapter 17.4 - Comparing Q And K To Determine Reaction DirectionChapter 17.5 - How To Solve Equilibrium ProblemsChapter 17.6 - Reaction Conditions And Equilibrium: Le Chatelier's PrincipleChapter 18 - Acid-base EquilibriaChapter 18.2 - Proton Transfer And The Bronsted Lowry Acid-base DefinitionChapter 18.3 - Autoionization Of Water And The Ph ScaleChapter 18.4 - Strong Acids And Bases And Ph CalculationsChapter 18.5 - Weak Acids And Their Equilibria CalculationsChapter 18.7 - Weak Bases And Their Relation To Weak AcidsChapter 18.8 - Acid-base Properties Of Salt SolutionsChapter 18.10 - Electron-pair Donation And The Lewis Acid-base DefinitionChapter 19 - Ionic Equilibria In Aqueous SystemsChapter 19.1 - Equilibria Of Acid-base BuffersChapter 19.2 - Acid-base Titration CurvesChapter 19.3 - Equilibria Of Slightly Soluble Ionic CompoundsChapter 19.4 - Equilibria Involving Complex IonsChapter 20 - Thermodynamics: Entropy, Free Energy, And Reaction DirectionChapter 20.1 - The Second Law Of Thermodynamics: Predicting Spontaneous ChangeChapter 20.2 - Calculating The Change In Entropy Of A ReactionChapter 20.3 - Entropy, Free Energy, And WorkChapter 20.4 - Free Energy, Equilibrium, And Reaction DirectionChapter 21 - Electrochemistry: Chemical Change And Electrical WorkChapter 21.1 - Redox Reactions And Electrochemical CellsChapter 21.2 - Voltaic Cells: Using Spontaneous Reactions To Generate Electrical EnergyChapter 21.3 - Cell Potential: Output Of A Voltaic CellChapter 21.4 - Free Energy And Electrical WorkChapter 21.7 - Electrolytic Cells: Using Electrical Energy To Drive Nonspontaneous ReactionsChapter 22 - The Elements In Nature And IndustryChapter 23 - Transition Elements And Their Coordination CompoundsChapter 23.1 - Properties Of The Transition ElementsChapter 23.2 - The Inner Transition ElementsChapter 23.3 - Coordination CompoundsChapter 23.4 - Theoretical Basis For The Bonding And Properties Of Complex IonsChapter 24 - Nuclear Reactions And Their ApplicationsChapter 24.1 - Radioactive Decay And Nuclear StabilityChapter 24.2 - The Kinetics Of Radioactive DecayChapter 24.3 - Nuclear Transmutation: Induced Changes In NucleiChapter 24.6 - The Interconversion Of Mass And Energy

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