General Chemistry Principles, Patterns, and Applications
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General Chemistry Principles, Patterns, and Applications
General Chemistry Principles, Patterns, and Applications
The overall goal of this note is to produce a text that
introduces the students to the relevance and excitement of chemistry. Topics
covered includes: Molecules, Ions, and Chemical Formulas, Chemical Reactions,
Reactions in Aqueous Solution, The Structure of Atoms, The Periodic Table and
Periodic Trends, Ionic versus Covalent Bonding, Molecular Geometry and Covalent
Bonding Models, Gases, Liquids, Solids, Solutions, Chemical Kinetics , Chemical
Equilibrium, Aqueous Acid–Base Equilibriums, Solubility and Complexation
Equilibriums, Chemical Thermodynamics, Electrochemistry, Nuclear Chemistry,
Periodic Trends and the s-Block Elements, The p-Block Elements, The d-Block
Elements and Organic Compounds.
This PDF covers the following topics
for Chemistry : Classification of Matter, What are the objects around us made
of?, The Atom, Atomic Combinations, Intermolecular Forces, Solutions and
solubility, Atomic Nuclei, Thermal Properties and Ideal Gases, Organic
Molecules, Organic Macromolecules, Physical and Chemical Change, Representing
Chemical Change, Quantitative Aspects of Chemical Change, Energy Changes In
Chemical Reactions, Types of Reactions, Reaction Rates, Electrochemical
Reactions, The Water Cycle, Global Cycles: The Nitrogen Cycle, The Hydrosphere,
The Lithosphere, The Atmosphere.
This note covers the following topics: Solutions and Colloids, Kinetics,
Fundamentals of Equilibrium, Acid Base Equilbria , Equilibria of Other
Reactions, Thermodynamics, Electrochemistry, Nuclear Chemistry and Organic
Chemistry.
This note
explains the following topics: Analytical Chemistry, Atomic mass, Theory of
volumetric analysis, Atomic Structure and Chemical Bonding, Nuclear Chemistry,
Bioinorganic Chemistry.
This note explains the following topics:
Atoms, Nuclear reactions and radiation, Nuclear stability, Kinetics of
radioactive decay, Light, Quantum mechanics and spectroscopy, Hydrogenic
orbitals, Multielectron atoms, Periodic trends, Metals and crystal structures,
Chemistry of the alkali metals, Ionic compounds, The alkaline earth metals, The
group metals, Covalent bonding and Lewis structures, Molecular shape,
Intermolecular forces, Kinetic molecular theory of gases, Hydrogen, Lewis acids
and bases, The halogens, The chalcogens, Crystal field theory .
This book is specifically
aimed at broadening and deepening the theory and applications of titration. It
contains six chapters being organized into three main sections: Volumetric
Titration, Isothermal Titration Calorimetry, and Titrimetric Principles in
Electrolytic Systems.
this textbook has been developed
and arranged to provide a logical progression from fundamental to more advanced
concepts of chemical science. Topics are introduced within the context of
familiar experiences whenever possible treated with an appropriate rigor to satisfy the intellect of the learner, and
reinforced in subsequent discussions of related content. Topics covered
includes: Atoms, Molecules, and Ions, Thermochemistry, Stoichiometry of Chemical
Reactions, Composition of Substances and Solutions, Electronic Structures
and Periodic Properties of Elements, Chemical Bonding and Molecular Geometry,
Advanced Theories of Covalent Bonding, Gases, Liquids and Solids, Solutions and
Colloids, Kinetics, Thermodynamics, Fundamental Equilibrium Concepts, Equilibria
of Other Reaction Classes, Organic Chemistry, Electrochemistry and nuclear
Chemistry.
Topics covered in this note are: Electrochemistry,
Redox Titration, Thermochemistry, General Equilibria, Acid -Base Equilibria,
Stoichiometry and Kinetics.
Nano capsules for delivery
and reactions, Supramolecular switches, molecular machines, self assembly in
surfaces and Supramolecular chemistry of polymaric materials.
Author(s): This note explains
the following topics: Joachim Steinke and Ramon Vilar