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label Cursuri autorenew 2025-09-29, 16:59 history_edu Donald R. Sadoway
By Donald R. Sadoway - Massachusetts Institute of Technology
Licence:

Course Description:
This course explores the basic principles of chemistry and their application to engineering systems. It deals with the relationship between electronic structure, chemical bonding, and atomic order. It also investigates the characterization of atomic arrangements in crystalline and amorphous solids: metals, ceramics, semiconductors, and polymers (including proteins). Topics covered include organic chemistry, solution chemistry, acid-base equilibria, electrochemistry, biochemistry, chemical kinetics, diffusion, and phase diagrams. Examples are drawn from industrial practice (including the environmental impact of chemical processes), from energy generation and storage, e.g., batteries and fuel cells, and from emerging technologies, e.g., photonic and biomedical devices.
Lectures:






Lecture 1 - Introduction to Solid State Chemistry









Lecture 2 - Classification Schemes for the Elements









Lecture 3 - Rutherford Modle of the Atom and Bohr Model of Hydrogen









Lecture 4 - Atomic Spectra of Hydrogen and Matter/Energy Interactions Involving Atomic Hydrogen









Lecture 5 - The Shell Model and Multi-electron Atoms









Lecture 6 - De Broglie, Heisenberg, and Schrödinger









Lecture 7 - Octet Stability by Electron Transfer: Ionic Bonding









Lecture 8 - Covalent Bonding, Lewis Structures, and Hybridization









Lecture 9 - Electronegativity, Partial Charge, Polar Bonds and Polar Molecules









Lecture 10 - Hybridization, Double Bonds and Triple Bonds, Paramagnetism and Diamagetism









Lecture 11 - The Shapes of Molecules, Electron Domain Theory, and Secondary Bonding









Lecture 12 - Metallic Bonding, Band Theory of Solids, Band Gaps









Lecture 13 - Intrinsic and Extrinsic Semiconductors, Doping, Compound Semiconductors, and Molten Semiconductors









Lecture 14 - Introduction to the Solid State, the 7 Crystal Systems, and the 14 Bravais Lattices









Lecture 15 - Properties of Cubic Crystals









Lecture 16 - Characterization of Atomic Structure: The Generation of X-rays and Moseley's Law











Lecture 17 - X-ray Spectra and Bragg's Law









Lecture 18 - X-ray Diffraction of Crystals









Lecture 19 - Defects in Crystals: Point Defects, Line Defects, Interfacial Defects, and Voids









Lecture 20 - Amorphous Solids, Glass Formation, and Inorganic Glasses









Lecture 21 - Engineered Glasses: Network Formers, Network Modifiers, and Intermediates









Lecture 22 - Chemical Kinetics: The Rate Equation, Order of Reaction, Rate Laws









Lecture 23 - Diffusion: Fick's First Law and Steady-state Diffusion









Lecture 24 - Fick's Second Law (FSL) and Transient-state Diffusion









Lecture 25 - Solutions: Solute, Solvent, Solution, Solubility Rules, and Solubility Product









Lecture 26 - Acids and Bases: Arrhenius, Bronsted-Lowry, and Lewis Definitions, Acid Strength and pH









Lecture 27 - Organic Chemistry: Basic Concepts









Lecture 28 - Organic Glasses (Polymers): Synthesis by Addition Polymerization and by Condensation Polymerization









Lecture 29 - Structure-property Relationships in Polymers and Crystalline Polymers









Lecture 30 - Biochemistry: The Amino Acids, Peptides, and Proteins









Lecture 31 - Phase Diagrams









Lecture 32 - Two-component Phase Diagrams: Limited Solid Solubility









Lecture 33 - Wrap-up




Source: http://academicearth.org/courses/introduction-to-solid-state-chemistry