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Principles of Chemical Science 5.112 MIT

Online Free Online Course by  World Mentoring Academy
Online / Free Online Course

Details

Introduction to chemistry for students with an unusually strong background in chemistry. Knowledge of calculus equivalent to 18.01 is recommended. Emphasis on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis. Applications of basic principles to problems in metal coordination chemistry, organic chemistry, and biological chemistry.

Language: English

Professors: Joshua Coleman, Michael Williams

Units: 35

Lesson content
  • Lec 1 Atomic Theory of Matter  
  • Lec 2 Discovery of Nucleus  
  • Lec 3 Wave-Particle Duality of Radiation and Matter  
  • Lec 4 Particle-Like Nature of Light  
  • Lec 5 Matter as a Wave  
  • Lec 6 Schrodinger Equation for H Atom  
  • Lec 7 Hydrogen Atom Wave functions  
  • Lec 8 P Orbitals  
  • Lec 9 Electronic Structure of Multi-electron Atoms  
  • Lec 10 Periodic Trends in Elemental Properties  
  • Lec 11 Why Wavefunctions are Important?  
  • Lec 12 Ionic Bonds - Classical Model and Mechanism  
  • Lec 13 Kinetic Theory - Behavior of Gases  
  • Lec 14 Distribution Molecular Energies  
  • Lec 15 Internal Degrees of Freedom  
  • Lec 16 Intermolecular Interactions  
  • Lec 17 Polarizability  
  • Lec 18 Thermodynamics and Spontaneous Change  
  • Lec 19 Molecular Description of Acids and Bases  
  • Lec 20 Lewis and Bronsted Acid-Base Concepts  
  • Lec 21 Titration Curves and pH Indicators  
  • Lec 22 Electrons in Chemistry: Redox Processes  
  • Lec 23 Cell Potentials and Free Energy  
  • Lec 24 Theory of Molecular Shapes  
  • Lec 25 Valence Bond Theory  
  • Lec 26 Molecular Orbital Theory  
  • Lec 27 Molecular Orbital Theory for Diatomic Molecules  
  • Lec 28 Molecular Orbital Theory for Polyatomic Molecules  
  • Lec 29 Crystal Field Theory  
  • Lec 30 Crystal Field Theory  
  • Lec 31 Color and Magnetism of Coordination Complexes  
  • Lec 32 Coordination Complexes and Ligands  
  • Lec 33 Ligand Substitution Reactions: Kinetics  
  • Lec 34 Bonding in Metals and Semiconductors  
  • Lec 36 Nuclear Chemistry and the Cardiolite(R) Story  
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