chemistry • chemistry
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Chemistry 119
Dernières notes et résumés chemistry • chemistry
Lecture 12: The Shapes of Molecules: VSEPR Theory 
1.	The Shapes of Molecules: VSEPR Theory 
1.	Molecules without Lone Pairs 
2.	Molecules with Lone Pairs
- Examen
- • 7 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 7 pages
Lecture 12: The Shapes of Molecules: VSEPR Theory 
1.	The Shapes of Molecules: VSEPR Theory 
1.	Molecules without Lone Pairs 
2.	Molecules with Lone Pairs
Lecture 9: Periodic Table; Ionic and Covalent Bonds 
1.	Periodic Table (continued) 
1.	Electronegativity 
2.	Atomic and Ionic Radii and Isoelectronic Atoms 
2.	Bonding 
1.	Ionic Bonds 
2.	Covalent Bonding 
3.	Polar Covalent Bonds
- Examen
- • 7 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 7 pages
Lecture 9: Periodic Table; Ionic and Covalent Bonds 
1.	Periodic Table (continued) 
1.	Electronegativity 
2.	Atomic and Ionic Radii and Isoelectronic Atoms 
2.	Bonding 
1.	Ionic Bonds 
2.	Covalent Bonding 
3.	Polar Covalent Bonds
Lecture 7: Multi-electron Atoms 
1.	Wavefunctions and Binding Energies for Multi-electron Atoms 
2.	Electron Configurations
- Examen
- • 6 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 6 pages
Lecture 7: Multi-electron Atoms 
1.	Wavefunctions and Binding Energies for Multi-electron Atoms 
2.	Electron Configurations
Lecture 8: The Periodic Table and Periodic Trends 
1.	Ionization Energy and Photoelectron Spectroscopy 
2.	Electron Affinity
- Examen
- • 4 pages's •
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Chemistry•Chemistry
Aperçu 1 sur 4 pages
Lecture 8: The Periodic Table and Periodic Trends 
1.	Ionization Energy and Photoelectron Spectroscopy 
2.	Electron Affinity
Lecture 10: Introduction to Lewis Structures 
1.	Lewis Structures 
2.	Formal Charge 
3.	Resonance Structures
- Examen
- • 5 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 5 pages
Lecture 10: Introduction to Lewis Structures 
1.	Lewis Structures 
2.	Formal Charge 
3.	Resonance Structures
Lecture 4: Wave-Particle Duality of Matter; Schrödinger Equation 
1.	Light as a Particle (continued) 
2.	Matter as a Wave 
3.	The Schrödinger Equation
- Examen
- • 6 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 6 pages
Lecture 4: Wave-Particle Duality of Matter; Schrödinger Equation 
1.	Light as a Particle (continued) 
2.	Matter as a Wave 
3.	The Schrödinger Equation
Lecture 2: Atomic Structure 
1.	Discovery of the Electron and the Nucleus 
2.	The Need for Quantum Mechanics
- Examen
- • 6 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 6 pages
Lecture 2: Atomic Structure 
1.	Discovery of the Electron and the Nucleus 
2.	The Need for Quantum Mechanics
Lecture 3: Wave-Particle Duality of Light 
1.	Light as a Wave, Characteristics of Waves 
2.	Light as a Particle, The Photoelectric Effect
- Examen
- • 6 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 6 pages
Lecture 3: Wave-Particle Duality of Light 
1.	Light as a Wave, Characteristics of Waves 
2.	Light as a Particle, The Photoelectric Effect
Lecture 6: Hydrogen Atom Wave functions (Orbitals) 
1.	Wavefunctions (Orbitals) for the Hydrogen Atom 
2.	Shape and Size of S and P Orbitals 
3.	Electron Spin and the Pauli Exclusion Principle
- Examen
- • 7 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 7 pages
Lecture 6: Hydrogen Atom Wave functions (Orbitals) 
1.	Wavefunctions (Orbitals) for the Hydrogen Atom 
2.	Shape and Size of S and P Orbitals 
3.	Electron Spin and the Pauli Exclusion Principle
Lecture 25: Oxidation-Reduction and Electrochemical Cells 
1.	Introduction to Oxidation-Reduction (Redox) Reactions 
2.	Balancing Redox Reactions 
3.	Electrochemical Cells
- Notes de cours
- • 9 pages's •
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Chemistry•Chemistry
Aperçu 2 sur 9 pages
Lecture 25: Oxidation-Reduction and Electrochemical Cells 
1.	Introduction to Oxidation-Reduction (Redox) Reactions 
2.	Balancing Redox Reactions 
3.	Electrochemical Cells