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Lecture 6 (3 of 4) - Partition Function Example
Michael Groves
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174 видео с канала:
Michael Groves
Lecture 6 (3 of 4) - Partition Function Example
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Lecture 6 (1 of 4) - Macrostates and Microstates
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Lecture 6 (2 of 4) - Partition Functions
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Lecture 6 (4 of 4) - Partition Functions and Thermodynamics
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Lecture 15 (6 of 6) - Bond Order
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Lecture 6 (1 of 6) - The Schrödinger Equation
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Lecture 15 (5 of 6) - Molecular Orbitals
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Lecture 19 (1 of 2) - Electronic Transitions
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Lecture 17 (6 of 6) - sp3 Hybridisation Conclusion
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Lecture 18 (2 of 2) - NMR Spectra
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Lecture 17 (5 of 6) - sp3 Hybridisation (cont.)
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Lecture 18 (8 of 8) - Steady State Approximation (cont.)
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Lecture 0 (1 of 1) - Course Introduction
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Lecture 15 (5 of 6) - Molecular Orbitals
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Lecture 15 (6 of 6) - Bond Order
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Lecture 14 (5 of 5) - The Variational Principle Comparison
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Lecture 15 (3 of 6) - H2+ Variational Principle
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Lecture 14 (5 of 6) - sp3 Hybridised Orbitals Solved
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Lecture 15 (4 of 6) - H2+ Wavefunctions
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Lecture 12 (2 of 5) - Debye-Hückel Law
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Lecture 18 (1 of 2) - NMR Background
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Lecture 12 (5 of 5) - Salting Out Example
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Lecture 15 (2 of 6) - H2+ Setup
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Lecture 17 (4 of 6) - sp3 Hybridisation
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Lecture 14 (6 of 6) - sp3 Hybridised Orbitals Conclusion
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Lecture 18 (7 of 8) - Steady State Approximation
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Lecture 17 (3 of 6) - sp Conclusion and sp2 Hybridisation
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Lecture 17 (1 of 6) - VSEPR and Hybridisation Intro
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Lecture 17 (6 of 6) - Quantifying Tau and Concentrations
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Lecture 14 (4 of 5) - The Variational Principle Ex. Result
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Lecture 18 (3 of 8) - Multi-Step Int Rate Laws (cont.)
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Lecture 18 (6 of 8) - Preequilibrium Approximation (cont.)
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Lecture 15 (1 of 6) - Hermetian Operators
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Lecture 17 (2 of 6) - sp Hybridisation
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Lecture 14 (4 of 6) - sp3 Hybridised Orbitals Setup
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Lecture 14 (3 of 6) - sp Hybridised Orbital Normalisation
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Lecture 17 (4 of 6) - Equilibrium Shift Setup
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Lecture 18 (1 of 8) - Consecutive Chemical Reactions
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Lecture 14 (3 of 5) - The Variational Principle Example
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Lecture 18 (5 of 8) - Preequilibrium Approximation
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Lecture 17 (2 of 6) - The Approach to Equilibrium (cont.)
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Lecture 11 (5 of 5) - Le Chaterler and Pressure
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Lecture 15 (3 of 5) - 2nd Order Integrated Rate Law (cont.)
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Lecture 16 (1 of 2) - The Arrhenius Equation
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Lecture 17 (5 of 6) - Time Constant, Tau
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Lecture 12 (4 of 5) - Salting In Example
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Lecture 14 (1 of 6) - Molecular Orbitals
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Lecture 10 (4 of 4) - Osmosis
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Lecture 19 (1 of 2) - Rate Law Expressions with Catalysts
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Lecture 19 (2 of 2) - Michaelis-Menten Enzyme Rate Law
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Lecture 9 (5 of 5) - Dilute Solutions
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Lecture 14 (2 of 6) - sp Hybridised Orbital Orientation
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Lecture 1 (1 of 2) - Complex Numbers
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Lecture 18 (2 of 8) - Multi-Step Integrated Rate Laws
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Lecture 8 (5 of 7) - The Clapeyron Equation
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Lecture 17 (1 of 6) - The Approach to Equilibrium
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Lecture 13 (4 of 4) - Buffers
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Lecture 8 (4 of 7) - Building Phase Diagrams
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Lecture 8 (7 of 7) - The Clausius Clapeyron Equation
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Lecture 1 (2 of 2) - Euler's Formula
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Lecture 18 (4 of 8) - Intermediate Max and Rate Det Step
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Lecture 16 (2 of 2) - The Arrhenius Equation Examples
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Lecture 6 (4 of 4) - Calculating U from Partition Functions
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Lecture 11 (4 of 5) - Le Chatelier and Temperature
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Lecture 14 (2 of 5) - The Variational Principle
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Lecture 11 (1 of 5) - Chemical Potential and Equilibrium
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Lecture 11 (3 of 5) - Equilibrium Concentrations
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Lecture 12 (3 of 5) - Salting In and Salting Out
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Lecture 8 (3 of 7) - Phase Diagrams
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Lecture 14 (1 of 5) - The Secular Determinant
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Lecture 15 (5 of 5) - Half Life
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Lecture 17 (3 of 6) - Link Between K and Rate Constants
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Lecture 12 (1 of 5) - Ions in Solution
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Lecture 4 (2 of 6) - The Rutherford Atom
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Lecture 13 (3 of 4) - The pH of Real Acid Solutions
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Lecture 13 (1 of 4) - Acid Equilibrium Review
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Lecture 10 (2 of 4) - Fractional Distillation
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Lecture 15 (2 of 5) - 2nd Order Type 2 Integrated Rate Law
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Lecture 9 (4 of 5) - Real Solutions
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Lecture 15 (4 of 5) - Strategies To Determine Order
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Lecture 10 (3 of 4) - Freezing Point Depression
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Lecture 13 (2 of 4) - Real Acid Equilibrium
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Lecture 8 (1 of 7) - Free Energies
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Lecture 7 (1 of 4) - Entropy
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Lecture 5 (4 of 5) - Total Carnot Work
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Lecture 9 (1 of 6) - Simple Harmonic Oscillator Intro
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Lecture 10 (1 of 4) - Colligative Properties
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Lecture 9 (2 of 6) - Commutation of Ladder Operators
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Lecture 6 (1 of 4) - Microstates and Macrostates
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Lecture 12 (7 of 7) - d orbitals
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Lecture 9 (1 of 5) - Chemical Potential
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Lecture 5 (1 of 2) - Probability Definitions
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Lecture 11 (2 of 5) - The Equilibrium Constant
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Lecture 1 (2 of 2) - Concentrations
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Lecture 4 (6 of 6) - Kirchhoff's Law
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Lecture 11 (3 of 6) - Solving Phi
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Lecture 5 (1 of 5) - Adiabatic Behaviour
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Lecture 11 (4 of 6) - Solving Theta
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Lecture 5 (2 of 5) - Adiabatic Expansion Work
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Lecture 8 (2 of 7) - The Gibbs Free Energy
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Lecture 7 (4 of 4) - Absolute Entropies and Spontaneity
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Lecture 9 (3 of 6) - Use of Raising and Lowering Operators
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Lecture 5 (3 of 5) - Heat Engines
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Lecture 12 (3 of 7) - Spherical Volume Element
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Lecture 5 (5 of 5) - Heat Engine Efficiency
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Lecture 3 (3 of 3) - Heat Capacities Of Solids
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Lecture 13 (2 of 2) - Intrinsic Spin
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Lecture 7 (6 of 6) - Uncertainty And Commutation
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Lecture 15 (1 of 5) - Rate Law Expressions
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Lecture 6 (2 of 4) - Partition Functions
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Lecture 8 (4 of 6) - Finite Potential Solutions
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Lecture 9 (4 of 6) - Solving for Psi
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Lecture 4 (5 of 6) - Bohr Model Examples
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Lecture 11 (2 of 6) - Setting up the Schrodinger Equation
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Lecture 9 (5 of 6) - Solving for Ground State Energy
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Lecture 4 (4 of 6) - Hess' Law
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Lecture 4 (4 of 6) - The Bohr Atom
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Lecture 3 (4 of 4) - First Law of Thermodynamics Examples
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Lecture 8 (6 of 7) - The Clapeyron Equation Example
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Lecture 9 (2 of 5) - The Mixing of Gases
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Lecture 4 (5 of 6) - Hess' Law Applications
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Lecture 6 (3 of 6) - Particle in a Box Part 2
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Lecture 6 (5 of 6) - Normalization
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Lecture 6 (3 of 4) - Partition Functions Examples
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Lecture 8 (1 of 6) - Finite Potentials
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Lecture 7 (3 of 4) - Residual Entropies and the Third Law
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Lecture 11 (1 of 6) - Rotational Spectroscopy Intro
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Lecture 9 (3 of 5) - Raoult's Law
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Lecture 6 (1 of 6) - The Schrödinger Equation
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Lecture 5 (2 of 2) - Continuous Distribution Example
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Lecture 1 (1 of 2) - Course Introduction
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Lecture 7 (1 of 6) - Four Postulates of QM
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Lecture 12 (2 of 7) - Hydrogen Atom Solutions
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Lecture 4 (6 of 6) - de Broglie and Heisenberg
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Lecture 4 (1 of 6) - Enthalpy Introduction
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Lecture 6 (6 of 6) - Probability of Finding the Particle
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Lecture 8 (5 of 6) - Tunneling Intro
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Lecture 3 (3 of 4) - Heat
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Lecture 8 (6 of 6) - Tunneling Example
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Lecture 4 (3 of 6) - The Bohr Radius
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Lecture 2 (4 of 6) - Dalton's Law
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Lecture 11 (6 of 6) - Angular Momentum
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Lecture 9 (6 of 6) - Diatomic Molecules
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Lecture 7 (2 of 4) - Change in Entropy Examples
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Lecture 8 (3 of 6) - Finite Potential Boundary Conditions
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Lecture 12 (1 of 7) - The Hydrogen Atom
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Lecture 2 (6 of 6) - Gas Law Examples
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Lecture 4 (1 of 6) - Spectroscopy and the Hydrogen Atom
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Lecture 7 (5 of 6) - Expectation Values Part 2
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Lecture 2 (1 of 3) - Differential Equations Introduction
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Lecture 7 (3 of 6) - Commutation
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Lecture 12 (6 of 7) - p orbital properties
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Lecture 2 (2 of 3) - First Order DE Example
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Lecture 7 (2 of 6) - Eigenfunctions and Eigenvalues
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Lecture 3 (1 of 3) - Quantization
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Lecture 6 (4 of 6) - Butadiene Example
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Lecture 6 (2 of 6) - Particle in a Box Part 1
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Lecture 4 (3 of 6) - Heat Capacity at Constant Pressure
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Lecture 2 (1 of 6) - Properties of Gases Introduction
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Lecture 2 (3 of 6) - Ideal Gases (cont.)
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Lecture 3 (2 of 4) - Expansion Work
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Lecture 2 (5 of 6) - Real Gases
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Lecture 8 (2 of 6) - Defining the Three Regions
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Lecture 2 (3 of 3) - Second Order ODE
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Lecture 13 (1 of 2) - The Zeeman Effect
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Lecture 12 (5 of 7) - p orbitals
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Lecture 3 (2 of 3) - Photoelectric Effect Example
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Lecture 3 (1 of 4) - Internal Energy
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Lecture 2 (2 of 6) - The Ideal Gas Law
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Lecture 4 (2 of 6) - Difference Between H and U
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Lecture 11 (5 of 6) - Rigid Rotator Spectroscopy
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Lecture 7 (4 of 6) - Expectation Values
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Lecture 12 (4 of 7) - 1s Most Probable Radius
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Lecture 19 (2 of 2) - Photochemistry
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Канал: Michael Groves
Lecture 6 (3 of 4) - Partition Function Example
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Lecture 6 (1 of 4) - Macrostates and Microstates
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Lecture 6 (2 of 4) - Partition Functions
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Lecture 6 (4 of 4) - Partition Functions and Thermodynamics
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Lecture 15 (6 of 6) - Bond Order
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Lecture 6 (1 of 6) - The Schrödinger Equation
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Lecture 15 (5 of 6) - Molecular Orbitals
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Lecture 19 (1 of 2) - Electronic Transitions
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Lecture 17 (6 of 6) - sp3 Hybridisation Conclusion
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Lecture 18 (2 of 2) - NMR Spectra
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Lecture 17 (5 of 6) - sp3 Hybridisation (cont.)
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Lecture 18 (8 of 8) - Steady State Approximation (cont.)
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Lecture 0 (1 of 1) - Course Introduction
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Lecture 15 (5 of 6) - Molecular Orbitals
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Lecture 15 (6 of 6) - Bond Order
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Lecture 14 (5 of 5) - The Variational Principle Comparison
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Lecture 15 (3 of 6) - H2+ Variational Principle
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Lecture 14 (5 of 6) - sp3 Hybridised Orbitals Solved
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Lecture 15 (4 of 6) - H2+ Wavefunctions
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Lecture 12 (2 of 5) - Debye-Hückel Law
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Lecture 18 (1 of 2) - NMR Background
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Lecture 12 (5 of 5) - Salting Out Example
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Lecture 15 (2 of 6) - H2+ Setup
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Lecture 17 (4 of 6) - sp3 Hybridisation
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Lecture 14 (6 of 6) - sp3 Hybridised Orbitals Conclusion
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Lecture 18 (7 of 8) - Steady State Approximation
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Lecture 17 (3 of 6) - sp Conclusion and sp2 Hybridisation
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Lecture 17 (1 of 6) - VSEPR and Hybridisation Intro
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Lecture 17 (6 of 6) - Quantifying Tau and Concentrations
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Lecture 14 (4 of 5) - The Variational Principle Ex. Result
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Lecture 18 (3 of 8) - Multi-Step Int Rate Laws (cont.)
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Lecture 18 (6 of 8) - Preequilibrium Approximation (cont.)
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Lecture 15 (1 of 6) - Hermetian Operators
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Lecture 17 (2 of 6) - sp Hybridisation
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Lecture 14 (4 of 6) - sp3 Hybridised Orbitals Setup
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Lecture 14 (3 of 6) - sp Hybridised Orbital Normalisation
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Lecture 17 (4 of 6) - Equilibrium Shift Setup
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Lecture 18 (1 of 8) - Consecutive Chemical Reactions
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Lecture 14 (3 of 5) - The Variational Principle Example
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Lecture 18 (5 of 8) - Preequilibrium Approximation
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Lecture 17 (2 of 6) - The Approach to Equilibrium (cont.)
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Lecture 11 (5 of 5) - Le Chaterler and Pressure
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Lecture 15 (3 of 5) - 2nd Order Integrated Rate Law (cont.)
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Lecture 16 (1 of 2) - The Arrhenius Equation
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Lecture 17 (5 of 6) - Time Constant, Tau
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Lecture 12 (4 of 5) - Salting In Example
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Lecture 14 (1 of 6) - Molecular Orbitals
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Lecture 10 (4 of 4) - Osmosis
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Lecture 19 (1 of 2) - Rate Law Expressions with Catalysts
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Lecture 19 (2 of 2) - Michaelis-Menten Enzyme Rate Law
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Lecture 9 (5 of 5) - Dilute Solutions
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Lecture 14 (2 of 6) - sp Hybridised Orbital Orientation
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Lecture 1 (1 of 2) - Complex Numbers
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Lecture 18 (2 of 8) - Multi-Step Integrated Rate Laws
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Lecture 8 (5 of 7) - The Clapeyron Equation
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Lecture 17 (1 of 6) - The Approach to Equilibrium
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Lecture 13 (4 of 4) - Buffers
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Lecture 8 (4 of 7) - Building Phase Diagrams
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Lecture 8 (7 of 7) - The Clausius Clapeyron Equation
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Lecture 1 (2 of 2) - Euler's Formula
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Lecture 18 (4 of 8) - Intermediate Max and Rate Det Step
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Lecture 16 (2 of 2) - The Arrhenius Equation Examples
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Lecture 6 (4 of 4) - Calculating U from Partition Functions
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Lecture 11 (4 of 5) - Le Chatelier and Temperature
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Lecture 14 (2 of 5) - The Variational Principle
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Lecture 11 (1 of 5) - Chemical Potential and Equilibrium
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Lecture 11 (3 of 5) - Equilibrium Concentrations
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Lecture 12 (3 of 5) - Salting In and Salting Out
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Lecture 8 (3 of 7) - Phase Diagrams
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Lecture 14 (1 of 5) - The Secular Determinant
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Lecture 15 (5 of 5) - Half Life
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Lecture 17 (3 of 6) - Link Between K and Rate Constants
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Lecture 12 (1 of 5) - Ions in Solution
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Lecture 4 (2 of 6) - The Rutherford Atom
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Lecture 13 (3 of 4) - The pH of Real Acid Solutions
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Lecture 13 (1 of 4) - Acid Equilibrium Review
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Lecture 10 (2 of 4) - Fractional Distillation
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Lecture 15 (2 of 5) - 2nd Order Type 2 Integrated Rate Law
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Lecture 9 (4 of 5) - Real Solutions
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Lecture 15 (4 of 5) - Strategies To Determine Order
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Lecture 10 (3 of 4) - Freezing Point Depression
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Lecture 13 (2 of 4) - Real Acid Equilibrium
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Lecture 8 (1 of 7) - Free Energies
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Lecture 7 (1 of 4) - Entropy
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Lecture 5 (4 of 5) - Total Carnot Work
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Lecture 9 (1 of 6) - Simple Harmonic Oscillator Intro
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Lecture 10 (1 of 4) - Colligative Properties
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Lecture 9 (2 of 6) - Commutation of Ladder Operators
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Lecture 6 (1 of 4) - Microstates and Macrostates
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Lecture 12 (7 of 7) - d orbitals
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Lecture 9 (1 of 5) - Chemical Potential
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Lecture 5 (1 of 2) - Probability Definitions
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Lecture 11 (2 of 5) - The Equilibrium Constant
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Lecture 1 (2 of 2) - Concentrations
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Lecture 4 (6 of 6) - Kirchhoff's Law
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Lecture 11 (3 of 6) - Solving Phi
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Lecture 5 (1 of 5) - Adiabatic Behaviour
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Lecture 11 (4 of 6) - Solving Theta
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Lecture 5 (2 of 5) - Adiabatic Expansion Work
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Lecture 8 (2 of 7) - The Gibbs Free Energy
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Lecture 7 (4 of 4) - Absolute Entropies and Spontaneity
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Lecture 9 (3 of 6) - Use of Raising and Lowering Operators
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Lecture 5 (3 of 5) - Heat Engines
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Lecture 12 (3 of 7) - Spherical Volume Element
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Lecture 5 (5 of 5) - Heat Engine Efficiency
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Lecture 3 (3 of 3) - Heat Capacities Of Solids
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Lecture 13 (2 of 2) - Intrinsic Spin
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Lecture 7 (6 of 6) - Uncertainty And Commutation
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Lecture 15 (1 of 5) - Rate Law Expressions
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Lecture 6 (2 of 4) - Partition Functions
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Lecture 8 (4 of 6) - Finite Potential Solutions
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Lecture 9 (4 of 6) - Solving for Psi
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Lecture 4 (5 of 6) - Bohr Model Examples
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Lecture 11 (2 of 6) - Setting up the Schrodinger Equation
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Lecture 9 (5 of 6) - Solving for Ground State Energy
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Lecture 4 (4 of 6) - Hess' Law
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Lecture 4 (4 of 6) - The Bohr Atom
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Lecture 3 (4 of 4) - First Law of Thermodynamics Examples
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Lecture 8 (6 of 7) - The Clapeyron Equation Example
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Lecture 9 (2 of 5) - The Mixing of Gases
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Lecture 4 (5 of 6) - Hess' Law Applications
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Lecture 6 (3 of 6) - Particle in a Box Part 2
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Lecture 6 (5 of 6) - Normalization
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Lecture 6 (3 of 4) - Partition Functions Examples
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Lecture 8 (1 of 6) - Finite Potentials
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Lecture 7 (3 of 4) - Residual Entropies and the Third Law
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Lecture 11 (1 of 6) - Rotational Spectroscopy Intro
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Lecture 9 (3 of 5) - Raoult's Law
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Lecture 6 (1 of 6) - The Schrödinger Equation
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Lecture 5 (2 of 2) - Continuous Distribution Example
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Lecture 1 (1 of 2) - Course Introduction
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Lecture 7 (1 of 6) - Four Postulates of QM
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Lecture 12 (2 of 7) - Hydrogen Atom Solutions
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Lecture 4 (6 of 6) - de Broglie and Heisenberg
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Lecture 4 (1 of 6) - Enthalpy Introduction
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Lecture 6 (6 of 6) - Probability of Finding the Particle
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Lecture 8 (5 of 6) - Tunneling Intro
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Lecture 3 (3 of 4) - Heat
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Lecture 8 (6 of 6) - Tunneling Example
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Lecture 4 (3 of 6) - The Bohr Radius
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Lecture 2 (4 of 6) - Dalton's Law
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Lecture 11 (6 of 6) - Angular Momentum
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Lecture 9 (6 of 6) - Diatomic Molecules
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Lecture 7 (2 of 4) - Change in Entropy Examples
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Lecture 8 (3 of 6) - Finite Potential Boundary Conditions
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Lecture 12 (1 of 7) - The Hydrogen Atom
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Lecture 2 (6 of 6) - Gas Law Examples
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Lecture 4 (1 of 6) - Spectroscopy and the Hydrogen Atom
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Lecture 7 (5 of 6) - Expectation Values Part 2
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Lecture 2 (1 of 3) - Differential Equations Introduction
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Lecture 7 (3 of 6) - Commutation
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Lecture 12 (6 of 7) - p orbital properties
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Lecture 2 (2 of 3) - First Order DE Example
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Lecture 7 (2 of 6) - Eigenfunctions and Eigenvalues
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Lecture 3 (1 of 3) - Quantization
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Lecture 6 (4 of 6) - Butadiene Example
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Lecture 6 (2 of 6) - Particle in a Box Part 1
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Lecture 4 (3 of 6) - Heat Capacity at Constant Pressure
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Lecture 2 (1 of 6) - Properties of Gases Introduction
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Lecture 2 (3 of 6) - Ideal Gases (cont.)
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Lecture 3 (2 of 4) - Expansion Work
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Lecture 2 (5 of 6) - Real Gases
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Lecture 8 (2 of 6) - Defining the Three Regions
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Lecture 2 (3 of 3) - Second Order ODE
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Lecture 13 (1 of 2) - The Zeeman Effect
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Lecture 12 (5 of 7) - p orbitals
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Lecture 3 (2 of 3) - Photoelectric Effect Example
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Lecture 3 (1 of 4) - Internal Energy
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Lecture 2 (2 of 6) - The Ideal Gas Law
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Lecture 4 (2 of 6) - Difference Between H and U
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Lecture 11 (5 of 6) - Rigid Rotator Spectroscopy
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Lecture 7 (4 of 6) - Expectation Values
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Lecture 12 (4 of 7) - 1s Most Probable Radius
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Lecture 19 (2 of 2) - Photochemistry
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