Survey of Physical Chemistry (CHM 3410) - 2012

Survey of Physical Chemistry (CHM 3410) - 2012

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Spring 2012. A survey of physical chemistry topics, such as thermodynamics, kinetics, quantum chemistry and spectroscopy, including life science applications.

Ben McFarland


    • May 24, 2012 LATEST EPISODE
    • infrequent NEW EPISODES
    • 35m AVG DURATION
    • 88 EPISODES


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    Latest episodes from Survey of Physical Chemistry (CHM 3410) - 2012

    Chapter 11d: How Computer Programs Model Protein Structure with Surprisingly Simple Approximations

    Play Episode Listen Later May 24, 2012 23:01


    Chapter 11d: How Computer Programs Model Protein Structure with Surprisingly Simple Approximations

    Play Episode Listen Later May 24, 2012 22:59


    Chapter 11b: Calculating the Energy Between Dipoles and Among Induced Dipoles Leads to an r^-6 term For Attraction and r^-12 fo

    Play Episode Listen Later May 22, 2012 49:55


    Chapter 11b: Calculating the Energy Between Dipoles and Among Induced Dipoles Leads to an r^-6 term For Attraction and r^-12 fo

    Play Episode Listen Later May 22, 2012 49:50


    Chapter 11c: Control of Conformation and the Entropy of a Random Coil

    Play Episode Listen Later May 22, 2012 17:40


    Chapter 11c: Control of Conformation and the Entropy of a Random Coil

    Play Episode Listen Later May 22, 2012 17:39


    Chapter 11a: Forces Between Charges and Within Dipoles

    Play Episode Listen Later May 21, 2012 31:31


    Chapter 11a: Forces Between Charges and Within Dipoles

    Play Episode Listen Later May 21, 2012 31:27


    How Did Complex Life Form? (Part 2): Calcium Inside and Out, and Why Not Beryllium?

    Play Episode Listen Later May 21, 2012 29:16


    How Did Complex Life Form? (Part 2): Calcium Inside and Out, and Why Not Beryllium?

    Play Episode Listen Later May 21, 2012 29:13


    How Did Complex Life Form? (Part 1): Specialization and Kinetics

    Play Episode Listen Later May 17, 2012 40:24


    How Did Complex Life Form? (Part 1): Specialization and Kinetics

    Play Episode Listen Later May 17, 2012 40:20


    Chapter 7d: Kinetics of Protein Unfolding and Two Theories about Kinetics (Collision and Transition State)

    Play Episode Listen Later May 17, 2012 38:03


    Chapter 7d: Kinetics of Protein Unfolding and Two Theories about Kinetics (Collision and Transition State)

    Play Episode Listen Later May 17, 2012 37:59


    Oxygen Changes Everything (Part 2): The Oxidation Wheel, and Data to Prove It

    Play Episode Listen Later May 15, 2012 48:29


    Chapter 7c: Making Complicated Kinetic Mechanisms a Little Less Complicated: 4 Simplifications from Consecutive Reactions to Pr

    Play Episode Listen Later May 15, 2012 54:26


    Chapter 7c: Making Complicated Kinetic Mechanisms a Little Less Complicated: 4 Simplifications from Consecutive Reactions to Pr

    Play Episode Listen Later May 15, 2012 54:20


    Chapter 7b: Calculating the Integrated Rate Law for Approaching Equilibrium

    Play Episode Listen Later May 15, 2012 18:54


    Chapter 7b: Calculating the Integrated Rate Law for Approaching Equilibrium

    Play Episode Listen Later May 15, 2012 22:58


    Oxygen Changes Everything (Part 2): The Oxidation Wheel, and Data to Prove It

    Play Episode Listen Later May 15, 2012 48:34


    Chapter 7a: Adding Two Rate Laws to Make an Equilibrium

    Play Episode Listen Later May 15, 2012 8:12


    Chapter 7a: Adding Two Rate Laws to Make an Equilibrium

    Play Episode Listen Later May 15, 2012 8:13


    Chapter 6c: The Effect of Temperature on Reaction Rates (Including the Mystery of the Pre-Exponential Factor)

    Play Episode Listen Later May 15, 2012 19:33


    Chapter 6c: The Effect of Temperature on Reaction Rates (Including the Mystery of the Pre-Exponential Factor)

    Play Episode Listen Later May 15, 2012 19:31


    Oxygen Changes Everything (Part 1): How a Chunk of FeS + Membrane = Energy and Electrons

    Play Episode Listen Later May 9, 2012 16:07


    Chapter 6b: Using Graphs to Discriminate Between First- and Second-Order Kinetics: The Initial Rates Method

    Play Episode Listen Later May 9, 2012 57:09


    Chapter 6b: Using Graphs to Discriminate Between First- and Second-Order Kinetics: The Initial Rates Method

    Play Episode Listen Later May 9, 2012 57:03


    Oxygen Changes Everything (Part 1): How a Chunk of FeS + Membrane = Energy and Electrons

    Play Episode Listen Later May 9, 2012 16:05


    Chapter 6a: Measuring and Initiating Reactions to Study Their Kinetics and Determine Their Rate Laws

    Play Episode Listen Later May 4, 2012 51:24


    Chapter 6a: Measuring and Initiating Reactions to Study Their Kinetics and Determine Their Rate Laws

    Play Episode Listen Later May 4, 2012 51:19


    How Did Life Begin? (Part 2): Multiple Metals Mediate Methanogen Metabolism (and the Microbial Equivalent of the Dinosaur Extin

    Play Episode Listen Later May 4, 2012 22:39


    How Did Life Begin? (Part 2): Multiple Metals Mediate Methanogen Metabolism (and the Microbial Equivalent of the Dinosaur Extin

    Play Episode Listen Later May 4, 2012 22:36


    How Did Life Form? (Part 1): Membranes from Soap and the Rejected Elements

    Play Episode Listen Later May 4, 2012 46:21


    How Did Life Form? (Part 1): Membranes from Soap and the Rejected Elements

    Play Episode Listen Later May 4, 2012 46:16


    Chapter 5c: Combining Half-Reactions with Different Numbers of Electrons and Determining Entropy of Reaction with Electrodes

    Play Episode Listen Later May 4, 2012 22:05


    Chapter 5c: Combining Half-Reactions with Different Numbers of Electrons and Determining Entropy of Reaction with Electrodes

    Play Episode Listen Later May 4, 2012 22:03


    Chapter 5b: Looking Up Tables to Find Out Which Way an Electrochemical Cell Will Go

    Play Episode Listen Later May 1, 2012 29:15


    Chapter 5a: Redox Reactions Can Be Split into 2 Half-Reactions

    Play Episode Listen Later May 1, 2012 41:20


    Chapter 5b: Looking Up Tables to Find Out Which Way an Electrochemical Cell Will Go

    Play Episode Listen Later May 1, 2012 29:12


    Chapter 5a: Redox Reactions Can Be Split into 2 Half-Reactions

    Play Episode Listen Later May 1, 2012 41:16


    How Did the Land, Sea, and Sky Form? (Part 2): Three Eras for the Composition of the Ocean

    Play Episode Listen Later Apr 26, 2012 53:23


    How Did the Land, Sea, and Sky Form? (Part 2): Three Eras for the Composition of the Ocean

    Play Episode Listen Later Apr 26, 2012 53:17


    The Physical Chemistry of Surface Plasmon Resonance and Use of BIAcore Instruments to Measure Protein-Protein Binding

    Play Episode Listen Later Apr 24, 2012 80:58


    How Did the Land, Sea, and Sky Form? (Part 1): The Earth is an Unusual Blend of Stability and Mixing in Three Chemical Phases

    Play Episode Listen Later Apr 24, 2012 28:24


    Chapter 4e: Reactions That Can Drive Other Reactions and Why Physical Chemists Don’t Care About How Many Steps are in Glycoly

    Play Episode Listen Later Apr 24, 2012 48:38


    The Physical Chemistry of Surface Plasmon Resonance and Use of BIAcore Instruments to Measure Protein-Protein Binding

    Play Episode Listen Later Apr 24, 2012 80:49


    How Did the Land, Sea, and Sky Form? (Part 1): The Earth is an Unusual Blend of Stability and Mixing in Three Chemical Phases

    Play Episode Listen Later Apr 24, 2012 28:21


    Chapter 4e: Reactions That Can Drive Other Reactions and Why Physical Chemists Don’t Care About How Many Steps are in Glycoly

    Play Episode Listen Later Apr 24, 2012 48:33


    Chapter 4d: Thermodynamics and Energy Levels, Why Hemoglobin’s Binding Curve is Sigmoidal, and Free Energies of Formation

    Play Episode Listen Later Apr 18, 2012 27:02


    Chapter 4d: Thermodynamics and Energy Levels, Why Hemoglobin’s Binding Curve is Sigmoidal, and Free Energies of Formation

    Play Episode Listen Later Apr 18, 2012 27:00


    Chapter 4c: Equilibrium Constant (K) and Calculating With All These

    Play Episode Listen Later Apr 18, 2012 17:18


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