The [course_title] course mainly focuses on the basic Thermodynamics, equilibrium properties of macroscopic and microscopic systems, chemical equilibrium of reactions in gas and solution phase, and macromolecular interactions. You will know about Thermochemistry, Entropy (Boltzmann and Clausius), 1st law, 2nd law, 3rd law, Chemical Equilibrium, Equilibrium Constant, Maxwell Relations, and Free Energy. Other topics covered in the course are chemical potential, Boltzmann Distribution, Mixing Energy, Mean Fields, Osmotic Pressure and Phase Partitioning, Thermodynamics of DNA Hybridization and more.
This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer need to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.
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Course Credit: MIT
|Introduction to Thermo; 0th Law; Temperature; Work; Heat||00:15:00|
|State Functions, 1st Law, Paths||00:30:00|
|Joule and Joule-Thompson; Heat Capacity||00:30:00|
|Reversible and Irreversible Processes||00:30:00|
|2nd Law; Entropy (Boltzmann and Clausius)||00:30:00|
|ΔS for Reversible and Irreversible Processes||00:15:00|
|Equilibrium; Maxwell Relations; Free Energy||00:30:00|
|Chemical Potential; Phase Equilibrium||00:30:00|
|Chemical Equilibrium; Equilibrium Constant||00:15:00|
|Standard States; Gibbs-Duhem||00:30:00|
|ΔG0= -RTlnK; Example||00:30:00|
|Thermo and Boltzmann Distribution||00:30:00|
|Occupation of States||00:30:00|
|Phase Equilibria, Single Component||00:30:00|
|Phase Equilibria II; Clausius Clapeyron||00:35:00|
|Solvation; Colligative Properties||00:15:00|
|Osmotic Pressure and Phase Partitioning||00:15:00|
|Polymer 1 – Freely Jointed Chain||00:30:00|
|Polymer 2 – Chain Conformation||00:15:00|
|Polymer 3 – Rubber Elasticity||00:30:00|
|Electrolytes at Interfaces; Debye Length||00:30:00|
|Titration of Polyelectrolytes||00:30:00|
|Thermodynamics of DNA Hybridization||00:30:00|
|Submit Your Assignment||00:00:00|
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