- Level Foundation
- المدة 21 ساعات hours
- الطبع بواسطة University of Minnesota
-
Offered by
عن
This introductory physical chemistry course examines the connections between molecular properties and the behavior of macroscopic chemical systems.الوحدات
Introduction
1
Videos
- Video 1.0 - The Thermite Reaction
5
Readings
- Meet the Course Instructor
- Grading Policy
- Read Me First
- Syllabus
- Resources
Lesson 1
4
Videos
- Video 1.1 - That Thermite Reaction
- Video 1.2 - Benchmarking Thermoliteracy
- Video 1.3 - Quantization of Energy
- Video 1.4 - The Hydrogen Chloride Cannon
1
Readings
- Module One
Lesson 2
3
Videos
- Video 1.5 - Atomic Energy Levels
- Video 1.6 - Diatomic Molecular Energy Levels
- Video 1.7 - Polyatomic Molecular Energy Levels
Homework Assignment Module 1
1
Assignment
- Module 1 Homework
1
Videos
- Video 1.8 - Review of Module 1
Lesson 1
2
Videos
- Video 2.1 - Ideal Gas Equation of State
- Video 2.2 - Non-ideal Gas Equations of State
1
Readings
- Module 2
Lesson 2
3
Videos
- Video 2.3 - Gas-Liquid PV Diagrams
- Video 2.4 - Law of Corresponding States
- Video 2.5 - Virial Equation of State
Lesson 3
2
Videos
- Video 2.6 - Molecular Interactions
- Video 2.7 - Other Intermolecular Potentials
Homework Assignment for Module 2
1
Assignment
- Module 2 homework
1
Videos
- Video 2.8 - Review of Module 2
Lesson 1
4
Videos
- Video 3.1 - Boltzmann Probability
- Video 3.2 - Boltzmann Population
- Video 3.3 - Ideal Gas Internal Energy
- Video 3.4 - Ideal Gas Equation of State Redux
1
Readings
- Module 3
Lesson 2
3
Videos
- Video 3.5 - van der Waals Equation of State Redux
- Video 3.6 - The Ensemble Partition Function
- Video 3.7 - The Molecular Partition Function
Homework Assignment for Module 3
1
Assignment
- Module 3 homework
1
Videos
- Video 3.8 - Review of Module 3
Module 4
3
Videos
- Video 4.1 - Ideal Monatomic Gas: qtrans
- Video 4.2 - Ideal Monatomic Gas: Q
- Video 4.3 - Ideal Monatomic Gas: Properties
1
Readings
- Module 4
Lesson 2
3
Videos
- Video 4.4 - Ideal Diatomic Gas: Part 1
- Video 4.5 - Ideal Diatomic Gas: Part 2
- Video 4.6 - Ideal Diatomic Gas: Q
Lesson 3
2
Videos
- Video 4.7 - Ideal Polyatomic Gases: Part 1
- Video 4.8 - Ideal Polyatomic Gases: Part 2
Homework Assignment for Module 4
1
Assignment
- Module 4 homework
1
Videos
- Video 4.9 - Review of Module 4
Lesson 1
3
Videos
- Video 5.1 - First Law of Thermodynamics
- Video 5.2 - Paths of PV Work
- Video 5.3 - Differentials and State Functions
1
Readings
- Module 5
Lesson 2
4
Videos
- Video 5.4 - Characteristic Ideal Gas Expansion Paths
- Video 5.5 - Adiabatic Processes
- Video 5.6 - Microscopic Origin of Pressure
- Video 5.7 - Enthalpy
Lesson 3
3
Videos
- Video 5.8 - Heat Capacities
- Video 5.9 - Thermochemistry
- Video 5.10 - Standard Enthalpy
Homework Assignment for Module 5
1
Assignment
- Module 5 Homework
1
Videos
- Video 5.11 - Review of Module 5
Module 6
3
Videos
- Video 6.1 - Entropy
- Video 6.2 - Entropy as a State Function
- Video 6.3 - Spontaneity and the Second Law
1
Readings
- Module 6
Lesson 2
2
Videos
- Video 6.4 - Statistical Entropy
- Video 6.5 - Computing Entropy
Lesson 3
3
Videos
- Video 6.6 - Entropy and the Partition Function
- Video 6.7 - Beta and Boltzmann’s Constant
- Video 6.8 - The Carnot Cycle
Homework Assignment for Module 6
1
Assignment
- Module 6 Homework
1
Videos
- Video 6.9 - Review of Module 6
Lesson 1
3
Videos
- Video 7.1 - Entropy and Other Thermodynamic Functions
- Video 7.2 - Third Law of Thermodynamics
- Video 7.3 - Standard Entropy
1
Readings
- Module 7
Lesson 2
3
Videos
- Video 7.4 - Entropy from the Partition Function
- Video 7.5 - Third Law Entropies
- Video 7.6 - Additivity of Entropies
Homework Assignment for Module 7
1
Assignment
- Module 7 Homework
1
Videos
- Video 7.7 - Review of Module 7
Module 8
2
Videos
- Video 8.1 - Helmholtz Free Energy
- Video 8.2 - Gibbs Free Energy
1
Readings
- Module 8
Lesson 2
2
Videos
- Video 8.3 - Maxwell Relations from A
- Video 8.4 - Maxwell Relations from G
Lesson 3
3
Videos
- Video 8.5 - Rubber Band Thermodynamics
- Video 8.6 - Natural Independent Variables
- Video 8.7 - P and T Dependence of G
Homework Assignment for Module 8
1
Assignment
- Module 8 Homework
2
Videos
- Video 8.8 - Review of Module 8
- Video 8.9 - Credits
Final
1
Assignment
- Final Exam
Auto Summary
Discover the fundamentals of physical chemistry with "Statistical Molecular Thermodynamics." This foundational course by Coursera delves into the link between molecular properties and macroscopic chemical behavior. Perfect for science and engineering enthusiasts, it offers 1260 minutes of engaging content. Available through Starter and Professional subscriptions, it’s ideal for those seeking a thorough introduction to molecular thermodynamics.

Dr. Christopher J. Cramer