Fundamentals of Macroscopic and Microscopic Thermodynamics (Coursera)

Fundamentals of Macroscopic and Microscopic Thermodynamics (Coursera)

Course 1 first explores the basics of both macroscopic and microscopic thermodynamics from a postulatory point of view. In this view, the meaning of temperature, thermodynamic pressure and chemical potential are especially clear and easy to understand. In addition, the development of the Fundamental Relation and its various transformations leads to a clear path to property relations and to the concept of ensembles needed to understand the relationship between atomic and molecular structural properties and macroscopic properties.

Class Deals by MOOC List - Click here and see Coursera's Active Discounts, Deals, and Promo Codes.

We then explore the relationship between atomic and molecular structure and macroscopic properties by taking a statistical point of view. Using a postulatory approach, the method for doing this is made clear. This leads to the development of the partition function which describes the distribution of molecular quantum states as a function of the independent, macroscopic thermodynamic properties.
Course 1 of 5 in the Statistical Thermodynamics Specialization.

Syllabus

WEEK 1
Program Introduction
In this module we explore the basics of macroscopic thermodynamics from a postulatory point of view. In this view, the meaning of temperature, thermodynamic pressure and chemical potential are especially clear and easy to understand. In addition, the development of the Fundamental Relation and its various transformations leads to a clear path to property relations.

WEEK 2
Macroscopic Thermodynamics
We then explore the relationship between atomic and molecu-lar structure and macroscopic properties by taking a statistical point of view. Using apostulatory approach, the method for doing this is made clear. This leads to the devel-opment of the partition function which describes the distribution of molecular quantumstates as a function of the independent, macroscopic thermodynamic properties.

WEEK 3
Microscopic Thermodynamics
Here we explore microscopic thermodynamics from a postulatory point of view. We introduce the concept of ensembles as needed to understand the relationship between atomic and molecular structural properties and macroscopic properties. This leads to the partition function which relsates the distribution of molecular quantum states as a function of the independent, macroscopic thermodynamic properties.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

The Science of Gastronomy (Coursera) Coursera
The Hong Kong University of Science and Technology - HKUST

The Science of Gastronomy (Coursera)

This course introduces a number of basic scientific principles underpinning the methodology of cooking, food preparation and the enjoyment of food. All topics covered have a strong basis in biology, chemistry, and physics application. Among others, they include the consumption of cooked food, the physiological and evolutionary implication of the senses, geographic and cultural influences on food, and the rationale behind food preparation. We will also discuss issues such as coupling of senses to improve sense stimulation; altering flavor by chemical means; and modification of the coloration to improve the appearance of dishes. Following the video demonstrations of the scientific principles of cooking, you will learn to recognize the key ingredients and their combinations for preparing good healthy food.

Sep 1st 2026
5-12 Weeks
Nanotechnology and Nanosensors, Part 1 (Coursera) Coursera
Technion - Israel Institute of Technology

Nanotechnology and Nanosensors, Part 1 (Coursera)

Nanotechnology and nanosensors are broad, interdisciplinary areas that encompass (bio)chemistry, physics, biology, materials science, electrical engineering and more. The present course will provide a survey on some of the fundamental principles behind nanotechnology and nanomaterials and their vital role in novel sensing properties and applications. The course will discuss interesting interdisciplinary scientific and engineering knowledge at the nanoscale to understand fundamental physical differences at the nanosensors.

Aug 10th 2026
5-12 Weeks
Introduction to Forensic Science (Coursera) Coursera
Nanyang Technological University

Introduction to Forensic Science (Coursera)

We have all seen forensic scientists in TV shows, but how do they really work? What is the science behind their work? The course aims to explain the scientific principles and techniques behind the work of forensic scientists and will be illustrated with numerous case studies from Singapore and around the world.

Aug 24th 2026
5-12 Weeks
Introduction to Molecular Spectroscopy (Coursera) Coursera
University of Manchester

Introduction to Molecular Spectroscopy (Coursera)

The course introduces the three key spectroscopic methods used by chemists and biochemists to analyse the molecular and electronic structure of atoms and molecules. These are UV/Visible , Infra-red (IR) and Nuclear Magnetic Resonance (NMR) spectroscopies. The content is presented using short focussed and interactive screencast presentations accompanied by formative quizzes to probe understanding of the key concepts presented. Numerous exercises are provided to facilitate mastery of each topic. A unique virtual spectroscopic laboratory is made available to enable students to measure and analyse spectra online. Assessment is via summative quizzes completed during the course period.

Aug 10th 2026
4 Weeks
Energy Harvesting (Coursera) Coursera
Sungkyunkwan University - SKKU

Energy Harvesting (Coursera)

Joining this course presents opportunity to learn about energy harvesting that refers to a technology that converts the energy discarded in our daily lives into useful electrical energy that we can use. As we all know, most of low-power electronics, such as remote sensors, are driven by batteries. However, even when it comes to long-lasting batteries, they face an issue that is a regular replacement. It can turn out to be costly as there are hundreds of sensors in remote locations.

Aug 10th 2026
4 Weeks
Más que química (Coursera) Coursera
Universidad Nacional de Colombia

Más que química (Coursera)

El objeto de la química, como disciplina científica, se enfoca en el estudio de la materia y de los cambios que ésta experimenta. En tanto disciplina científica, a la que se le atribuye la reputación de ser una ciencia complicada y aburrida. Esta reputación, bastante inmerecida, obedece al poco conocimiento que se tiene sobre ella y sobre sus enormes posibilidades de aplicación en el mundo científico, en diferentes campos de la industria y la producción, así como en la vida cotidiana.

Aug 10th 2026
5-12 Weeks
Astro 101: Black Holes (Coursera) Coursera
University of Alberta

Astro 101: Black Holes (Coursera)

What is a black hole? Do they really exist? How do they form? How are they related to stars? What would happen if you fell into one? How do you see a black hole if they emit no light? What’s the difference between a black hole and a really dark star? Could a particle accelerator create a black hole? Can a black hole also be a worm hole or a time machine? In Astro 101: Black Holes, you will explore the concepts behind black holes. Using the theme of black holes, you will learn the basic ideas of astronomy, relativity, and quantum physics.

Aug 17th 2026
5-12 Weeks
Beer Quality: Color & Clarity (Coursera) Coursera
University of California, Davis

Beer Quality: Color & Clarity (Coursera)

Welcome to Beer Quality: Color and Clarity led by distinguished professor Charles Bamforth, Ph.D. In this course, you will learn about beer color and how it impacts a consumer's perception of beer. Also discussed are the scientific factors affecting beer color and clarity. The methods of measuring and altering beer color are presented, as are ways to troubleshoot problems with beer color.

Aug 10th 2026
4 Weeks
Statistical Thermodynamics: Molecules to Machines (Coursera) Coursera
Carnegie Mellon University

Statistical Thermodynamics: Molecules to Machines (Coursera)

Modern engineering research focuses on designing new materials and processes at the molecular level. Statistical thermodynamics provides the formalism for understanding how molecular interactions lead to the observed collective behavior at the macroscale. This course will develop a molecular-level understanding of key thermodynamic quantities like heat, work, free energy and entropy. These concepts will be applied in understanding several important engineering and biological applications.

Aug 9th 2026
5-12 Weeks
Introduction to High-Throughput Materials Development (Coursera) Coursera
Georgia Institute of Technology

Introduction to High-Throughput Materials Development (Coursera)

This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials. This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials. It is well recognized that the discovery of new materials is the key to solving many technological problems faced by industry and society. These problems include energy production and utilization, carbon capture, tissue engineering, and sustainable materials production, among many others. This course will introduce the learner to a remarkable new approach to materials discovery and characterization: high-throughput materials development (HTMD).

Aug 3rd 2026
5-12 Weeks