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⏱ 2h 36m📚 26 lessons🎧 Audio version
Essential Thermodynamics: Concepts and System Analysis
Learn the core laws and mathematical tools of thermodynamics so you can accurately model energy efficiency and predict the behavior of real-world physical processes.
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About this course
Thermodynamics is the fundamental study of energy and its transformations, underpinning almost every physical process from power generation to chemical reactions. Mastering these principles is crucial for careers in mechanical engineering, physics, and material science.
By the end of this course, you will possess a robust understanding of the fundamental laws of thermodynamics and be able to apply them to analyze closed and open systems, calculate work and heat transfer, and evaluate the efficiency of energy conversion devices.
What you'll learn:
* Understand the foundational concepts of energy, temperature, pressure, and basic thermodynamic properties (P-V-T relationships).
* Apply the First Law of Thermodynamics (conservation of energy) to analyze both closed systems and steady-flow open systems (control volumes).
* Master the concepts of entropy and the Second Law of Thermodynamics to determine the direction and feasibility of processes and quantify irreversibility.
* Analyze the properties of pure substances using property tables, phase diagrams, and generalized compressibility charts.
* Calculate the efficiency and performance of common heat engines, refrigerators, and heat pumps using ideal cycles such as Carnot and Rankine.
* Practice solving complex problems involving energy balances, transient processes, and real-world system modeling.
This course begins with essential terminology and the definition of thermodynamic systems and state functions. We then systematically explore the First and Second Laws, building up the mathematical tools necessary for state analysis and property evaluation. The final sections focus on applying these laws to practical energy cycles.
This course is designed for absolute beginners, including students and professionals in engineering, physics, and related technical fields. No prior knowledge of thermodynamics or advanced calculus is required.
Start building your essential knowledge base in energy science today.
Course contents
What you'll get
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⚡Short & focused 2h 36m of practical content
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