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  1. Thermodynamics is the study of how heat moves around in ‘macroscopic’ objects.

  2. Before we embark on deriving the laws of thermodynamics, it is necessary to define the main vocabulary we will be using throughout these lectures. Definition 2.1.1 — ‘Thermodynamical system’ (or ‘system’).

  3. 1 Introduction. Thermodynamics is the study of heat and temperature. One thing that makes thermodynamics hard (and generally unpopular) is all the damn variables. Everything is related and it's often tough to keep straight what is an independent and what is a dependent variable.

  4. Thermodynamics: the study of energy, energy transformations and its relation to matter. The anal-ysis of thermal systems is achieved through the application of the governing conservation equations, namely Conservation of Mass, Conservation of Energy (1st law of thermodynam-ics), the 2nd law of thermodynamics and the property relations.

  5. Thermodynamics: the study of energy, energy conversion and its relation to matter. The analysis of thermal systems is achieved through the application of the governing conservation equa-tions, namely Conservation of Mass, Conservation of Energy (1st law of thermodynamics), the 2nd law of thermodynamics and the property relations.

  6. Thermodynamics can be defined as the study of energy, energy transformations and its relation to matter. The analysis of thermal systems is achieved through the

  7. Thermodynamics is the study of the equilibrium states of a system subject to a speci ed process. A system is a speci c sample of matter. The equilibrium state of a system can be completely speci ed by a small number of properties such as pressure, temperature, and volume.