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Thermodynamics. Thermodynamics is the study of the patterns of energy change. Thermo means energy Thermo means energy Dynamics means Patterns of change.

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Presentation on theme: "Thermodynamics. Thermodynamics is the study of the patterns of energy change. Thermo means energy Thermo means energy Dynamics means Patterns of change."— Presentation transcript:

1 Thermodynamics

2 Thermodynamics is the study of the patterns of energy change. Thermo means energy Thermo means energy Dynamics means Patterns of change Dynamics means Patterns of change

3 Thermodynamics deals with: a) energy a) energy b) The stability of molecules and direction of change. b) The stability of molecules and direction of change.

4 Example Imagine a brick resting on window ledge 3 meters high. As the brick rests on the ledge it has potential energy. If you knock the brick out of the ledge, the potential energy is converted to kinetic energy( the brick accelerated towards the ground). When the brick hits the ground the kinetic energy converted to light energy (sparks), Sound energy and chemical energy (the brick breaks).

5 To study thermodynamics we will introduce two new terms which are 1-The system 2- The surroundings

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7 Two types of exchange can occur between the system and surroundings. 1- Energy exchange (heat, radiation….etc). 2-Matter exchange (movement of molecules across the boundry between the system and the surroundings).

8 Based on the types of exchange which take place, three types of systems are identified. 1- Isolated systems: no exchange of matter or energy. 2-Open systems: Exchange of both matter and energy. 3- Closed system: no exchange of matter but exchange of energy.

9 The total energy of a system before the process has taken place, called the initial state. While the total energy of a system after the process has taken place, called final state. The equilibrium state is that condition in which no further change is occuring within the system or between the system and its surroundings.

10 Thermodynamic process are either: Thermodynamic process are either: -Reversible: happens slow enough to be reversed -irreversible: can not be reserved

11 The first law of thermodynamics Energy can be exchanged between the system and its surroundings but the total energy of the system+ the surrounding is constant. i.e The energy of the universe, remains constant. system and its surroundings but the total energy of the system+ the surrounding is constant. i.e The energy of the universe, remains constant. i. e 1 st law of thermodynamics stated that i. e 1 st law of thermodynamics stated that “ energy is conserved” “ energy is conserved” or “ energy can neither created nor destroyed” or “ energy can neither created nor destroyed”

12 Heat and work changes The energy of a system will change if heat is transferred to or from the system or work is done by the system. The energy of a system will change if heat is transferred to or from the system or work is done by the system. 1 st law stated that, if some amount of heat (Q) is added into the system, it must either do work or increase the total energy of the system.

13 In biological system If the capacity to do work is represented by the symbol “W” and “H” stands for enthalpy (or heat content), then the firat law can be expressed as: ΔH = Q - W ΔH = Q - W

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15 Isothermal nature of cellular process Although heat is the simplest and more familiar medium by which energy may be transferred or used in man-made machines, it is not useful form of energy for performing biological work. Although heat is the simplest and more familiar medium by which energy may be transferred or used in man-made machines, it is not useful form of energy for performing biological work. Why? Why? “ because heat can do work if there is a temperature differential through which it can act”

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17 Heat must either pass from one body to a second one having lower temperature, or the temperature of a given hot body is lowered. Since it is not possible that there are very small temperature differentials in cells which is the basis of doing cellular work “ living organisms are isothermal” “ living organisms are isothermal” here we must define another form of energy called “free energy”. here we must define another form of energy called “free energy”.


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