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Writing equations for adiabatic process - Thermodynamics Video Lecture | Physical Chemistry

FAQs on Writing equations for adiabatic process - Thermodynamics Video Lecture - Physical Chemistry

1. What is an adiabatic process in thermodynamics?
Ans. An adiabatic process in thermodynamics refers to a process where there is no heat exchange between the system and its surroundings. This means that the energy transfer during the process occurs only through work, either by compression or expansion of the system.
2. How do you write an equation for an adiabatic process?
Ans. The equation for an adiabatic process can be written as PV^γ = constant, where P is the pressure, V is the volume, and γ is the heat capacity ratio. This equation is derived from the first law of thermodynamics, assuming no heat transfer.
3. What is the significance of the adiabatic process in thermodynamics?
Ans. Adiabatic processes are of great significance in thermodynamics as they help in understanding the behavior of gases during rapid compression or expansion. They are commonly used to analyze the performance of various devices such as gas turbines, compressors, and nozzles.
4. How is an adiabatic process different from an isothermal process?
Ans. An adiabatic process is characterized by no heat exchange, whereas an isothermal process occurs at a constant temperature. In an adiabatic process, the temperature of the system changes due to compression or expansion, whereas in an isothermal process, the temperature remains constant throughout.
5. Can an adiabatic process be reversible?
Ans. Yes, an adiabatic process can be reversible. In a reversible adiabatic process, the system can be brought back to its initial state by reversing all the steps in the process without any heat transfer. However, irreversible adiabatic processes are more common in practice due to factors such as friction and heat losses.
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