During an isothermal expansion, the work done is equal to the change in internal energy of the system.
In an isothermal process, the internal energy of a system remains constant because the temperature does not change. This means that the relationship between internal energy and temperature is that they are directly proportional in an isothermal process.
During reversible adiabatic expansion, the work done by the system is equal to the change in internal energy.
The work done by an expanding gas is directly related to the change in its internal energy. When a gas expands, it does work on its surroundings, which can lead to a change in its internal energy. This change in internal energy is a result of the work done by the gas during the expansion process.
In an isothermal process, a PV diagram is significant because it shows the relationship between pressure and volume while keeping the temperature constant. This helps to visualize how the gas behaves under these conditions and can be used to calculate work done and energy transfer in the system.
An isothermal process in thermodynamics is when the temperature remains constant, while an isobaric process is when the pressure remains constant.
In an isothermal process, the internal energy of a system remains constant because the temperature does not change. This means that the relationship between internal energy and temperature is that they are directly proportional in an isothermal process.
The PV diagram of an isothermal expansion illustrates the relationship between pressure and volume during a process where the temperature remains constant.
In an isothermal expansion process, the enthalpy remains constant. This means that the heat energy exchanged during the expansion is equal to the work done by the system.
During reversible adiabatic expansion, the work done by the system is equal to the change in internal energy.
In an isothermal process, the temperature remains constant. Therefore, the enthalpy change is directly proportional to the temperature change.
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First i will explain the binomial expansion
The work done by an expanding gas is directly related to the change in its internal energy. When a gas expands, it does work on its surroundings, which can lead to a change in its internal energy. This change in internal energy is a result of the work done by the gas during the expansion process.
In thermodynamics, the key difference between an adiabatic and isothermal graph is how heat is transferred. In an adiabatic process, there is no heat exchange with the surroundings, while in an isothermal process, the temperature remains constant throughout the process.
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In an isothermal process, a PV diagram is significant because it shows the relationship between pressure and volume while keeping the temperature constant. This helps to visualize how the gas behaves under these conditions and can be used to calculate work done and energy transfer in the system.