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  1. 22 maj 2019 · In thermodynamics, the term saturation defines a condition in which a mixture of vapor and liquid can exist together at a given temperature and pressure. The temperature at which vaporization (boiling) starts to occur for a given pressure is called the saturation temperature or boiling point.

  2. Definition. Saturation temperature is the temperature at which a liquid and its vapor are in equilibrium at a given pressure. This means that at saturation temperature, any heat added to the liquid will cause it to start boiling and change into vapor, while any heat removed from the vapor will cause it to condense back into liquid.

  3. Definition. Saturation temperature is the temperature at which a substance changes phase from liquid to vapor or vice versa at a given pressure. It marks the boundary between the liquid and vapor phases of a substance, where the two phases can coexist in equilibrium.

  4. Definition. Saturation temperature is the temperature at which a substance changes phase from liquid to vapor or from vapor to liquid at a given pressure. This term is crucial in understanding phase transitions and thermodynamic properties, as it defines the conditions under which a substance can coexist in both liquid and vapor forms.

  5. The saturation temperature is the temperature for a corresponding saturation pressure at which a liquid boils into its vapor phase. The liquid can be said to be saturated with thermal energy. Any addition of thermal energy results in a phase transition.

  6. The term saturation defines a condition in which mixture of vapor and liquid can exist together at a given temperature and pressure. The temperature at which vaporization (boiling) starts to occur for a given pressure is called the saturation temperature or boiling point.

  7. For a pure substance, as shown in Figure 8.2, there is a one-to-one correspondence between the temperature at which vaporization occurs and the pressure. These values are called the saturation pressure and saturation temperature (see Ch. 3 in SB&VW).

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