The prediction of the critical temperature relies on the knowledge of the normal boiling point because the method only predicts the relation of the normal boiling point and the critical temperature and not directly the critical temperature.
22.
The prediction of the critical temperature relies on the knowledge of the normal boiling point because the method only predicts the relation of the normal boiling point and the critical temperature and not directly the critical temperature.
23.
Guldberg has found that a rough estimate of the normal boiling point " T " b, when expressed in kelvins ( i . e ., as an absolute temperature ), is approximately two-thirds of the critical temperature " T " c.
24.
It also has the lowest normal boiling point (-24.2 �C ), which is where the vapor pressure curve of methyl chloride ( the blue line ) intersects the horizontal pressure line of one atmosphere ( atm ) of absolute vapor pressure.
25.
It also has the lowest normal boiling point ( " 24.2 �C ), which is where the vapor pressure curve ( the blue line ) intersects the horizontal pressure line of one atmosphere ( atm ) of absolute vapor pressure.
26.
This is often done for the critical temperature, where the Guldberg rule implies that T c is 3 / 2 of the normal boiling point and the group contributions are used to give a more precise value than 3 / 2.
27.
This is distinct from the use of the term superheating to refer to water at atmospheric pressure above its normal boiling point, which has not boiled due to a lack of nucleation sites ( sometimes experienced by heating liquids in a microwave ).
28.
The "'normal boiling point "'( also called the "'atmospheric boiling point "'or the "'atmospheric pressure boiling point "') of a liquid is the special case in which the vapor pressure of the liquid equals the defined atmospheric pressure at sea level, 1 bar.
29.
It also has the lowest normal boiling point ( " 24.2 �C ), which is where the vapor pressure curve of methyl chloride ( the blue line ) intersects the horizontal pressure line of one atmosphere ( atm ) of absolute vapor pressure.
30.
If the compound's normal boiling point is higher, then that compound can exist as a liquid or solid at that given temperature at atmospheric external pressure, and will so exist in equilibrium with its vapor ( if volatile ) if its vapors are contained.
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