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Ideal gas law pressure

For high gas pressures, ideal gas law predictions can become inaccurate and real gas effects have to be taken into account. More details on high-pressure effects can be found in Ohe [34]. [Pg.405]

Topics to be addressed include temperature, pressure, moles and molecular weights, mass and volume, viscosity, heat capaci, thoinal conductivity, Reynolds number, pH, vapor pressure, ideal gas law, latent enthalpy effects, and chemical reaction velocity constant. Hie chapter concludes with a section on praperty estimation. [Pg.19]

The spontaneous curvature of surfactant layers can be controlled in many ways see Table 7.1. For ionic surfactants, one can control the contribution coming from the counter-ions by adjusting the concentration of salt. As the electrolyte concentration increases, the ionic atmosphere approaches the oil-water interface (Debye length decreases), the transverse pressiue moment decreases and the spontaneous curvature faUs. " Increasing the temperature does the opposite, because the osmotic pressxne (jt) of the counter-ions is proportional to temperature due to the osmotic pressure ideal gas law n = cRT. [Pg.213]


See also in sourсe #XX -- [ Pg.586 ]

See also in sourсe #XX -- [ Pg.307 , Pg.310 , Pg.415 ]

See also in sourсe #XX -- [ Pg.104 , Pg.106 ]

See also in sourсe #XX -- [ Pg.586 ]

See also in sourсe #XX -- [ Pg.379 , Pg.380 , Pg.381 , Pg.382 , Pg.383 , Pg.384 ]




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