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Phase equilibria, in systems

Prausnitz and Chueh also discuss phase equilibria in systems containing components above their critical temperature (super-critical components). [Pg.348]

Different reviews on the experimental investigation of phase equilibria in systems involving solid components can be found in literature [111,112],... [Pg.60]

Weiss J, Lukas HL, Petzow G (1983) Calculation of Phase Equilibria in Systems based on Si3N4. In Riley FL (ed) Progress in Nitrogen Ceramics. NATO ASI Series E. 65 77... [Pg.150]

Papkov, S. P. Phase Equilibria in Systems Polymer-Solvent (russ.). Khimija, Moscow, 1981 de Gennes, P. G. The Physics of Liquid Crystals, Clarendon, Oxford, 1974 Khokhlov, A. R. Vysokomol. Soedin. A21, 1981 (1979)... [Pg.101]

Todd, D. B. 1952. Phase equilibria in systems with supercritical ethylene. Ph.D. diss., Princeton Univ. [Pg.537]

The phase equilibria in systems containing diblock poly(styrene-b-butadiene), SB, mixed either with a homopolymer or a random copolymer was established by plotting the reciprocal of the intensity of the main SAXS peak as a function of 1/T — the spinodal, T, and binodal, Tg, temperatures were measured [Zin and Roe, 1984]. [Pg.184]

Christian Wohlfarth is associate professor for physieal ehemistiy at Martin Luther University Halle-Wittenberg, Germany. He earned his degree in ehemistry in 1974 and wrote his Ph.D. thesis in 1977 on investigations of the second dielectric virial coefficient and the intermoleeular pair potential, both at Carl Sehorleinmer Technical University Merseburg. In 1985, he wrote his habilitation thesis. Phase Equilibria in Systems with Polymers and Copolymers, at the Technical University Merseburg. [Pg.550]

Batalin 0. J., Brusilovskiy A. 1., Zaharov M. J., Phase equilibria in systems of natural hydrocarbons, Nedra, Moscow, 1992 (in Russian). Guzhov A. 1., Joint gathering and transport of oil and gas, Nedra, Moscow, 1973 (in Russian). [Pg.40]

Swelheim, T., J.D.S. Arrais, and G.A.M. Diepai, Fluid Phase Equilibria in System Polyethene-Ethene. RecueU Des Travaux Chimiques Des Pays-Bas, 1965. 84(2) p. 261. [Pg.335]

K.M. Hong, J. Noolandi, Theory of phase-equilibria in systems containing block co-poly-mers. Macromolecules 16 (1983) 1083-1093. [Pg.160]

Zapolskaya, M. A. Emelina, T. V. Komarova, E. G. Kogan, V. B. Investigation of phase equilibria in systems formed by hydrogen fluoride and fluoroorganic compounds or hydrogen chloride. Part I. Experimental data [Russ] Tear. Osn. Khim. [Pg.3499]

High-pressure phase equilibria in systems of polymers, solvents, and supercritical gases are in almost all cases modeled using equations of state. A review of equations of state for polymer systems, including a discussion of their theoretical background, has been given by Lambert et al. [6]. One of the first equations of state that was used to model the high-pressure phase behavior of polymer-solvent systems was the Flory equation of state [11, 12]. Patterson and Delmas [10] showed that this equation of state can be used to describe both LCST and UCST phase behavior. The perturbed hard-chain theory (PCHT) was developed by Prausnitz and coworkers [57-59]. It can be considered as an improvement of the approach of Flory... [Pg.39]

Experimental determination of phase equilibria in systems containing a near-critical component... [Pg.207]

Phase equilibria in systems containing both an anionic and a cationic amphiphile. A thermodynamic model calculation... [Pg.17]

Figure 2.25 Phase equilibria in systems containing cetomacrogol-propyl gallate-benzaldehyde-water at 25° C. Ratio w/w cetomacrogol propyl gallate A 29 1, B 19 1, C 9 1,D6 1,E4 1,F2 1. LC = liquid crystal, G = isotropic gel phase, S = solid. From Nixon et al. [43] with permission. Figure 2.25 Phase equilibria in systems containing cetomacrogol-propyl gallate-benzaldehyde-water at 25° C. Ratio w/w cetomacrogol propyl gallate A 29 1, B 19 1, C 9 1,D6 1,E4 1,F2 1. LC = liquid crystal, G = isotropic gel phase, S = solid. From Nixon et al. [43] with permission.
Phase equilibria in systems of matter vapom pressiue calculations, freezing and freezing pressure, shrinkage and swelhng mechanisms, vapom pressme over capillary systems, phase diagrams, etc. [Pg.113]

De Fre, R. M. Verhoeye, L. A. Phase equilibria in systems composed of an aliphatic and an aromatic hydrocarbon and sulpholane. J. Appl. Chem. Biotechnol. 1976, 26, 469-487. [Pg.5652]


See other pages where Phase equilibria, in systems is mentioned: [Pg.161]    [Pg.166]    [Pg.265]   


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Equilibrium between phases in heterogeneous closed systems

Equilibrium displacements in heterogeneous systems passage of a component from one phase to another

Experimental determination of phase equilibria in systems containing a near-critical component

Non-Equilibrium Discharge Conditions and Gas-Phase Plasma-Chemical Processes in the Systems Applied for Synthesis of Diamond Films

Phase Equilibria in Ceramic and Refractory Systems

Phase Equilibria in Fluid Systems

Phase Equilibria in Macromolecular Systems

Phase Equilibrium in Aqueous Systems

Phase Equilibrium in Polymer-Solvent Systems

Phase Equilibrium in an Ideal System

Phase equilibria in multicomponent systems

Phase equilibria, in polymer systems

Phase equilibrium in simple systems

Phase equilibrium in single-component system

Phase equilibrium in the crosslinked polymer low-molecular-weight liquid system

Phase rule, Building Blocks in binary system diagrams, Invariant equilibria

Phase-equilibrium in binary systems

Phases in equilibrium

Systems equilibrium

The Phase Rule—a Method of Classifying All Systems in Equilibrium

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