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Modeling phase

Complex Model Phase II Per Gallon Standards (After Year 2000)... [Pg.315]

Model Phase boundary control (n) Diffusion control (171)... [Pg.71]

Keywords atmosphere, turbulence, Kolmogorov model, phase stmcture function, transfer... [Pg.1]

Keywords Mangrove barks, molecular modeling, phase transformation, rast, spectroscopy, tannin, transformation. [Pg.197]

A. Reisman, Phase Equilibria, Basic Principles, Applications, and Experimental Techniques, Academic Press, New York, 1970 H. E. Stanley, Introduction to Phase Transitions and Critical Phenomena, Oxford University Press, New York, 1971 J. R. Cunningham and D. K. Jones, eds.. Experimental Results for Phase Equilibria and Pure Component Properties, American Institute of Chemical Engineers, New York, 1991 S. Malanowski, Modelling Phase Equilibria Thermodynamic Background and Practical Tools, Wiley, New York, 1992 J. M. Prausnitz, R. N. Lichtenthaler, and E. G. de Azevedo, Molecular Thermodynamics of Eluid-Phase Equilibria, Prentice-Hall, Upper Saddle River, NJ, 1999. [Pg.529]

With poor models or lower resolution is may be advantageous to compute model phases and then treat them as experimental ones. Guidelines described in the preceding section would then be applicable. [Pg.169]

ML-3000 ((2,2-dimethyl-6-(4-chlorophenyl)-7-phenyl-2,3-dihydro-1H-pyrrolizine-5-yl)-acetic acid) is a nonantioxidant dual inhibitor of both cyclooxygenase and 5-lipoxygenase. ML-3000 has been compared to indomethacin in a number of experimental models of inflammation. The analgesic effects of ML-3000 have also been assessed in a number of animal models. Phase II studies have shown a wide range of activities, including anti-inflammatory, analgesic, antiplatelet and antiasthmatic properties (Laufer et al., 1994 Chin and Wallace, 1999). [Pg.37]

Ciferri, A., and K. J. Smith Phase changes in fibrous macromolecular systems and associated elasticity. Model phase diagrams. J. Polymer Sci. Pt. A-2, 731 (1964). [Pg.96]

Critical reviews of existing methods to model phase behaviour at high pressure using equations of state have been made in recent years, and we refer to these papers for further details [24, 25]. The general conclusion is that modelling is still case-specific. When the critical point is approached, predictions and even correlations of critical curves and solubilities are extremely difficult because of the nonclassical behaviour in this region. [Pg.40]

Where, data are the raw data (toxicity and chemical) information is the elaborated data as processed during the modeling phase and knowledge is the final model output. [Pg.190]

While in volumes 180 and 181 of this series several basic aspects of morphology, inter-phase structure and disorder were addressed, in the present volume, molecular interactions, modeling, phase transformation and crystallization kinetics are considered (see the subject index including keywords from volumes 180 and 181 at the end of the book). Needless to say, in spite of substantial success over 60 years or more we are still far from having a complete and unambiguous picture of polymer crystallization. We firmly believe that a fruitful approach to such a complex problem requires one to give way to many different and sometimes conflicting viewpoints, as we have attempted to do in these volumes. We do hope that they are not only a time-capsule left for... [Pg.313]

A basic phase diagram is easy to read. As shown in Fig. 21.5, the label at each corner represents a component, for example, A = surfactant, B = water, and C = oil. The chemical composition of the component at each corner is 100% (pure). The composition of this component for the points on the line that is opposite from the corner is always 0%. In other words, the line between the two corners is a binary phase diagram for the two components. What are the compositions for the points (1-6) indicated on the model phase ternary phase diagram The answers for some of the points are all ready given in the table. The readers are encouraged to fill out the rest. Figure 21.6-21.8 show some typical ternary phase diagrams of different systems. [Pg.696]


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See also in sourсe #XX -- [ Pg.310 , Pg.311 , Pg.312 ]




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5-oscillator phase space model

Associated Solution Model for the Liquid Phase

Atomistic Modeling of Condensed-Phase Reactions

Atomistic models phase behavior

Basic models phase equilibrium

Bubble column reactors three-phase model

Cluster models, phase diagrams

Colloidal dynamic modeling phase separation

Complete Model—Gas and Condensed Phases

Condensation liquid phase models

Condensed phase, model

Condensed-phase system quantum bath model

Constant phase-angle model

Contrast structures phase transition models

Copolymerization with phase separation, model

Coupled-Phase Model

Dense-phase transport modeling

Discharge rate models release phase

Discrete phase model

Discrete phase, bimodal distribution models

Donnan Phase Models

Dual phase model

Dynamic phase behavior model

Explicit Models for Condensed Phases

First-order phase transition lattice models

Fluid phase equilibrium activity coefficient models

Four-phase model

Gas Phase Model

Gas-phase adsorption model studies

Gas-phase chemical models

Gaussian model, phase transitions

General Strategy for Modeling Two-Phase Phenomena

Grain growth phase field models

Hard-sphere model phase diagram

Herzberg-Longuet-Higgins phase, Jahn-Teller model

Ideal adsorbed phase model

Ideal two-phase model

Implicit Models for Condensed Phases

Ising model phase diagram

Jahn-Teller model, Longuet-Higgins phase

Kinetic model of postpolymerization in the polymer-monomeric phase

Kinetic models, chemical condensed phase

Landau model, phase transitions

Liquid phase associated solution model

Liquid phase models, aqueous systems

Liquid-Phase Models

Liquid-phase pyrolysis, modelling

Mathematical Modeling of Structure Evolution in Phase Separating Polymer Systems

Membranes dynamic phase behavior model

Micellization phase equilibrium model

Micellization phase separation model

Microstructured single-phase modeling

Microstructured three-phase modeling

Mobile phase displacement model

Mobile phase model

Model construction phase

Model for complex gas-phase reactions

Model of Intermediate Phase

Model of the Lyotropic SmC Analog Phase

Model phase diagram

Model phases solid

Model phases solid solution

Model pseudo-phase separation, nonideal

Model when reactant present in both liquid and vapor phases

Modeling Phase Behavior with the Peng-Robinson Equation of State

Modeling exposure phases

Modeling of Liquid Phases, First Edition. Michel Soustelle

Modeling of Single-Phase Flows

Modeling of Slurry-Phase Reactors

Modeling of Stationary Phases

Modeling phase behavior

Modeling single-phase simulations

Modeling three-phase systems

Modeling two-phase flow

Modeling, phase shifts

Modelling of the phase

Models for residual chemical potential and activity coefficient in the liquid phase

Models for three phase slurry reactors

Models liquid crystal cubic phase

Models of Diffusive Two-Phase Interaction

Models phases

Models three-phase fluidization

Molecular Models for Simple Smectic Phases

Multi-phase model

Multi-phase reactor model

New phases from the molecular model

Normal phase displacement model

Normal phase sorption model

Octanol as a reference model for non-aqueous phases

One dimensional, two-phase model

One-Dimensional Model of Interdiffusion between Two-Phase Alloys

One-phase-model

Oscillatory reactions phase transition models

Overview of possible two-phase flow models

Pair-correlation model Phase shifts

Pharmacodynamic phase model

Phase 1 Model (Short-Listing Suppliers)

Phase 2 Model Results

Phase Behavior of Coarse-Grained Single-Chain Models

Phase Competition in a Model of Divided Couple

Phase Equilibrium Modelling

Phase Field Modeling on Morphology Development

Phase Modeling Tools . Applications to Gases, First Edition. Michel Soustelle

Phase Optimization by TLC Following the PRISMA Model

Phase accumulation model

Phase behavior modeling of chemicals

Phase behavior simulation model

Phase boundary potential model

Phase diagram for the reactive flash model

Phase equilibrium model

Phase model calculations

Phase separating/ordering systems model)

Phase separation model, of micellization

Phase separation, high temperature theoretical model

Phase separation, models

Phase space mapping for the harmonic model

Phase space systems Arnold model

Phase transfer model

Phase transition model

Phase transition models, oscillatory

Phase transitions ammonium triiodate crystal model

Phase transitions modelling

Phase transitions, diffusion models

Phase-equilibrium modeling

Phase-field modeling

Phase-field models

Phase-inverting reactions molecular model

Poly modeling phase shifts

Polymer phase homogeneous model

Polymer phase modeling

Polymer phase porous membrane model

Pore phase, stochastic network model

Possible model assumptions for two-phase flow in relief systems

Potts models phase diagram

Pseudo-phase model

Quasi-single-phase model

Random phase model

Random phase volume model

Realistic Liquid Phase Model

Regular solution modelling phase diagrams

Related proteins as phasing models

Retention Modeling as Function of Mobile Phase Composition

Reversed-phase retention process models

Risk Adjusted Multi-Criteria Optimization Model for Supplier Sourcing (Phase

Secondary-structure phases of a hydrophobic-polar heteropolymer model

Separation model, pseudo-phase, nonideal mixed micellization

Single-Phase Modeling

Single-fluid-phase reactors, modeling

Single-phase flows model

Single-phase flows, modeling

Solid phase, diffusion models

Solid-phase interaction parameter model

Solution phase models

Solution phase models Aqueous solutions

Solution phase models cellular model

Solution phase models central atom model

Solution phase models complex’ model

Solution phase models dilute solutions

Solution phase models ideal solutions

Solution phase models interstitial solutions

Solution phase models line compounds

Solution-phase reactions, surface complexation models

Solvation parameter model stationary phases

Some Aspects of a Fluid Phase Equilibria and UNIFAC Model

Stationary phase computer modeling

Steric model phase-transfer

Subject three-phase model

Surfactant solutions, thermodynamics pseudo-phase model

Takayanagi models for dispersed phases

Temperature dependence liquid crystalline phase modelling

The Design of Model Phases for Chromatography

The Nikolsky-Eisenman equation and phase boundary potential model

The Pseudo-Phase Model

The Schlogl model of first-order phase transition

The Schlogl model of second-order phase transition

The gas model and its phase

The homogeneous model for two-phase flow

The phase model for offshore field exploration and development

Thermodynamic Modeling of Solid Phases, First Edition. Michel Soustelle

Thermodynamic Modeling of Supercritical Fluid-Solute Phase Behavior

Thermodynamic Models for the Prediction of Petroleum-Fluid Phase Behaviour

Three phase model thermodynamics

Three-Phase Modeling

Three-dimensional model phases

Three-dimensional model phases energy values

Three-dimensional model phases molecular interaction

Three-dimensional model phases molecular properties

Three-dimensional model phases phase

Three-dimensional model phases process

Three-dimensional model phases proteins

Three-dimensional model phases structure

Three-phase model

Two phase model

Two-Phase Flow Models and Computational Fluid Dynamics

Two-Phase Modeling

Two-phase fluid flow homogeneous model

Two-phase model predictions and experimental observations

Two-phase reactor models

Vapor-Liquid Phase Equilibrium Calculations with the PVDW Model

Wake model, three-phase fluidized beds

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