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The building-up of *phase* *diagrams**

"... Abstract: This paper begins with a bird’s-eye view of the history of phase equilibrium diagrams for mixtures, their classification and interpretation. Running throughout the discussion are the fertile ideas of van der Waals. The Scott and van Konynenburg classification is revisited, and various type ..."

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Abstract: This paper begins with a bird’s-eye view of the history of

*phase*equilibrium*diagrams*for mixtures, their classification and interpretation. Running throughout the discussion are the fertile ideas of van der Waals. The Scott and van Konynenburg classification is revisited, and various###
THE *PHASE* *DIAGRAM* OF QCD

, 2006

"... ABSTRACT. I present the motivation for studying nuclear collisions at ultrarelativistic energies which is to map the phase diagram of strongly interacting matter under very extreme conditions. The relevant experimental efforts are overviewed and problems in connecting observables with physics of the ..."

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ABSTRACT. I present the motivation for studying nuclear collisions at ultrarelativistic energies which is to map the

*phase**diagram*of strongly interacting matter under very extreme conditions. The relevant experimental efforts are overviewed and problems in connecting observables with physics###
Mapping the QCD *Phase* *Diagram*

, 1999

"... The QCD vacuum in which we live, which has the familiar hadrons as its excitations, is but one phase of QCD, and far from the simplest one at that. One way to better understand this phase and the nonperturbative dynamics of QCD more generally is to study other phases and the transitions between phas ..."

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*phases*. We are engaged in a voyage of exploration, mapping the QCD

*phase*

*diagram*as a function of temperature T and baryon number chemical potential µ. Because of asymptotic freedom, the high temperature and high baryon density

*phases*of QCD are more simply and more appropriately described in terms

###
GEOCHEMICAL *PHASE* *DIAGRAMS* AND GALE *DIAGRAMS*

"... Abstract. The problem of predicting the possible topologies of a geochemical phase diagram, based on the chemical formula of the phases involved, is shown to be intimately connected with and aided by well-studied notions in discrete geometry: Gale diagrams, triangulations, secondary fans, and orient ..."

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Abstract. The problem of predicting the possible topologies of a geochemical

*phase**diagram*, based on the chemical formula of the*phases*involved, is shown to be intimately connected with and aided by well-studied notions in discrete geometry: Gale*diagrams*, triangulations, secondary fans###
*Phase* *Diagram* and Storage . . .

, 1998

"... We solve the dynamics of Hopfield-type neural networks which store sequences of patterns, close to saturation. The asymmetry of the interaction matrix in such models leads to violation of detailed balance, ruling out an equilibrium statistical mechanical analysis. Using generating functional metho ..."

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methods we derive exact closed equations for dynamical order parameters, viz. the sequence overlap and correlationand response functions, in the thermodynamic limit. We calculate the time translation invariant solutions of these equations, describing stationary limit-cycles, which leads to a

*phase**diagram*###
THE *PHASE* *DIAGRAM* OF THE SECOND-TYPE ANTIFERROMAGNET

"... We investigate theoretically the phase diagrams of the second-type antiferromagnet with the fcc structure. Besides the nearest-neighbour and next--nearest-neighbour exchange interactions, the biquadratic and long-range dipolar terms are taken into account. The results can be useful to discuss the p ..."

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We investigate theoretically the

*phase**diagrams*of the second-type antiferromagnet with the fcc structure. Besides the nearest-neighbour and next--nearest-neighbour exchange interactions, the biquadratic and long-range dipolar terms are taken into account. The results can be useful to discuss###
*PHASE* *DIAGRAM* OF SUPERCONDUCTING UPt_3 in the . . .

, 1995

"... ii Acknowledgements iii List of Figures iv List of Tables v 1 Introduction 1 1.1 Superconductivity and UPt 3 : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : 1 1.2 Unconventional Superconductivity : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : 2 1.3 Experi ..."

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.3 Experimental Evidence for E 1g Superconductivity in UPt 3 . : : : : : : : : : : : : : : : : : : : 6 2 Effective field method for the

*phase**diagram*10 2.1 Magnet with uniaxial anisotropy: a toy model : : : : : : : : : : : : : : : : : : : : : : : : : : : 10 2.2 One-component order parameter###
Chapter 6. *Phase* *Diagrams*

"... Many of the engineering materials possess mixtures of phases, e.g. steel, paints, and composites. The mixture of two or more phases may permit interaction between different phases, and results in properties usually are different from the properties of individual phases. Different components can be c ..."

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Many of the engineering materials possess mixtures of

*phases*, e.g. steel, paints, and composites. The mixture of two or more*phases*may permit interaction between different*phases*, and results in properties usually are different from the properties of individual*phases*. Different components can###
INTERMEDIATE COMPOUNDS IN *PHASE* *DIAGRAMS* 3........................................................................................................................8 EXAMPLE BINARY *PHASE* *DIAGRAMS*..............................................................

"... Analyzing phase equilibria on eutectic phase diagrams...........................................................................................................3 Example eutectic systems.................................................................................................................. ..."

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Analyzing

*phase*equilibria on eutectic*phase**diagrams*...........................................................................................................3 Example eutectic systems###
Shock dynamics of *phase* *diagrams*

"... A thermodynamic phase transition denotes a drastic change of state of a physical system due to a continuous change of thermodynamic variables, as for instance pressure and tem-perature. The classical van der Waals equation of state is the simplest model that predicts the occurrence of a critical poi ..."

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A thermodynamic

*phase*transition denotes a drastic change of state of a physical system due to a continuous change of thermodynamic variables, as for instance pressure and tem-perature. The classical van der Waals equation of state is the simplest model that predicts the occurrence of a critical