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Generic phase diagram

Figure 8.9 Simplified generic phase diagram for cuprate superconductors. Figure 8.9 Simplified generic phase diagram for cuprate superconductors.
The generic phase-diagram relationships illustrated in Figs. 7.7 and 7.8 underlie all binary fluid thermodynamics. We first focus on the P-x aspects of real and ideal solutions (Sections 7.3.1-7.3.3), then on the complementary T-x aspects (Sections 7.3.4 and 7.3.5),... [Pg.236]

Figure 5.5 Generic phase diagram showing the coexistence curve and solubility for uncured oligomers— LC (solid line) and curing PDLC (dashed line). Taken form Ref. 20, with permission. Figure 5.5 Generic phase diagram showing the coexistence curve and solubility for uncured oligomers— LC (solid line) and curing PDLC (dashed line). Taken form Ref. 20, with permission.
Figure 5 The generic phase diagram of the (TMfjX as a function of pressure or anion substitution. On the left, the normal phase of sulfur compounds can be described as a Luttinger liquid that becomes gapped in the charge sector (LL, ) below Tj, and can develop either a spin-Peierls (SP) or localized antiferromagnetic ordered state. Under pressure, the properties of the sulfur series evolve toward those of the selenides for which the normal state shows a progressive restoration of a Fermi liquid (FL) precursor to antiferromagnetism (AF) and superconductivity (S), after [28]. Figure 5 The generic phase diagram of the (TMfjX as a function of pressure or anion substitution. On the left, the normal phase of sulfur compounds can be described as a Luttinger liquid that becomes gapped in the charge sector (LL, ) below Tj, and can develop either a spin-Peierls (SP) or localized antiferromagnetic ordered state. Under pressure, the properties of the sulfur series evolve toward those of the selenides for which the normal state shows a progressive restoration of a Fermi liquid (FL) precursor to antiferromagnetism (AF) and superconductivity (S), after [28].
Figure 1.14.6. A generic phase diagram for a mixture showing the melting behavior of a eutectic mixture such as solder. Figure 1.14.6. A generic phase diagram for a mixture showing the melting behavior of a eutectic mixture such as solder.
Fig. 7.5.1. Generic phase diagram for one-component system the inserts show in various locations of the diagram how the molar Gihhs free energies change when the volume is displaced from its equilihrium value. These various curves are well reproduced hy the Landau functions displayed in Fig. 7.5.2. Fig. 7.5.1. Generic phase diagram for one-component system the inserts show in various locations of the diagram how the molar Gihhs free energies change when the volume is displaced from its equilihrium value. These various curves are well reproduced hy the Landau functions displayed in Fig. 7.5.2.
Figure 3.19. Schematic sketch of a generic phase diagram for a langmulr monolayer. Generally the pressure (and the compression) increase from right to left. The LE + G coexistence phase has a critical point this may or may not be the case for the LE + LG coexistence. The dashed line represents a possible second order LE-LC transition. In region 1 several condensed phases may occur, exhibiting different order in one or more quantities. Figure 3.19. Schematic sketch of a generic phase diagram for a langmulr monolayer. Generally the pressure (and the compression) increase from right to left. The LE + G coexistence phase has a critical point this may or may not be the case for the LE + LG coexistence. The dashed line represents a possible second order LE-LC transition. In region 1 several condensed phases may occur, exhibiting different order in one or more quantities.
Figure 3.31. Surface pressure isotherm (left) and generic phase diagram (right) for mono-layers of the of a Cj H-surfactants of fig. 3.30. Mean field lattice theory. Discussion in the text. Figure 3.31. Surface pressure isotherm (left) and generic phase diagram (right) for mono-layers of the of a Cj H-surfactants of fig. 3.30. Mean field lattice theory. Discussion in the text.
Figure 6 Generic phase diagram of a polymer-C02 mixture. Figure 6 Generic phase diagram of a polymer-C02 mixture.
A FIGURE 11.27 Generic phase diagram for a pure substance. The green line is the sublimation curve, the blue line is the melting curve, and the red line is the vapor pressure curve. [Pg.445]

Figure 8.8 Generic phase diagram for the perovskite-related superconducting cuprate phases... Figure 8.8 Generic phase diagram for the perovskite-related superconducting cuprate phases...
FIGURE 1.1 Partial generic phase diagram of a system water (W), surfactant (S), and medium chain length alcohol (A). (Adapted from Ekwall, P., in Advances in Liquid Crystals, Brown, G.H. (Ed.), Academic Press, New York, 1975, pp. 1-139. With permission.)... [Pg.2]

The main theme of this dependence is illustrated in Figures 1.12 and 1.13 [15], which show the generic phase diagram for an alkyl ether surfactant with an aliphatic hydrocarbon of a moderate length (approx. 12 carbons), and a short polyethylene glycol chain (approx. 4 ethylene glycol units). First, the diagram is characterized by a complete disparity of the solubility of the surfactant in water... [Pg.7]

Figure 7.21. Generic phase diagram showing temperature T versus chirality q for blue phases. Universal features include the survival of BPI and BPIII, but not BPII, at high chirality and termination of the BPIII-isotropic transition at critical point c.p. Figure 7.21. Generic phase diagram showing temperature T versus chirality q for blue phases. Universal features include the survival of BPI and BPIII, but not BPII, at high chirality and termination of the BPIII-isotropic transition at critical point c.p.
What other properties characterize a gas Recall the generic phase diagram for a pure substance. Figure 5.31. What landmarks do all substances have in common Every substance has a triple point - the temperature and pressure at which all three... [Pg.282]

Figure 7. A generic phase diagram for a polymer melt with a buried liquid-liquid predicted by the 5UC model [15]. Tm and Ts are the melting and spinodal temperatures encountered along the constant density quench path (dotted line). Inset shows the measured induction time as a junction of temperature for iPP. Figure 7. A generic phase diagram for a polymer melt with a buried liquid-liquid predicted by the 5UC model [15]. Tm and Ts are the melting and spinodal temperatures encountered along the constant density quench path (dotted line). Inset shows the measured induction time as a junction of temperature for iPP.
Figure 6. Mean field phase diagram obtained from the model of frustrated smectics for different values of the incommensurability parameter (a) Very weak incommensurability N, SmA, and SmA2 form the generic phase diagram of frustrated smectics. First calculated by Frost [82] this diagram is similar to the experimental one observed on the mixture DB5-TBBA [67]. Figure 6. Mean field phase diagram obtained from the model of frustrated smectics for different values of the incommensurability parameter (a) Very weak incommensurability N, SmA, and SmA2 form the generic phase diagram of frustrated smectics. First calculated by Frost [82] this diagram is similar to the experimental one observed on the mixture DB5-TBBA [67].
What is a phase diagram Draw a generic phase diagram and label its important features. [Pg.536]


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