Max Planck Institute for Chemical Physics of Solids - Library Catalog

Phase transitions in materials Brent Fultz

By: Material type: TextTextLanguage: English Publisher: Cambridge Cambridge University Press [2014]Edition: 1. edDescription: XXIV, 563 S. Ill., graph. DarstContent type:
  • Text
Media type:
  • ohne Hilfsmittel zu benutzen
Carrier type:
  • Band
ISBN:
  • 9781107067240
Subject(s): Genre/Form: DDC classification:
  • 530.4/74 23
LOC classification:
  • QC175.16.P5
Other classification:
  • UQ 3400
  • UQ 7200
  • UG 3800
  • 33.25
  • 33.64
Online resources:
Contents:
Essentials of T-c phase diagramsDiffusion -- Nucleation -- Effects of diffusion and nucleation on phase transformations -- Energy -- Entropy -- Pressure -- Atom movements with the vacancy mechanism -- Melting -- Transformations involving precipitates and interfaces -- Spinodal decomposition -- Phase field theory -- Method of concentration waves and chemical ordering -- Diffusionless transformations -- Thermodynamics of nanomaterials -- Magnetic and electronic phase transitions -- Phase transitions in quantum materials -- Low temperature analysis of phase boundaries -- Cooperative behavior near a critical temperature -- Elastic energy of solid precipitates -- Statistical kinetics of ordering transformations -- Diffusion, dissipation, and inelastic scattering -- Vibrational thermodynamics of materials at high temperatures.
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Holdings
Item type Current library Call number Materials specified Status Date due Barcode
Buch MPI CPfS UQ 8000 FULT (Browse shelf(Opens below)) Checked out 2025-07-31 10007671

Literaturverz. S. [545] - 553

Essentials of T-c phase diagramsDiffusion -- Nucleation -- Effects of diffusion and nucleation on phase transformations -- Energy -- Entropy -- Pressure -- Atom movements with the vacancy mechanism -- Melting -- Transformations involving precipitates and interfaces -- Spinodal decomposition -- Phase field theory -- Method of concentration waves and chemical ordering -- Diffusionless transformations -- Thermodynamics of nanomaterials -- Magnetic and electronic phase transitions -- Phase transitions in quantum materials -- Low temperature analysis of phase boundaries -- Cooperative behavior near a critical temperature -- Elastic energy of solid precipitates -- Statistical kinetics of ordering transformations -- Diffusion, dissipation, and inelastic scattering -- Vibrational thermodynamics of materials at high temperatures.

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