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This handbook provides comprehensive treatment of the current state
of glass science from the leading experts in the field. Opening
with an enlightening contribution on the history of glass, the
volume is then divided into eight parts. The first part covers
fundamental properties, from the current understanding of the
thermodynamics of the amorphous state, kinetics, and linear and
nonlinear optical properties through colors, photosensitivity, and
chemical durability. The second part provides dedicated chapters on
each individual glass type, covering traditional systems like
silicates and other oxide systems, as well as novel hybrid
amorphous materials and spin glasses. The third part features
detailed descriptions of modern characterization techniques for
understanding this complex state of matter. The fourth part covers
modeling, from first-principles calculations through molecular
dynamics simulations, and statistical modeling. The fifth part
presents a range of laboratory and industrial glass processing
methods. The remaining parts cover a wide and representative range
of applications areas from optics and photonics through
environment, energy, architecture, and sensing. Written by the
leading international experts in the field, the Springer Handbook
of Glass represents an invaluable resource for graduate students
through academic and industry researchers working in photonics,
optoelectronics, materials science, energy, architecture, and more.
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