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Springer - The Glass Transition: Relaxation Dynamics in Liquids

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Description

Explore the complex science of how liquids and disordered materials transform into solids. This volume from the Springer Series in Materials Science, volume 48, provides a deep look into the glass transition process. Whether studying a liquid melt or a rubber, understanding how temperature changes or solvent extraction leads to a solid glass state without crystallization is essential for materials science research. This book addresses the dramatic dynamic effects observed during cooling. You will learn about the massive changes in viscosity, which can increase by approximately fifteen orders of magnitude as a liquid approaches the glass temperature (Tg). By examining these continuous increases in viscosity, researchers and practitioners gain a better understanding of the technical importance of the glass transition in various industrial and scientific applications.

Key Features

Detailed analysis of how liquid melts and rubbers transition into solid glass through cooling or solvent extraction.

Comprehensive coverage of dynamic effects, specifically how viscosity changes as temperature decreases.

Exploration of the massive viscosity increases that can reach up to fifteen orders of magnitude.

Part of the respected Springer Series in Materials Science, specifically volume 48.

Practical insights into the technical importance of the glass transition in scientific contexts.

Product Specifications

Format
hardcover
Domain
Amazon UK
Release Date
06 June 2001
Listed Since
19 December 2006

Barcode

No barcode data available

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