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Description
  • Glasses are amorphous materials that lack the periodicity of crystalline substances. Structurally, they resemble metastable supercooled liquids but behave mechanically like solids. A typical way of preparing glass is by cooling a viscous supercooled liquid fast enough to avoid crystallization. Although this way of preparation is known for several thousands of years, the underlying molecular mechanism is not fully understood.
  • Glasses are amorphous materials that lack the periodicity of crystalline substances. Structurally, they resemble metastable supercooled liquids but behave mechanically like solids. A typical way of preparing glass is by cooling a viscous supercooled liquid fast enough to avoid crystallization. Although this way of preparation is known for several thousands of years, the underlying molecular mechanism is not fully understood. (en)
Title
  • Structural Relaxation and Viscosity Behavior in Supercooled Liquids at the Glass Transition
  • Structural Relaxation and Viscosity Behavior in Supercooled Liquids at the Glass Transition (en)
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  • Structural Relaxation and Viscosity Behavior in Supercooled Liquids at the Glass Transition
  • Structural Relaxation and Viscosity Behavior in Supercooled Liquids at the Glass Transition (en)
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  • RIV/00216275:25310/13:39897128!RIV14-GA0-25310___
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  • P(GAP106/11/1152), Z(MSM0021627501)
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  • 108366
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  • RIV/00216275:25310/13:39897128
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  • supercooled liquid; viscosity; structural relaxation; glass (en)
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  • [9B572B3AB6A4]
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  • Dordrecht
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  • Hot Topics in Thermal Analysis and Calorimetry, Vol.9
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  • Thermal Analysis of Micro, Nano- and Non-crystalline Materials
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  • Málek, Jiří
  • Svoboda, Roman
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number of pages
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  • 10.1007/978-90-481-3150-1_7
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  • Springer-Verlag
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  • 978-90-481-3149-5
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  • 25310
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