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This Special Issue "Advanced Nanoindentation in Materials" contains some of the latest developments in the field of small-scale contact mechanics for a wide range of materials and biological cells. The featured manuscript revealed a new ultra-high strain rate nanoindentation method that will enable new scientific understanding of time-dependent material properties. The book also presents unique material properties of super alloys and other structural materials characterized by indentation methods. In addition to engineering materials, deformation behaviors of live cancer cells on sharp pillar structures were discussed in this book with the hope to stimulate interest in the mechanical contact behaviors of biological cells.
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This Special Issue "Advanced Nanoindentation in Materials" contains some of the latest developments in the field of small-scale contact mechanics for a wide range of materials and biological cells. The featured manuscript revealed a new ultra-high strain rate nanoindentation method that will enable new scientific understanding of time-dependent material properties. The book also presents unique material properties of super alloys and other structural materials characterized by indentation methods. In addition to engineering materials, deformation behaviors of live cancer cells on sharp pillar structures were discussed in this book with the hope to stimulate interest in the mechanical contact behaviors of biological cells.
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Materials testing laboratories --- Idaho National Laboratory.
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Electrooptics. --- Materials testing laboratories --- Surfaces (Technology) --- Instruments. --- Analysis.
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Materials testing laboratories. --- Semiconductors --- Scientific apparatus and instruments --- Characterization. --- Calibration.
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This Special Issue "Advanced Nanoindentation in Materials" contains some of the latest developments in the field of small-scale contact mechanics for a wide range of materials and biological cells. The featured manuscript revealed a new ultra-high strain rate nanoindentation method that will enable new scientific understanding of time-dependent material properties. The book also presents unique material properties of super alloys and other structural materials characterized by indentation methods. In addition to engineering materials, deformation behaviors of live cancer cells on sharp pillar structures were discussed in this book with the hope to stimulate interest in the mechanical contact behaviors of biological cells.
Nanotechnology. --- Materials testing laboratories. --- Testing laboratories --- Molecular technology --- Nanoscale technology --- High technology
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History --- Laboratories --- Building materials --- Materials testing laboratories --- Analytical chemistry. --- Materials --- Matter --- Mechanical properties --- Properties
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Fire resistant materials --- Catalogs --- Fire resistant materials industry --- United States --- Directories --- Materials testing laboratories --- Fire resistant materials - Catalogs. --- Fire resistant materials industry - United States - Directories. --- Materials testing laboratories - United States - Directories. --- Catalogs.
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