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MEMS and Nanotechnology, Volume 8: Proceedings of the 2014 Annual
Conference on Experimental and Applied Mechanics, the eighth volume
of eight from the Conference, brings together contributions to this
important area of research and engineering. The collection
presents early findings and case studies on a wide range of areas,
including: Small-Scale Plasticity MEMS and Electronic Packaging
Mechanics of Graphene Interfacial Mechanics Methods in Measuring
Small-Scale Displacements Organic and Inorganic Nanowires AFM and
Resonant-Based Methods Thin Films and Nano fibers
MEMS and Nanotechnology, Volume 5: Proceedings of the 2013 Annual
Conference on Experimental and Applied Mechanics, the fifth volume
of eight from the Conference, brings together contributions to this
important area of research and engineering. The collection presents
early findings and case studies on a wide range of areas,
including: Microelectronics Packaging Single Atom/Molecule
Mechanical Testing MEMS Devices & Fabrication In-Situ
Mechanical Testing Nanoindentation Experimental Analysis of
Low-Dimensional Materials for Nanotechnology
Thermites, which are generally considered to be reactive mixtures
of powdered metals and metal oxides, are an important subset of
energetic materials. The underlying thermodynamic properties of a
given mixture dictate whether it may undergo a self-sustaining
reaction, liberating heat in the process. Thermodynamic information
in the existing scientific literature regarding thermitic
combinations is scattered and incomplete. Currently, a
comprehensive overview of this nature would be of great use to
those working in the areas of pyrotechnics, pyrometallurgy,
high-temperature chemistry, and materials science. Thermitic
Thermodynamics solves this problem by describing the results of
calculations on over 800 combinations of metal, metalloid, and
metal oxide reactants. Other features include: A first-of-its-kind
adiabatic survey of binary thermitic reactions Provides an overview
of key trends in exothermic metal-metal oxide reactivity Describes
the role of non-oxide product formation in thermitic systems
Explains how to interpret the results of thermochemical
calculations effectively An invaluable resource, this book provides
an accessible introduction for students and is also an enduring
guide for professionals.
This volume consists of 82 classic and important contributions to
the basic neurobiology of learning and memory. Included are
historical articles as well as articles on developmental
plasticity, hormones and memory, long-term potentiation,
electrophysiology of memory, biochemistry of memory, morphology of
memory, invertebrate models, and features of animal and human
memory. This is a companion volume to Brain Theory Reprint Volume
in which articles on mathematical models of memory are presented.
This volume consists of 82 classic and important contributions to
the basic neurobiology of learning and memory. Included are
historical articles as well as articles on developmental
plasticity, hormones and memory, long-term potentiation,
electrophysiology of memory, biochemistry of memory, morphology of
memory, invertebrate models, and features of animal and human
memory. This is a companion volume to Brain Theory Reprint Volume
in which articles on mathematical models of memory are presented.
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