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This book introduces the key technologies in the manufacture of
double-mass line vibrating silicon micromechanical gyroscope,
respectively. The design of gyrostructure, detection technology,
orthogonal correction technology, the influence of temperature and
the design of measurement and control system framework are
introduced in detail, with illustrations for easy
understanding. It presents the principle, structure and related
technology of silicon-based MEMS gyroscope. The content enlightens
the researchers of silicon-based MEMS gyroscopes and gives readers
a new understanding of the structural design of silicon-based
gyroscopes and the design of dual-mass gyroscopes.
Since the potential toxicity of silver nanoparticles (Ag NPs) has
raised serious concerns in the biomaterials and biomedical
engineering community, Silver Nanoparticles for Antibacterial
Devices: Biocompatibility and Toxicity brings together the
synthesis, the physicochemical properties and the biological
actions of Ag NPs, as well as the clinical demands for fabricating
antibacterial medical devices, discussing how to suppress the side
effects of nanomaterials and how to impart to them the selective
toxicity. This book presents the two primary paradigms that have
emerged in probing the antibacterial applications of Ag NPs, i.e.
the active attacking releasing way and the conservative defending
approach by taking advantage of various short-range actions; it
shows readers how the ways in which Ag NPs have behaved can be
engineered purposively. With contributions from leading
international experts and extensive references listed in each
chapter, this volume provides the general principles on controlling
the physicochemical behaviors of nanomaterials and managing their
toxicity risks.
Since the potential toxicity of silver nanoparticles (Ag NPs) has
raised serious concerns in the biomaterials and biomedical
engineering community, Silver Nanoparticles for Antibacterial
Devices: Biocompatibility and Toxicity brings together the
synthesis, the physicochemical properties and the biological
actions of Ag NPs, as well as the clinical demands for fabricating
antibacterial medical devices, discussing how to suppress the side
effects of nanomaterials and how to impart to them the selective
toxicity. This book presents the two primary paradigms that have
emerged in probing the antibacterial applications of Ag NPs, i.e.
the active attacking releasing way and the conservative defending
approach by taking advantage of various short-range actions; it
shows readers how the ways in which Ag NPs have behaved can be
engineered purposively. With contributions from leading
international experts and extensive references listed in each
chapter, this volume provides the general principles on controlling
the physicochemical behaviors of nanomaterials and managing their
toxicity risks.
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