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This detailed volume presents a comprehensive technical overview of
DNA nanotechnology with an emphasis on 3D DNA nanostructure design
and applications. Coverage spans from basic design principles for
DNA and RNA nanostructures to their cutting-edge applications in a
variety of fields, with the book divided into basic DNA and RNA
nanostructure design strategies as well as applications utilizing
DNA nanostructures, including but not limited to nanomedicine,
bioimaging, biosensing, nanoplasmonics, nanoelectronics,
nanofabrication, crystallography, biophysics, and analytical
chemistry. Written for the highly successful Methods in Molecular
Biology series, chapters include introductions to their respective
topics, lists of the necessary materials and reagents,
step-by-step, readily reproducible laboratory protocols, and tips
on troubleshooting and avoiding known pitfalls. Comprehensive and
authoritative, 3D DNA Nanostructure: Methods and Protocols provides
the most up-to-date tutorial style overviews and technical style
protocols to benefit researchers in a wide variety of areas.
This book gives an overview on mid-infrared optical glass and
fibers laser, it cover the underlying principle, historic
background, as well as recent advances in materials processing and
enhanced properties for rare earth doped luminescence, spectroscopy
lasers, or optical nonlinearity applications. It describes in great
detail, the preparation of high purity non-oxide IR glass and
fibers to be used as mid-IR fiber laser and supercontinuum sources
for optical fiber spectroscopy. It will be useful for academics,
researchers and engineers in various disciplines who require a
broad introduction to the subject and would like to learn more
about the state-of-the-art and upcoming trends in mid-infrared
fiber source development, particularly for industrial, medical and
military applications.
This detailed volume presents a comprehensive technical overview of
DNA nanotechnology with an emphasis on 3D DNA nanostructure design
and applications. Coverage spans from basic design principles for
DNA and RNA nanostructures to their cutting-edge applications in a
variety of fields, with the book divided into basic DNA and RNA
nanostructure design strategies as well as applications utilizing
DNA nanostructures, including but not limited to nanomedicine,
bioimaging, biosensing, nanoplasmonics, nanoelectronics,
nanofabrication, crystallography, biophysics, and analytical
chemistry. Written for the highly successful Methods in Molecular
Biology series, chapters include introductions to their respective
topics, lists of the necessary materials and reagents,
step-by-step, readily reproducible laboratory protocols, and tips
on troubleshooting and avoiding known pitfalls. Comprehensive and
authoritative, 3D DNA Nanostructure: Methods and Protocols provides
the most up-to-date tutorial style overviews and technical style
protocols to benefit researchers in a wide variety of areas.
This book gives an overview on mid-infrared optical glass and
fibers laser, it cover the underlying principle, historic
background, as well as recent advances in materials processing and
enhanced properties for rare earth doped luminescence, spectroscopy
lasers, or optical nonlinearity applications. It describes in great
detail, the preparation of high purity non-oxide IR glass and
fibers to be used as mid-IR fiber laser and supercontinuum sources
for optical fiber spectroscopy. It will be useful for academics,
researchers and engineers in various disciplines who require a
broad introduction to the subject and would like to learn more
about the state-of-the-art and upcoming trends in mid-infrared
fiber source development, particularly for industrial, medical and
military applications.
Metamaterial Design and Additive Manufacturing covers optimization
design, manufacturing, microstructure, mechanical properties,
acoustic properties, mass-transport properties and application
examples of PMs fabricated by selective laser melting additive
manufacturing technology. The book introduces the definition and
concept of pentamode metamaterials and then describes their
characterization, including manufacturing fidelity, mechanical
response, acoustic properties and so on. Final sections analyze
research situations, problems and applications of additive
manufacturing pentamode metamaterials.
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