Plasma Engineering Applications from Aerospace to Bio and Nanotechnology

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1. Verfasser: Keidar, Michael (VerfasserIn)
Format: Elektronisch E-Book
Sprache:English
Veröffentlicht: San Diego Elsevier Science 2013
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500 |a Plasma engineering applies the unique properties of plasmas (ionized gases) to improve processes and performance over many fields, such as materials processing, spacecraft propulsion, and nanofabrication. Plasma Engineering considers this rapidly expanding discipline from a unified standpoint, addressing fundamentals of physics and modeling as well as new real-word applications in aerospace, nanotechnology, and bioengineering. The book starts by reviewing plasma particle collisions, waves, and instabilities, and proceeds to diagnostic tools, such as planar, spherical, and emissive probes, and the electrostatic analyzer, interferometric technique, and plasma spectroscopy. The physics of different types of electrical discharges are considered, including the classical Townsend mechanism of gas electrical breakdown and the Paschen law. Basic approaches and theoretical methodologies for plasma modeling are described, based on the fluid description of plasma solving numerically magnetohydrodynamic (MHD) equations and the kinetic model particle techniques that take into account kinetic interactions among particles and electromagnetic fields. Readers are then introduced to the widest variety of applications in any text on the market. Space propulsion applications such as the Hall thruster, pulsed plasma thrusters, and microthruster are explained. Application of low-temperature plasmas in nanoscience and nanotechnology, another frontier in plasma physics, is covered, including plasma-based techniques for carbon-based nanoparticle synthesis (e.g., fundamental building blocks like single-walled carbon nanotubes and graphene). Plasma medicine, an emerging field studying plasmas for therapeutic applications, is examined as well. The latest original results on cold atmospheric plasma (CAP) applications in medicine are presented, with a focus on the therapeutic potential of CAP with a in selective tumor cell eradication and signaling pathway deregulation 
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Datensatz im Suchindex

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Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
San Diego Elsevier Science 2013
1 Online-Ressource (442 pages) Illustrationen, Diagramme
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References
Plasma engineering applies the unique properties of plasmas (ionized gases) to improve processes and performance over many fields, such as materials processing, spacecraft propulsion, and nanofabrication. Plasma Engineering considers this rapidly expanding discipline from a unified standpoint, addressing fundamentals of physics and modeling as well as new real-word applications in aerospace, nanotechnology, and bioengineering. The book starts by reviewing plasma particle collisions, waves, and instabilities, and proceeds to diagnostic tools, such as planar, spherical, and emissive probes, and the electrostatic analyzer, interferometric technique, and plasma spectroscopy. The physics of different types of electrical discharges are considered, including the classical Townsend mechanism of gas electrical breakdown and the Paschen law. Basic approaches and theoretical methodologies for plasma modeling are described, based on the fluid description of plasma solving numerically magnetohydrodynamic (MHD) equations and the kinetic model particle techniques that take into account kinetic interactions among particles and electromagnetic fields. Readers are then introduced to the widest variety of applications in any text on the market. Space propulsion applications such as the Hall thruster, pulsed plasma thrusters, and microthruster are explained. Application of low-temperature plasmas in nanoscience and nanotechnology, another frontier in plasma physics, is covered, including plasma-based techniques for carbon-based nanoparticle synthesis (e.g., fundamental building blocks like single-walled carbon nanotubes and graphene). Plasma medicine, an emerging field studying plasmas for therapeutic applications, is examined as well. The latest original results on cold atmospheric plasma (CAP) applications in medicine are presented, with a focus on the therapeutic potential of CAP with a in selective tumor cell eradication and signaling pathway deregulation
Includes bibliographical references
TECHNOLOGY & ENGINEERING / Mechanical bisacsh
Plasma engineering fast
Plasma engineering
Plasmatechnik (DE-588)4140353-8 gnd rswk-swf
Plasmaphysik (DE-588)4046259-6 gnd rswk-swf
Plasmaphysik (DE-588)4046259-6 s
Plasmatechnik (DE-588)4140353-8 s
DE-604
Beilis, Isak Sonstige oth
http://www.sciencedirect.com/science/book/9780123859778 Verlag Volltext
spellingShingle Keidar, Michael
Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
TECHNOLOGY & ENGINEERING / Mechanical bisacsh
Plasma engineering fast
Plasma engineering
Plasmatechnik (DE-588)4140353-8 gnd
Plasmaphysik (DE-588)4046259-6 gnd
subject_GND (DE-588)4140353-8
(DE-588)4046259-6
title Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
title_auth Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
title_exact_search Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
title_full Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
title_fullStr Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
title_full_unstemmed Plasma Engineering Applications from Aerospace to Bio and Nanotechnology
title_short Plasma Engineering
title_sort plasma engineering applications from aerospace to bio and nanotechnology
title_sub Applications from Aerospace to Bio and Nanotechnology
topic TECHNOLOGY & ENGINEERING / Mechanical bisacsh
Plasma engineering fast
Plasma engineering
Plasmatechnik (DE-588)4140353-8 gnd
Plasmaphysik (DE-588)4046259-6 gnd
topic_facet TECHNOLOGY & ENGINEERING / Mechanical
Plasma engineering
Plasmatechnik
Plasmaphysik
url http://www.sciencedirect.com/science/book/9780123859778
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