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E-BooksElectron in Action





Electron in Action
Steve Kinney, "Electron in Action"
English | 2018 | ISBN: 1617294144 | 376 pages | PDF | 14.8 MB



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E-BooksScanning Transmission Electron Microscopy Advanced Characterization Methods for Materials Science Applications





Scanning Transmission Electron Microscopy Advanced Characterization Methods for Materials Science Applications
English | 2021 | ISBN: 0367197367 | 164 pages | True PDF | 12.93 MB
Scanning Transmission Electron Microscopy is focused on discussing the latest approaches in the recording of high-fidelity quantitative annular dark-field (ADF) data. It showcases the application of machine learning in electron microscopy and the latest advancements in image processing and data interpretation for materials notoriously difficult to analyze using scanning transmission electron microscopy (STEM). It also highlights strategies to record and interpret large electron diffraction datasets for the analysis of nanostructures.



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E-BooksMicrowave and Millimeter-Wave Vacuum Electron Devices





Microwave and Millimeter-Wave Vacuum Electron Devices
English | 2020 | ISBN: 1630817287 | 895 pages | True PDF | 264.75 MB
Written by an internationally recognized as an expert on the subject of microwave (MW) tubes, this book presents and describes the many types of microwave tubes, and despite competition from solid-state devices (those using GaN, SiC, et cetera), which continue to be used widely and find new applications in defense, communications, medical, and industrial drying. Helix traveling wave tubes (TWTs), as well as coupled cavity TWTs are covered. Klystrons, and how they work, are described, along with the physics behind it and examples of devices and their uses. Vacuum electron devices are explained in detail and examines the harsh environment that must exist in tubes if they are to operate properly. The secondary emission process and its role in the operation of crossed-field devices is also discussed. The design of collectors for linear-beam tubes, including power dissipation and power recovery, are explored. Discussions of important noise sources and techniques that can be used to minimize their effects are also included. Presented in full color, this book contains a balance of practical and theoretical material so that those new to microwave tubes as well as experienced microwave tube technicians, engineers, and managers can benefit from its use.



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E-BooksElectron Microscopy in Science and Engineering





Electron Microscopy in Science and Engineering
English | 2022 | ISBN: 9811651000 | 153 pages | True PDF EPUB | 130.4 MB
This issue of Direction focuses on the rapid proliferation of electron microscopy (EM) for scientific as well as technological research. The content written by leading experts is intended to provide the capabilities of EM facilities, set at Indian Institute of Technology (IIT) Kanpur to solve various problems and caters to the needs of both internal and external users. The book provides a detailed and comprehensive viewpoint of the basic features and advanced capabilities of EM facilities to the scientific community. A large number of electron microscopes have been installed and utilized by researchers across various engineering and science departments; hence, this volume provides both breadth as well as depth of various EM facilities available at the institute.



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E-BooksCorrelative Light and Electron Microscopy IV





Correlative Light and Electron Microscopy IV
English | 2021 | ISBN: 0128220589 | 452 pages | True pdf, epub | 127.75 MB
Correlative Light and Electron Microscopy IV, Volume 162,a new volume in theMethods in Cell Biologyseries, continues the legacy of this premier serial with quality chapters authored by leaders in the field. Besides the detailed description of protocols for CLEM technologies including time-resolution, Super resolution LM and Volume EM, new chapters cover Workflow (dis)-advantages/spiderweb, Serial section LM + EM, Platinum clusters as CLEM probes, Correlative Light Electron Microscopy with a transition metal complex as a single probe, SEM-TEM-SIMS, HPF-CLEM, A new workflow for high-throughput screening of mitotic mammalian cells for electron microscopy using classic histological dyes, and more.



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E-BooksConquering the Electron The Geniuses, Visionaries, Egomaniacs, and Scoundrels Who Built Our Electronic Age [AudioBook]





Conquering the Electron The Geniuses, Visionaries, Egomaniacs, and Scoundrels Who Built Our Electronic Age [AudioBook]
English | 2020 | ISBN: 9781705201466 |14 hours |MP3|M4B | 388 MB
Conquering the Electron offers listeners a true and engaging history of the world of electronics, beginning with the discoveries of static electricity and magnetism and ending with the creation of the smartphone and the iPad. This book shows the interconnection of each advance to the next on the long journey to our modern-day technologies. Exploring the combination of genius, infighting, and luck that powered the creation of today's electronic age, Conquering the Electron debunks the hero worship so often plaguing the stories of great advances.



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E-BooksThe Enigmatic Electron Electron Behaviour and How It Influences Our Lives





The Enigmatic Electron Electron Behaviour and How It Influences Our Lives
The Enigmatic Electron: Electron Behaviour and How It Influences Our Lives by Ann Jones
English | July 30th, 2021 | ISBN: 1528996267, 1528996259 | 120 pages | True EPUB | 1.00 MB
The electron, discovered in 1897, was found to be a constituent of all atoms. While the nucleus of the atom remains fixed, the electrons are free to move with different amounts of energy. When supplied with more energy, by physical or mechanical means, light is produced when the original energy state is reached.



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E-BooksTheoretical Study of Electron Correlation Driven Superconductivity in Systems with Coexisting Wide and Narrow Bands






Theoretical Study of Electron Correlation Driven Superconductivity in Systems with Coexisting Wide and Narrow Bands
Theoretical Study of Electron Correlation Driven Superconductivity in Systems with Coexisting Wide and Narrow Bands by Daisuke Ogura
English | PDF | 2019 | 122 Pages | ISBN : 9811506663 | 7 MB
This book deals with the study of superconductivity in systems with coexisting wide and narrow bands. It has been previously suggested that superconductivity can be enhanced in systems with coexisting wide and narrow bands when the Fermi level is near the narrow band edge. In this book, the authors study two problems concerning this mechanism in order to: (a) provide a systematic understanding of the role of strong electron correlation effects, and (b) propose a realistic candidate material which meets the ideal criteria for high-Tc superconductivity.



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E-BooksUltraviolet and Soft X-Ray Free-Electron Lasers





Ultraviolet and Soft X-Ray Free-Electron Lasers
Ultraviolet and Soft X-Ray Free-Electron Lasers: Introduction to Physical Principles, Experimental Results, Technological Challenges by Peter Schmüser
English | PDF | 2009 | 215 Pages | ISBN : 3540795715 | 9.1 MB
In the introduction accelerator-based light sources are considered and a comparison is made between free-electron lasers and conventional quantum lasers. The motion and radiation of relativistic electrons in undulator magnets is discussed. The principle of a low-gain free-electron laser is explained and the pendulum equations are introduced that characterize the electron dynamics in the field of a light wave.



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E-BooksSurface Electron Cyclotron Waves in Plasmas





Surface Electron Cyclotron Waves in Plasmas
Surface Electron Cyclotron Waves in Plasmas by Volodymyr Girka
English | PDF | 2019 | 198 Pages | ISBN : 3030171140 | 6.6 MB
This book is the first of its kind devoted to surface waves propagating across an external static magnetic field at harmonics of the electron cyclotron frequency. Based on comprehensive theoretical studies carried out over the course of about forty years, it presents unique material on various characteristics of these transverse waves, namely, dispersion properties and their dependence on numerous design peculiarities of plasma waveguides; damping due to interaction with the plasma surface (the kinetic channel) and collisions between plasma particles (the Ohmic channel); interaction with flows of charged particles moving above the plasma surface; parametric excitation due to the effect of an external radiofrequency field; and their power transfer for sustaining gas discharges. Clarifying numerous complicated mathematical issues it is a valuable resource for postgraduate students and experts in plasma physics, electromagnetic waves, and the kinetic theory of plasmas.



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