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MOS devices production and along with its advantages it generates radiation defects. Radiation defects produced by ion implantation or another;
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energy ion implantation is the growth of metal particles with a wide size distribution in the thin depth from the irradiated substrate surface;
Vergelijkbare producten zoals Ion-Synthesis of Silver Nanoparticles & their Optical Properties
Ionizing radiation is radiation composed of particles that individually can liberate an electron from an atom or molecule, producing ions;
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of plasmas, ion beams, electron beams and electromagnetic radiation with materials. The book presents state-of-the art research in this field which;
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of polymer modification by high-energy ion beams. It shows how to use ion beam equipment in the polymer industry, as well as how to use it to produce;
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, Molecular Dynamics, Fcc Metals, Defect Structures in Crystals, Radiation Material Science, Nano-Engineering of Materials, Ultrasonic Treatment;
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The first comprehensive overview describing the effects of ionizing radiation on MOS devices, as well as how to design, fabricate, and test;
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the ideal MOS system, physical and electrical properties of high-k oxides, their dielectric constants, and energy offsets to semiconductors;
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induction of genetic variation by gamma rays radiation in garlic, the use of genetic variability in irradiated plants as a source of genetic;
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pulsed radiation, and the influence of the absorption in the blow-off region in irradiated material. Written for engineers, scientists, and;
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with low energy, intermediate energy, high energy, or very high energy; each energy range seeks to investigate different aspects of hadronic;
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experts, this book provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. Special attention is paid;
Vergelijkbare producten zoals Quantum Theory of High-Energy Ion-Atom Collisions
experts, this book provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. Special attention is paid;
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intermediate and high energy ion-atom and ion-molecule collisions. The focus is on the most frequently studied processes: electron capture, ionization;
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obvious fields in which radiation damage can have serious consequences, i.e., degradation of MOS devices and circuits. Zeroing in on vital aspects;
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Lithium-ion batteries are the most promising among the secondary battery technologies, for providing high energy and high power required;
Vergelijkbare producten zoals Rechargeable Lithium-Ion Batteries
energy storage in 2004, over two decades after the invention of lithium-ion batteries. Potassium-ion (or K-ion ) batteries have many advantages;
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involving the radiation physics and strong-field gravity of black holes. In High Energy Radiation from Black Holes, Charles Dermer and Govind Menon;
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limiting barrier for achieving high powerenergy density electrochemical energy storage and generation devices. Hence, ion conducting materials;
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precision ion beam processing now enable applications ranging from nanofabrication, nanopatterning and high-resolution resist lithography, and;
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precision ion beam processing now enable applications ranging from nanofabrication, nanopatterning and high-resolution resist lithography, and;
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high-energy radiation from space. Fulvio Melia introduces topics at the forefront of today's research, including relativistic particles;
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degradation observed in MOS devices and circuits when they are irradiated Explains how circuits are built to deal with radiation, focusing;
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different time and energy scales relevant to the radiation damage of biological targets and ion-beam cancer therapy from the molecular (nano) scale;
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systems irradiated by excimer lasers helps to understand defect generation processes and might eventually help in the design of UV-resistant or UV;
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. Among various types of secondary batteries, lithium-ion batteries are most widely used because of their high energy density, small memory effect;
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