Найти книгу: "Vacuum in Particle Accelerators"


Vacuum in Particle Accelerators Vacuum in Particle Accelerators

Автор: Oleg B. Malyshev

Год издания: 0000

A unique guide on how to model and make the best vacuum chambers Vacuum in Particle Accelerators offers a comprehensive overview of ultra-high vacuum systems that are used in charge particle accelerators. The book?s contributors ? noted experts in the field ? also highlight the design and modeling of vacuum particle accelerators. The book reviews vacuum requirements, identifies sources of gas in vacuum chambers and explores methods of removing them. In addition, Vacuum in Particle Accelerators offers an in-depth explanation of the control of the beam and the beam aperture. In the final part of the book, the focus is on the modelling approaches for vacuum chambers under various operating conditions. This important guide: -Offers a review of vacuum systems in charge particle accelerators -Contains contributions from an international panel of noted experts in the field -Highlights the systems, modelling, and design of vacuum particle accelerators -Includes information on vacuum requirements, beam-gas interactions, cryogenic temperatures, ion induced pressure instability, heavy ion machines -Presents the most up-to-date information on the topic for scientists and engineers Written for vacuum physicists, vacuum engineers, plasma physicists, materials scientists, and engineering scientists, Vacuum Particle Accelerators is an essential reference offering an in-depth exploration of vacuum systems and the modelling and design of charged particle accelerators.
Theory and Practice of Making Foils By Vacuum Deposition Theory and Practice of Making Foils By Vacuum Deposition

Автор: Ulanovskiy I. B.

Год издания: 

This book is the first attempt ever to offer a consistent review of the main stages of a new way to produce foil from metals and alloys through vacuum deposition; the author has created physical models adequately describing this process and enabling engineering calculations of its basic parameters. The results of this study have laid a scientific foundation for the development of commercial scale process of making ultrathin foils, including those from difficult-to-form titanium alloys, as well as for the development of vacuum engineering devices working something of semiconductors. This book aims to draw the attention of materials science experts, students and postgraduate students of technical universities.

Nanoparticles. From Theory to Application Nanoparticles. From Theory to Application

Автор: Gunter Schmid

Год издания: 

Very small particles are able to show astonishing properties. For example, gold atoms can be combined like strings of pearls, while nanoparticles can form one-, two- and three-dimensional layers. These assemblies can be used, for instance, as semiconductors, but other electronic as well as optical properties are possible. An introduction to the booming field of «nanoworld» or «nanoscience», from fundamental principles to their use in novel applications. With its clear structure and comprehensive coverage, backed by numerous examples from recent literature, this is a prime reference for chemists and materials scientists working with and developing nanoparticle systems. A bestselling title in its second edition. A must-have reference for chemists and materials scientists.

Chirality at the Nanoscale. Nanoparticles, Surfaces, Materials and More Chirality at the Nanoscale. Nanoparticles, Surfaces, Materials and More

Автор: David Amabilino B.

Год издания: 

The only standard reference in this exciting new field combines the physical, chemical and material science perspectives in a synergic way. This monograph traces the development of the preparative methods employed to create nanostructures, in addition to the experimental techniques used to characterize them, as well as some of the surprising physical effects. The chapters cover every category of material, from organic to coordination compounds, metals and composites, in zero, one, two and three dimensions. The book also reviews structural, chemical, optical, and other physical properties, finishing with a look at the future for chiral nanosystems.

Engineered Carbohydrate-Based Materials for Biomedical Applications. Polymers, Surfaces, Dendrimers, Nanoparticles, and Hydrogels Engineered Carbohydrate-Based Materials for Biomedical Applications. Polymers, Surfaces, Dendrimers, Nanoparticles, and Hydrogels

Автор: Ravin Narain

Год издания: 

This book addresses the need for a comprehensive book on the design, synthesis, and characterization of synthetic carbohydrate-based polymeric materials along with their biological applications. The first two chapters cover the synthesis and self-assembly of glycopolymers and different techniques for creating these synthetic polymers. Subsequent chapters account for the preparation of block copolymers, branched glycopolymers, glycosurfaces, glycodendrimers, cationic glycopolymers, bioconjugates, glyconanoparticles and hydrogels. While these chapters comprehensively review the synthetic and characterization methods of those carbohydrate-based materials, their biological applications are discussed in detail.

Light Scattering, Size Exclusion Chromatography and Asymmetric Flow Field Flow Fractionation. Powerful Tools for the Characterization of Polymers, Proteins and Nanoparticles Light Scattering, Size Exclusion Chromatography and Asymmetric Flow Field Flow Fractionation. Powerful Tools for the Characterization of Polymers, Proteins and Nanoparticles

Автор: Stepan Podzimek

Год издания: 

A comprehensive, practical approach to three powerful methods of polymer analysis and characterization This book serves as a complete compendium of three important methods widely used for the characterization of synthetic and natural polymers—light scattering, size exclusion chromatography (SEC), and asymmetric flow field flow fractionation (A4F). Featuring numerous up-to-date examples of experimental results obtained by light scattering, SEC, and A4F measurements, Light Scattering, Size Exclusion Chromatography and Asymmetric Flow Field Flow Fractionation takes an all-in-one approach to deliver a complete and thorough explanation of the principles, theories, and instrumentation needed to characterize polymers from the viewpoint of their molar mass distribution, size, branching, and aggregation. This comprehensive resource: Is the only book gathering light scattering, size exclusion chromatography, and asymmetric flow field flow fractionation into a single text Systematically compares results of size exclusion chromatography with results of asymmetric flow field flow fractionation, and how these two methods complement each other Provides in-depth guidelines for reproducible and correct determination of molar mass and molecular size of polymers using SEC or A4F coupled with a multi-angle light scattering detector Offers a detailed overview of the methodology, detection, and characterization of polymer branching Light Scattering, Size Exclusion Chromatography and Asymmetric Flow Field Flow Fractionation should be of great interest to all those engaged in the polymer analysis and characterization in industrial and university research, as well as in manufacturing quality control laboratories. Both beginners and experienced can confidently rely on this volume to confirm their own understanding or to help interpret their results.