Iron Dominated Electromagnets

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Iron Dominated Electromagnets

Author : Jack T. Tanabe
Publisher : World Scientific
Page : 356 pages
File Size : 49,7 Mb
Release : 2005
Category : Science
ISBN : 9789812563279

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Iron Dominated Electromagnets by Jack T. Tanabe Pdf

This unique book, written by a specialist in the field, is devoted to the design of low and medium field electromagnets whose field level and quality (uniformity) are dominated by the pole shape and saturation characteristics of the iron yoke.

Electromagnets

Author : A. N. Mansfield
Publisher : Watchmaker Publishing
Page : 168 pages
File Size : 55,7 Mb
Release : 2002-07
Category : Science
ISBN : 097217866X

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Electromagnets by A. N. Mansfield Pdf

The Electromagnet and Electromagnetic Mechanism

Author : Silvanus Phillips Thompson
Publisher : Unknown
Page : 524 pages
File Size : 48,6 Mb
Release : 1891
Category : Electromagnetism
ISBN : HARVARD:32044018841692

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The Electromagnet and Electromagnetic Mechanism by Silvanus Phillips Thompson Pdf

Magnets

Author : Charles Reginald Underhill
Publisher : Unknown
Page : 496 pages
File Size : 42,9 Mb
Release : 1924
Category : Electromagnets
ISBN : UCAL:$B50821

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Magnets by Charles Reginald Underhill Pdf

Lectures on the Electromagnet

Author : Silvanus Phillips Thompson
Publisher : Unknown
Page : 296 pages
File Size : 41,9 Mb
Release : 1891
Category : Electromagnets
ISBN : UCAL:$B564562

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Lectures on the Electromagnet by Silvanus Phillips Thompson Pdf

Applied Superconductivity

Author : Paul Seidel
Publisher : John Wiley & Sons
Page : 1334 pages
File Size : 44,5 Mb
Release : 2015-03-23
Category : Technology & Engineering
ISBN : 9783527412099

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Applied Superconductivity by Paul Seidel Pdf

This wide-ranging presentation of applied superconductivity, from fundamentals and materials right up to the details of many applications, is an essential reference for physicists and engineers in academic research as well as in industry. Readers looking for a comprehensive overview on basic effects related to superconductivity and superconducting materials will expand their knowledge and understanding of both low and high Tc superconductors with respect to their application. Technology, preparation and characterization are covered for bulk, single crystals, thins fi lms as well as electronic devices, wires and tapes. The main benefit of this work lies in its broad coverage of significant applications in magnets, power engineering, electronics, sensors and quantum metrology. The reader will find information on superconducting magnets for diverse applications like particle physics, fusion research, medicine, and biomagnetism as well as materials processing. SQUIDs and their usage in medicine or geophysics are thoroughly covered, as are superconducting radiation and particle detectors, aspects on superconductor digital electronics, leading readers to quantum computing and new devices.

Principles of Magnetostatics

Author : Richard C. Fernow
Publisher : Cambridge University Press
Page : 315 pages
File Size : 55,5 Mb
Release : 2023-01-31
Category : Science
ISBN : 9781009291149

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Principles of Magnetostatics by Richard C. Fernow Pdf

This 2016 book, now OA, explains the mathematical theory behind the forces and fields resulting from the steady electrical currents.

Solenoids, Electromagnets and Electromagnetic Windings

Author : Charles Reginald Underhill
Publisher : Unknown
Page : 378 pages
File Size : 54,8 Mb
Release : 1921
Category : Electromagnets
ISBN : PRNC:32101048891673

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Solenoids, Electromagnets and Electromagnetic Windings by Charles Reginald Underhill Pdf

Numerical Approximation of the Magnetoquasistatic Model with Uncertainties

Author : Ulrich Römer
Publisher : Springer
Page : 114 pages
File Size : 47,5 Mb
Release : 2016-07-27
Category : Technology & Engineering
ISBN : 9783319412948

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Numerical Approximation of the Magnetoquasistatic Model with Uncertainties by Ulrich Römer Pdf

This book presents a comprehensive mathematical approach for solving stochastic magnetic field problems. It discusses variability in material properties and geometry, with an emphasis on the preservation of structural physical and mathematical properties. It especially addresses uncertainties in the computer simulation of magnetic fields originating from the manufacturing process. Uncertainties are quantified by approximating a stochastic reformulation of the governing partial differential equation, demonstrating how statistics of physical quantities of interest, such as Fourier harmonics in accelerator magnets, can be used to achieve robust designs. The book covers a number of key methods and results such as: a stochastic model of the geometry and material properties of magnetic devices based on measurement data; a detailed description of numerical algorithms based on sensitivities or on a higher-order collocation; an analysis of convergence and efficiency; and the application of the developed model and algorithms to uncertainty quantification in the complex magnet systems used in particle accelerators.

Particle Accelerator Physics

Author : Helmut Wiedemann
Publisher : Springer
Page : 1029 pages
File Size : 48,8 Mb
Release : 2015-07-24
Category : Science
ISBN : 9783319183176

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Particle Accelerator Physics by Helmut Wiedemann Pdf

This book by Helmut Wiedemann is a well-established, classic text, providing an in-depth and comprehensive introduction to the field of high-energy particle acceleration and beam dynamics. The present 4th edition has been significantly revised, updated and expanded. The newly conceived Part I is an elementary introduction to the subject matter for undergraduate students. Part II gathers the basic tools in preparation of a more advanced treatment, summarizing the essentials of electrostatics and electrodynamics as well as of particle dynamics in electromagnetic fields. Part III is an extensive primer in beam dynamics, followed, in Part IV, by an introduction and description of the main beam parameters and including a new chapter on beam emittance and lattice design. Part V is devoted to the treatment of perturbations in beam dynamics. Part VI then discusses the details of charged particle acceleration. Parts VII and VIII introduce the more advanced topics of coupled beam dynamics and describe very intense beams – a number of additional beam instabilities are introduced and reviewed in this new edition. Part IX is an exhaustive treatment of radiation from accelerated charges and introduces important sources of coherent radiation such as synchrotrons and free-electron lasers. The appendices at the end of the book gather useful mathematical and physical formulae, parameters and units. Solutions to many end-of-chapter problems are given. This textbook is suitable for an intensive two-semester course starting at the senior undergraduate level.

Electromagnetic Vibration Energy Harvesting Devices

Author : Dirk Spreemann,Yiannos Manoli
Publisher : Springer Science & Business Media
Page : 211 pages
File Size : 52,5 Mb
Release : 2012-02-17
Category : Technology & Engineering
ISBN : 9789400729438

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Electromagnetic Vibration Energy Harvesting Devices by Dirk Spreemann,Yiannos Manoli Pdf

Electromagnetic vibration transducers are seen as an effective way of harvesting ambient energy for the supply of sensor monitoring systems. Different electromagnetic coupling architectures have been employed but no comprehensive comparison with respect to their output performance has been carried out up to now. Electromagnetic Vibration Energy Harvesting Devices introduces an optimization approach which is applied to determine optimal dimensions of the components (magnet, coil and back iron). Eight different commonly applied coupling architectures are investigated. The results show that correct dimensions are of great significance for maximizing the efficiency of the energy conversion. A comparison yields the architectures with the best output performance capability which should be preferably employed in applications. A prototype development is used to demonstrate how the optimization calculations can be integrated into the design–flow. Electromagnetic Vibration Energy Harvesting Devices targets the designer of electromagnetic vibration transducers who wishes to have a greater in-depth understanding for maximizing the output performance.

The Science and Technology of Particle Accelerators

Author : Rob Appleby,Graeme Burt,James Clarke,Hywel Owen
Publisher : CRC Press
Page : 322 pages
File Size : 54,5 Mb
Release : 2020-12-27
Category : Technology & Engineering
ISBN : 9781351007955

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The Science and Technology of Particle Accelerators by Rob Appleby,Graeme Burt,James Clarke,Hywel Owen Pdf

The Science and Technology of Particle Accelerators provides an accessible introduction to the field, and is suitable for advanced undergraduates, graduate students, and academics, as well as professionals in national laboratories and facilities, industry, and medicine who are designing or using particle accelerators. Providing integrated coverage of accelerator science and technology, this book presents the fundamental concepts alongside detailed engineering discussions and extensive practical guidance, including many numerical examples. For each topic, the authors provide a description of the physical principles, a guide to the practical application of those principles, and a discussion of how to design the components that allow the application to be realised. Features: Written by an interdisciplinary and highly respected team of physicists and engineers from the Cockcroft Institute of Accelerator Science and Technology in the UK Accessible style, with many numerical examples Contains an extensive set of problems, with fully worked solutions available Rob Appleby is an academic member of staff at the University of Manchester, and Chief Examiner in the Department of Physics and Astronomy. Graeme Burt is an academic member of staff at the University of Lancaster, and previous Director of Education at the Cockcroft Institute. James Clarke is head of Science Division in the Accelerator Science and Technology Centre at STFC Daresbury Laboratory. Hywel Owen is an academic member of staff at the University of Manchester, and Director of Education at the Cockcroft Institute. All authors are researchers within the Cockcroft Institute of Accelerator Science and Technology and have extensive experience in the design and construction of particle accelerators, including particle colliders, synchrotron radiation sources, free electron lasers, and medical and industrial accelerator systems.

Particle Physics Reference Library

Author : Stephen Myers
Publisher : Springer Nature
Page : 867 pages
File Size : 52,6 Mb
Release : 2020-01-01
Category : Electronic books
ISBN : 9783030342456

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Particle Physics Reference Library by Stephen Myers Pdf

This third open access volume of the handbook series deals with accelerator physics, design, technology and operations, as well as with beam optics, dynamics and diagnostics. A joint CERN-Springer initiative, the "Particle Physics Reference Library" provides revised and updated contributions based on previously published material in the well-known Landolt-Boernstein series on particle physics, accelerators and detectors (volumes 21A,B1,B2,C), which took stock of the field approximately one decade ago. Central to this new initiative is publication under full open access.

Particle Accelerator Physics

Author : Helmut Wiedemann
Publisher : Springer Science & Business Media
Page : 949 pages
File Size : 51,9 Mb
Release : 2007-05-04
Category : Science
ISBN : 9783540490432

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Particle Accelerator Physics by Helmut Wiedemann Pdf

Particle Accelerator Physics is an in-depth and comprehensive introduction to the field of high-energy particle acceleration and beam dynamics. Part I gathers the basic tools, recalling the essentials of electrostatics and electrodynamics as well as of particle dynamics in electromagnetic fields. Part II is an extensive primer in beam dynamics, followed in Part III by the introduction and description of the main beam parameters. Part IV is devoted to the treatment of perturbations in beam dynamics. Part V discusses the details of charged particle acceleration. Part VI and Part VII introduce the more advanced topics of coupled beam dynamics and the description of very intense beams. Part VIII is an exhaustive treatment of radiation from accelerated charges and introduces important sources of coherent radiation such as synchrotrons and free-electron lasers. Part IX collects the appendices gathering useful mathematical and physical formulae, parameters and units. Solutions to many end-of-chapter problems are given. This textbook is suitable for an intensive two-semester course starting at the advanced undergraduate level.