Author: Stuart Turner
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 380
Book Description
CAS, CERN Accelerator School Superconductivity in Particle Accelerators
Author: Stuart Turner
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 380
Book Description
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 380
Book Description
CAS CERN Accelerator School Superconductivity in Particle Accelerators
Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :
Book Description
Publisher:
ISBN:
Category :
Languages : en
Pages :
Book Description
CAS CERN Accelerator School, Vacuum in Accelerators
Author:
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 420
Book Description
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 420
Book Description
CAS, CERN Accelerator School
Author: Stuart Turner
Publisher: Cern European Organization for Nuclear Research
ISBN:
Category : Science
Languages : en
Pages : 404
Book Description
Publisher: Cern European Organization for Nuclear Research
ISBN:
Category : Science
Languages : en
Pages : 404
Book Description
CAS, CERN Accelerator School
Author:
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 344
Book Description
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 344
Book Description
CAS, CERN Accelerator School, Fifth General Accelerator Physics Course
Author:
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 548
Book Description
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 548
Book Description
Handbook of Superconductivity
Author: David A. Cardwell
Publisher: CRC Press
ISBN: 1000342301
Category : Science
Languages : en
Pages : 881
Book Description
This is the last of three volumes of the extensively revised and updated second edition of the Handbook of Superconductivity. The past twenty years have seen rapid progress in superconducting materials, which exhibit one of the most remarkable physical states of matter ever to be discovered. Superconductivity brings quantum mechanics to the scale of the everyday world. Viable applications of superconductors rely fundamentally on an understanding of these intriguing phenomena and the availability of a range of materials with bespoke properties to meet practical needs. While the first volume covers fundamentals and various classes of materials, the second addresses processing of these into various shapes and configurations needed for applications, and ends with chapters on refrigeration methods necessary to attain the superconducting state and the desired performance. This third volume starts with a wide range of methods permitting one to characterize both the materials and various end products of processing. Subsequently, diverse classes of both large scale and electronic applications are described. Volume 3 ends with a glossary relevant to all three volumes. Key Features: Covers the depth and breadth of the field Includes contributions from leading academics and industry professionals across the world Provides hands-on familiarity with the characterization methods and offers descriptions of representative examples of practical applications A comprehensive reference, the handbook is suitable for both graduate students and practitioners in experimental physics, materials science, and multiple engineering disciplines, including electronic and electrical, chemical, mechanical, metallurgy and others.
Publisher: CRC Press
ISBN: 1000342301
Category : Science
Languages : en
Pages : 881
Book Description
This is the last of three volumes of the extensively revised and updated second edition of the Handbook of Superconductivity. The past twenty years have seen rapid progress in superconducting materials, which exhibit one of the most remarkable physical states of matter ever to be discovered. Superconductivity brings quantum mechanics to the scale of the everyday world. Viable applications of superconductors rely fundamentally on an understanding of these intriguing phenomena and the availability of a range of materials with bespoke properties to meet practical needs. While the first volume covers fundamentals and various classes of materials, the second addresses processing of these into various shapes and configurations needed for applications, and ends with chapters on refrigeration methods necessary to attain the superconducting state and the desired performance. This third volume starts with a wide range of methods permitting one to characterize both the materials and various end products of processing. Subsequently, diverse classes of both large scale and electronic applications are described. Volume 3 ends with a glossary relevant to all three volumes. Key Features: Covers the depth and breadth of the field Includes contributions from leading academics and industry professionals across the world Provides hands-on familiarity with the characterization methods and offers descriptions of representative examples of practical applications A comprehensive reference, the handbook is suitable for both graduate students and practitioners in experimental physics, materials science, and multiple engineering disciplines, including electronic and electrical, chemical, mechanical, metallurgy and others.
CAS, CERN Accelerator School, Fifth Advanced Accelerator Physics Course
Author:
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 582
Book Description
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 582
Book Description
CAS, CERN Accelerator School, Fifth Advanced Accelerator Physics Course
Author: Stuart Turner
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 590
Book Description
Publisher:
ISBN:
Category : Particle accelerators
Languages : en
Pages : 590
Book Description
Cryogenic Heat Management
Author: Jonathan Demko
Publisher: CRC Press
ISBN: 1000579689
Category : Science
Languages : en
Pages : 459
Book Description
Cryogenic engineering (cryogenics) is the production, preservation, and use or application of cold. This book presents a comprehensive introduction to designing systems to deal with heat – effective management of cold, exploring the directing (or redirecting), promoting, or inhibiting this flow of heat in a practical way. It provides a description of the necessary theory, design methodology, and advanced demonstrations (thermodynamics, heat transfer, thermal insulation, fluid mechanics) for many frequently occurring situations in low-temperature apparatus. This includes systems that are widely used such as superconducting magnets for magnetic resonance imaging (MRI), high-energy physics, fusion, tokamak and free electron laser systems, space launch and exploration, and energy and transportation use of liquid hydrogen, as well as potential future applications of cryo-life sciences and chemical industries. The book is written with the assumption that the reader has an undergraduate understanding of thermodynamics, heat transfer, and fluid mechanics, in addition to the mechanics of materials, material science, and physical chemistry. Cryogenic Heat Management: Technology and Applications for Science and Industry will be a valuable guide for those researching, teaching, or working with low-temperature or cryogenic systems, in addition to postgraduates studying the topic. Key features: Presents simplified but useful and practical equations that can be applied in estimating performance and design of energy-efficient systems in low-temperature systems or cryogenics Contains practical approaches and advanced design materials for insulation, shields/anchors, cryogen vessels/pipes, calorimeters, cryogenic heat switches, cryostats, current leads, and RF couplers Provides a comprehensive introduction to the necessary theory and models needed for solutions to common difficulties and illustrates the engineering examples with more than 300 figures
Publisher: CRC Press
ISBN: 1000579689
Category : Science
Languages : en
Pages : 459
Book Description
Cryogenic engineering (cryogenics) is the production, preservation, and use or application of cold. This book presents a comprehensive introduction to designing systems to deal with heat – effective management of cold, exploring the directing (or redirecting), promoting, or inhibiting this flow of heat in a practical way. It provides a description of the necessary theory, design methodology, and advanced demonstrations (thermodynamics, heat transfer, thermal insulation, fluid mechanics) for many frequently occurring situations in low-temperature apparatus. This includes systems that are widely used such as superconducting magnets for magnetic resonance imaging (MRI), high-energy physics, fusion, tokamak and free electron laser systems, space launch and exploration, and energy and transportation use of liquid hydrogen, as well as potential future applications of cryo-life sciences and chemical industries. The book is written with the assumption that the reader has an undergraduate understanding of thermodynamics, heat transfer, and fluid mechanics, in addition to the mechanics of materials, material science, and physical chemistry. Cryogenic Heat Management: Technology and Applications for Science and Industry will be a valuable guide for those researching, teaching, or working with low-temperature or cryogenic systems, in addition to postgraduates studying the topic. Key features: Presents simplified but useful and practical equations that can be applied in estimating performance and design of energy-efficient systems in low-temperature systems or cryogenics Contains practical approaches and advanced design materials for insulation, shields/anchors, cryogen vessels/pipes, calorimeters, cryogenic heat switches, cryostats, current leads, and RF couplers Provides a comprehensive introduction to the necessary theory and models needed for solutions to common difficulties and illustrates the engineering examples with more than 300 figures