Numerical Computation of Electric and Magnetic Fields

Numerical Computation of Electric and Magnetic Fields PDF Author: Charles W. Steele
Publisher: Springer Science & Business Media
ISBN: 1468488570
Category : Technology & Engineering
Languages : en
Pages : 234

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Book Description
For well over a decade, the numerical approach to field computation has been gaining progressively greater importance. Analytical methods of field compu tation are, at best, unable to accommodate the very wide variety of configura tions in which fields must be computed. On the other hand, numerical methods can accommodate many practical configurations that analytical methods cannot. With the advent of high-speed digital computers, numerical field computations have finally become practical. However, in order to implement numerical methods of field computation, we need algorithms, numerical methods, and mathematical tools that are largely quite different from those that have been traditionally used with analytical methods. Many of these algorithms have, in fact, been presented in the large number of papers that have been published on this subject in the last two decades. And to some of those who are already experienced in the art of numerical field computations, these papers, in addition to their own original work, are enough to give them the knowledge that they need to perform practical numerical field computations.

Numerical Computation of Electric and Magnetic Fields

Numerical Computation of Electric and Magnetic Fields PDF Author: Charles W. Steele
Publisher: Springer Science & Business Media
ISBN: 1468488570
Category : Technology & Engineering
Languages : en
Pages : 234

Get Book Here

Book Description
For well over a decade, the numerical approach to field computation has been gaining progressively greater importance. Analytical methods of field compu tation are, at best, unable to accommodate the very wide variety of configura tions in which fields must be computed. On the other hand, numerical methods can accommodate many practical configurations that analytical methods cannot. With the advent of high-speed digital computers, numerical field computations have finally become practical. However, in order to implement numerical methods of field computation, we need algorithms, numerical methods, and mathematical tools that are largely quite different from those that have been traditionally used with analytical methods. Many of these algorithms have, in fact, been presented in the large number of papers that have been published on this subject in the last two decades. And to some of those who are already experienced in the art of numerical field computations, these papers, in addition to their own original work, are enough to give them the knowledge that they need to perform practical numerical field computations.

Generation and Computation of Magnetic Fields

Generation and Computation of Magnetic Fields PDF Author: H. Zijlstra
Publisher:
ISBN:
Category : Solids
Languages : en
Pages : 236

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Book Description


Experimental Methods in Magnetism. - 1: Generation and Computation of Magnetic Fields

Experimental Methods in Magnetism. - 1: Generation and Computation of Magnetic Fields PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 250

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Book Description


Experimental Methods in Magnetism

Experimental Methods in Magnetism PDF Author: H. Zijlstra
Publisher:
ISBN:
Category :
Languages : en
Pages : 236

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Book Description


Numerical Computation of Electric and Magnetic Fields

Numerical Computation of Electric and Magnetic Fields PDF Author: Charles W. Steele
Publisher: Springer Science & Business Media
ISBN: 9401571430
Category : Science
Languages : en
Pages : 234

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Book Description
For well over a decade, the numerical approach to field computation has been gaining progressively greater importance. Analytical methods offield compu tation are, at best, unable to accommodate the very wide variety of configura tions in which fields must be computed. On the other hand, numerical methods can accommodate many practical configurations that analytical methods cannot. With the advent of high-speed digital computers, numerical field computations have finally become practical. However, in order to implement numerical methods of field computation, we need algorithms, numerical methods, and mathematical tools that are largely quite different from those that have been traditionally used with analytical methods. Many of these algorithms have, in fact, been presented in the large number of papers that have been published on this subject in the last two decades. And to some of those who are already experienced in the art of numerical field computations, these papers, in addition to their own original work, are enough to give them the knowledge that they need to perform practical numerical field computations.

Experimental Methods in Magnetism: Generation and computation of magnetic fields

Experimental Methods in Magnetism: Generation and computation of magnetic fields PDF Author: H. Zijlstra
Publisher:
ISBN:
Category : Magnetism
Languages : en
Pages : 260

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Book Description


Megagauss Magnetic Field Generation, Its Application To Science And Ultra-high Pulsed-power Technology - Procs Of The Viiith Int'l Conf On Megagauss Magnetic Field Generation And Related Topics

Megagauss Magnetic Field Generation, Its Application To Science And Ultra-high Pulsed-power Technology - Procs Of The Viiith Int'l Conf On Megagauss Magnetic Field Generation And Related Topics PDF Author: Hans J Schneider-muntau
Publisher: World Scientific
ISBN: 9814481971
Category : Science
Languages : en
Pages : 749

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Book Description
The generation of megagauss fields for science and technology is an exciting area at the extremes of parameter space, involving the application and controlled handling of extremely high power and energy densities in small volumes and on short time scales. New physical phenomena, technological challenges, and the selection and development of materials, together create a unique potential and synergy resulting in fascinating discoveries and achievements.This book is a collection of the contributions of an international conference, which assembled the leading scientists and engineers worldwide working on the generation and use of the strongest magnetic fields possible. Other research activities include generators that employ explosives to create ultra-high pulsed power for different applications, such as megavolt or radiation sources. Additional topics are the generation of plasmas and magnetized plasmas for fusion, imploding liners, rail guns, etc.

The generation of high magnetic fields

The generation of high magnetic fields PDF Author: David H. Parkinson
Publisher: Springer
ISBN: 148997069X
Category : Science
Languages : en
Pages : 173

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Book Description


Experimental Methods In Magnetism : Generation And Computation Of Magnetic Fields Part

Experimental Methods In Magnetism : Generation And Computation Of Magnetic Fields Part PDF Author: H. Zijlstra
Publisher:
ISBN:
Category :
Languages : it
Pages : 0

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Book Description


University Physics

University Physics PDF Author: Samuel J. Ling
Publisher:
ISBN: 9789888407613
Category : Science
Languages : en
Pages : 818

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Book Description
University Physics is designed for the two- or three-semester calculus-based physics course. The text has been developed to meet the scope and sequence of most university physics courses and provides a foundation for a career in mathematics, science, or engineering. The book provides an important opportunity for students to learn the core concepts of physics and understand how those concepts apply to their lives and to the world around them. Due to the comprehensive nature of the material, we are offering the book in three volumes for flexibility and efficiency. Coverage and Scope Our University Physics textbook adheres to the scope and sequence of most two- and three-semester physics courses nationwide. We have worked to make physics interesting and accessible to students while maintaining the mathematical rigor inherent in the subject. With this objective in mind, the content of this textbook has been developed and arranged to provide a logical progression from fundamental to more advanced concepts, building upon what students have already learned and emphasizing connections between topics and between theory and applications. The goal of each section is to enable students not just to recognize concepts, but to work with them in ways that will be useful in later courses and future careers. The organization and pedagogical features were developed and vetted with feedback from science educators dedicated to the project. VOLUME II Unit 1: Thermodynamics Chapter 1: Temperature and Heat Chapter 2: The Kinetic Theory of Gases Chapter 3: The First Law of Thermodynamics Chapter 4: The Second Law of Thermodynamics Unit 2: Electricity and Magnetism Chapter 5: Electric Charges and Fields Chapter 6: Gauss's Law Chapter 7: Electric Potential Chapter 8: Capacitance Chapter 9: Current and Resistance Chapter 10: Direct-Current Circuits Chapter 11: Magnetic Forces and Fields Chapter 12: Sources of Magnetic Fields Chapter 13: Electromagnetic Induction Chapter 14: Inductance Chapter 15: Alternating-Current Circuits Chapter 16: Electromagnetic Waves