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A robust exploration of the basic principles of ferrimagnetic and their applications
In Modern Ferrites: Volume 2, renowned researcher and educator, Vincent G. Harris delivers a comprehensive overview of ferrimagnetic phenomena and discussions of select applications of modern ferrite materials in emerging technologies and applications. Volume 2 explores fundamental properties of ferrite systems, including their structure, chemistry, and magnetism, as well as practical applications, such as permanent magnets; inductors, inverters, and filters; and their use in emerging applications as metamaterials, multiferroics, and biomedical technologies.
In addition to the properties of ferrites, the included resources explore the processing, structure, and property relationships in ferrites as nanoparticles, thin and thick films, compacts, and crystals. The authors discuss how these relationships are key to realizing practical device applications laying the foundation for next generation communications, radar, sensing, and biomedical technologies.
This volume includes:
Perfect for RF engineers and magnetitians working in the fields of RF electronics, radar, communications, and spintronics as well as other emerging technologies.
Modern Ferrites will earn a place on the bookshelves of engineers and scientists interested in the ever-expanding technologies reliant upon ferrite materials and new processing methodologies.
Modern Ferrites Volume 1: Basic Principles, Processing and Properties is also available (ISBN: 9781118971468).
Author: Vincent G. Harris
ISBN-10: 1394156138
ISBN-13: 9781394156139
Publisher: Wiley-IEEE Press
Language: English
Published: 11/14/2022
Pages: 416
Format: Hardcover
Vincent G. Harris, PhD, is an engineer, scientist, educator, inventor, entrepreneur, and science policy fellow and analyst with over 30 years' experience in the development of science and technology of ferrite materials and their diverse applications.
He is a University Distinguished Professor and William Lincoln Smith Chair Professor at Northeastern University, recognized as an international leader in the materials science of RF materials, devices, components, and systems.
His research includes materials design and the study of processing, structure, and properties of a wide range of electronic materials.
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