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Dielectric Relaxation in Abo3 Type Ceramic Material

K. N. Singh

ISBN 10: 3659313858 / ISBN 13: 9783659313851
Published by LAP Lambert Academic Publishing
New Condition: New Soft cover
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188 pages. Dimensions: 8.7in. x 5.9in. x 0.4in.Ferroelectricity has been one of the most used and studied phenomena in both scientific and industrial communities. Properties of ferroelectrics materials make them particularly suitable for a wide range of applications, ranging from sensors and actuators to optical or memory devices. Numerous applications using such an effect have been developed. Ferroelectric materials have been able to be adapted to more and more systems in our daily life (ultrasound or thermal imaging, accelerometers, gyroscopes, filters etc. ), and promising breakthrough applications are still under development (nonvolatile memory, optical devices), which make it one of tomorrows most important materials. Ferroelectrics with diffuse phase transition (DPT) characterized by a broad peak in the temperature dependence of dielectric permittivity with a frequency independent peak temperature (Tm) called ferroelectric relaxors. In the last few years, the dielectric and optical properties of relaxor ferroelectrics have been widely investigated for applications in wireless communications, metal-oxide-semiconductor field-effect transistors, and optical and microwave dielectrics. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Bookseller Inventory # 9783659313851

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Bibliographic Details

Title: Dielectric Relaxation in Abo3 Type Ceramic ...

Publisher: LAP Lambert Academic Publishing

Binding: Paperback

Book Condition:New

Book Type: Paperback

About this title

Synopsis:

Ferroelectricity has been one of the most used and studied phenomena in both scientific and industrial communities. Properties of ferroelectrics materials make them particularly suitable for a wide range of applications, ranging from sensors and actuators to optical or memory devices. Numerous applications using such an effect have been developed. Ferroelectric materials have been able to be adapted to more and more systems in our daily life (ultrasound or thermal imaging, accelerometers, gyroscopes, filters etc.), and promising breakthrough applications are still under development (non-volatile memory, optical devices...), which make it one of tomorrow’s most important materials. Ferroelectrics with diffuse phase transition (DPT) characterized by a broad peak in the temperature dependence of dielectric permittivity with a frequency independent peak temperature (Tm) called ferroelectric relaxors. In the last few years, the dielectric and optical properties of relaxor ferroelectrics have been widely investigated for applications in wireless communications, metal-oxide-semiconductor field-effect transistors, and optical and microwave dielectrics.

About the Author:

Dr. K. N. Singh joined as an Assistant Professor in the Department of Physics, Dr. C.V.Raman University, Kota, Bilaspur in Aug. 2012. He earned his doctorate in Material Science from “Advanced Material Research Laboratory” Department of Pure & Applied Physics, Guru Ghasidas Vishwavidyalaya (A Central University) Bilaspur in 2010.

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