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Books by Keyword: Electrical Properties
Books
Edited by:
Xiaohao Wang
Online since: January 2009
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This volume presents a selection of over 98 peer-reviewed papers from the 1st International Conference of CSMNT, held on Nov. 19-22, 2008, in P.R. China.
This volume presents a selection of over 98 peer-reviewed papers from the 1st International Conference of CSMNT, held on Nov. 19-22, 2008, in P.R. China.
Edited by:
Byungsei Jun, Hyungsun Kim, Chanwon Lee, Soo Wohn Lee
Online since: January 2008
Description: This up-to-date collection, “Eco-Materials Processing and Design IX”, covers – on a global scale – the outstanding advances made in investigating, producing and using eco-materials. It furnishes materials scientists and end-users with a valuable source of information and new concepts covering the complete spectrum of ecology, eco-materials, nano-materials, bio-materials, recycling, environmental protection and energy conversion related materials.
Edited by:
Keiichi Katayama, Kazumi Kato, Tadashi Takenaka, Masasuke Takata and Kazuo Shinozaki
Online since: September 2006
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Japan is currently the most active country of all of those carrying out research in the rapidly expanding field of Electroceramics; a field that has tremendous implications for a wide range of high-tech applications.
Japan is currently the most active country of all of those carrying out research in the rapidly expanding field of Electroceramics; a field that has tremendous implications for a wide range of high-tech applications.
Authors:
Pentti O. Kettunen
Online since: August 2006
Description: One of the oldest construction materials is wood which, technically speaking, belongs to the group of polymer matrix composites; one which is conveniently and expertly produced by Nature. Due to its organic cell-type structure, the density of wood remains modest. Thus, as its strength and stiffness can - in certain cases - attain remarkable values, its levels of specific strength and stiffness (absolute strength or stiffness divided by density) can reach magnitudes which are competitive with those of other construction materials. It is demonstrated, for instance, that the specific strength of wood in the axial direction can exceed those of low-carbon steel and concrete. Its specific stiffness can also be comparable to those of aluminum alloys and low-carbon steels, and is better than that of concrete. In constructional design, especially in the dimensioning of supports, the values of specific strength and stiffness are of utmost importance.
Edited by:
Prof. Dragan P. Uskokovic, S.K. Milonjić and D. Raković
Online since: July 2006
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Materials science and engineering is a multidisciplinary area of research which encompasses the physics, chemistry and engineering of every class of material. In recent years, the field has attracted increasing attention, following the discovery of new types of material and their subsequent application in new technologies.
Materials science and engineering is a multidisciplinary area of research which encompasses the physics, chemistry and engineering of every class of material. In recent years, the field has attracted increasing attention, following the discovery of new types of material and their subsequent application in new technologies.
Edited by:
Witold Lojkowski and John R. Blizzard
Online since: July 2004
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Research and development in the field of nanomaterials - thin films, nanowires, nanocrystals and nanostructured bulk materials - has increased very rapidly during recent years. Especially significant has been research in which the structure is closely controlled at the nanometer level in order to achieve the desired functional properties.
Important discoveries have been made, including quantum dots, confinement effects and super-emission, and the prospects for rapid development in these areas are very promising. The results of much of the basic research have been the basis of an astonishing rate of progress in microelectronics. It is therefore expected that the study and development of nanomaterials will provide a firm foundation for a major increase in the number of advanced technologies and for the development of new optoelectronics and photonic devices.
Research and development in the field of nanomaterials - thin films, nanowires, nanocrystals and nanostructured bulk materials - has increased very rapidly during recent years. Especially significant has been research in which the structure is closely controlled at the nanometer level in order to achieve the desired functional properties.
Important discoveries have been made, including quantum dots, confinement effects and super-emission, and the prospects for rapid development in these areas are very promising. The results of much of the basic research have been the basis of an astonishing rate of progress in microelectronics. It is therefore expected that the study and development of nanomaterials will provide a firm foundation for a major increase in the number of advanced technologies and for the development of new optoelectronics and photonic devices.
Edited by:
T. Kimura, T. Takenaka, S. Fujitsu and K. Shinozaki
Online since: August 2003
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Japan is the most active country in carrying out research on Electroceramics. This research field is also rapidly expanding, and has tremendous implications for a wide range of high-tech applications.
Japan is the most active country in carrying out research on Electroceramics. This research field is also rapidly expanding, and has tremendous implications for a wide range of high-tech applications.
Edited by:
R.P. Agarwala
Online since: January 2001
Description: Recent advances in solid-state chemistry have resulted in substantial progress towards achieving a better understanding of the solid state, and have even led to the development of new predictive capabilities in crystal chemistry. Entirely new ways of studying and preparing advanced materials have been the result of pursuing the so-called "soft chemistry" approach to materials science.
Edited by:
R.P. Agarwala
Online since: October 1999
Description: With the continuing evolution of fabrication techniques and new structures for semiconducting materials, the list of new defect phenomena has also increased apace. The present book discusses point defects, defect-assisted diffusion, metal impurity additions, metastable defects, magnetic hyperfine interaction of deep donors in compound semiconductors, and oxygen and hydrogen impurity defects.
Edited by:
N. Mizutani, K. Shinozaki, N. Kamehara, T. Kimura
Online since: June 1999
Description: The research field of Electroceramics is rapidly expanding, and has tremendous implications for a wide range of high-tech applications.
This book presents the latest research results on conductive ceramics; dielectrics; piezo-electric ceramics; ZnO semiconducting ceramics; insulators; batteries and cells; and memory devices.
This book presents the latest research results on conductive ceramics; dielectrics; piezo-electric ceramics; ZnO semiconducting ceramics; insulators; batteries and cells; and memory devices.