This book is intended for theoretical and experimental researchers who are interested in ferroelectrics and advanced memory. After introducing readers to dielectric, perovskites, advanced memories, and ferroelectric, it explains quantum simulation. Then, using molecular orbital calculation results, it explains the ferroelectric mechanism in perovskite titanium oxides in concrete terms. Lastly, the book examines the materials designed for high-performance ferroelectrics and discusses the future of high-speed memory.
This book is for both theoretical and experimental chemists to begin quantum molecular orbital calculations for functional materials. First, the theoretical background including the molecular orbital calculation method and modelling are explained. This is followed by an explanation of how to do modelling and calculation and to interpret calculated molecular orbitals, with many research examples in the field of batteries, catalysts, organic molecules and biomolecules. Finally, future trends in computational chemistry are introduced.
Embodying Belonging is the first full-length study of a Okinawan diasporic community in South America and Japan. Under extraordinary conditions throughout the twentieth century (Imperial Japanese rule, the brutal Battle of Okinawa at the end of World War II, U.S. military occupation), Okinawans left their homeland and created various diasporic communities around the world. Colonia Okinawa, a farming settlement in the tropical plains of eastern Bolivia, is one such community that was established in the 1950s under the guidance of the U.S. military administration. Although they have flourished as farm owners in Bolivia, thanks to generous support from the Japanese government since Okinawa’s reversion to Japan in 1972, hundreds of Bolivian-born ethnic Okinawans have left the Colonia in the last two decades and moved to Japanese cities, such as Yokohama, to become manual laborers in construction and manufacturing industries. Based on the author’s multisited field research on the work, education, and community lives of Okinawans in the Colonia and Yokohama, this ethnography challenges the unidirectional model of assimilation and acculturation commonly found in immigration studies. In its vivid depiction of the transnational experiences of Okinawan-Bolivians, it argues that transnational Okinawan-Bolivians underwent the various racialization processes—in which they were portrayed by non-Okinawan Bolivians living in the Colonia and native-born Japanese mainlanders in Yokohama and self-represented by Okinawan-Bolivians themselves—as the physical embodiment of a generalized and naturalized "culture" of Japan, Okinawa, or Bolivia. Racializing narratives and performances ideologically serve as both a cause and result of Okinawan-Bolivians’ social and economic status as successful large-scale farm owners in rural Bolivia and struggling manual laborers in urban Japan. As the most comprehensive work available on Okinawan immigrants in Latin America and ethnic Okinawan "return" migrants in Japan, Embodying Belonging is at once a critical examination of the contradictory class and cultural identity (trans)formations of transmigrants; a rich qualitative study of colonial and postcolonial subjects in diaspora, and a bold attempt to theorize racialization as a social process of belonging within local and global schemes.
This book is for both theoretical and experimental chemists to begin quantum molecular orbital calculations for functional materials. First, the theoretical background including the molecular orbital calculation method and modelling are explained. This is followed by an explanation of how to do modelling and calculation and to interpret calculated molecular orbitals, with many research examples in the field of batteries, catalysts, organic molecules and biomolecules. Finally, future trends in computational chemistry are introduced.
This book is intended for theoretical and experimental researchers who are interested in ferroelectrics and advanced memory. After introducing readers to dielectric, perovskites, advanced memories, and ferroelectric, it explains quantum simulation. Then, using molecular orbital calculation results, it explains the ferroelectric mechanism in perovskite titanium oxides in concrete terms. Lastly, the book examines the materials designed for high-performance ferroelectrics and discusses the future of high-speed memory.
This will help us customize your experience to showcase the most relevant content to your age group
Please select from below
Login
Not registered?
Sign up
Already registered?
Success – Your message will goes here
We'd love to hear from you!
Thank you for visiting our website. Would you like to provide feedback on how we could improve your experience?
This site does not use any third party cookies with one exception — it uses cookies from Google to deliver its services and to analyze traffic.Learn More.