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The papers in this volume were selected and revised from among those presented at the conference "Gender and Social Transformation: Global, Transnational, and Local Realities and Perspectives", Beijing, China in 2009. Through case studies and interview data from across the globe we see how intersectionality and inequality are contextualized shaping women's agencies, gender relations, identity, the politics of belonging, power structures, institutional arrangements, and empowerment (self and/or collective) in local communities and cultures influenced by transnational and global networks and processes. Those who experience inequality, the politics of exclusion and social injustice by virtue of gender, ethnicity and/or class and other differences are the most vulnerable in the face of new adversities, including those that occur in response to globalization. Broader theoretical and methodological contexts for these nation- and region-specific studies are provided in essays by leading gender theorists. Divisions of labor, migration, war and peace-building are among the specific topics addressed in papers from China, India, Israel, Korea, Germany, Australia, Turkey and the United States.
Understand the fundamental concepts, theoretical background, major experimental observations, and device applications of graphene photonics with this self-contained text. Systematically and rigorously developing each concept and theoretical model from the ground up, it guides readers through the major topics, from basic properties and band structure to electronic, optical, optoelectronic, and nonlinear optical properties, and plasmonics and photonic devices. The connections between theory, modeling, experiment, and device concepts are demonstrated throughout, and every optical process is analyzed through formal electromagnetic analysis. Suitable for both self-study and a one-semester or one-quarter course, this is the ideal text for graduate students and researchers in photonics, optoelectronics, nanoscience and nanotechnology, and optical and solid-state physics, who are working in this rapidly developing field.
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