This book is a collection of some of the papers presented at the Sixth International Symposium on Quantum Confinement: Nanostructures Materials and Quantum Devices held September 5-6, 2001 in San Francisco, CA, as part of the 200th Meeting of the Electrochemical Society.
The Chaitanya Vaishnava tradition is famous for its depth of devotion to Krishna, the blue-hued Deity. Chaitanya Vaishnavas are known for having refined the practice and aesthetics of devotion into a sophisticated science. This imposing devotional edifice was constructed upon a solid foundation of philosophical argument and understanding. In this book, Ravi Gupta sheds new light on the contribution of Chaitanya Vaishnavism to the realm of Indian philosophy. He explores the hermeneutical tools employed, the historical resources harnessed, the structure of the arguments made, and the relative success of the endeavor. For most schools of Vaishnavism, the supporting foundation consists of the philosophical resources provided by Vedanta. The Chaitanya tradition is remarkable in its ability to engage in Vedantic discourse and at the same time practice an ecstatic form of devotion to Krishna. The prime architect of this balance was the scholar-devotee Jiva Gosvami (ca. 1517 - 1608). This book analyses Jiva Gosvami's writing concerning the philosophy of the Vedanta tradition. It concludes that Jiva's writing crosses 'disciplinary boundaries', for he brought into dialogue four powerful streams of classical Hinduism: the various systems of Vedanta, the ecstatic bhakti movements, the Puranic commentarial tradition, and the aesthetic rasa theory of Sanskrit poetics. With training in and commitments to all of these traditions, Jiva Gosvami produced a distinctly Chaitanya Vaishnava system of theology.
The advent of semiconductor structures whose characteristic dimensions are smaller than the mean free path of carriers has led to the development of novel devices, and advances in theoretical understanding of mesoscopic systems or nanostructures. This book has been thoroughly revised and provides a much-needed update on the very latest experimental research into mesoscopic devices and develops a detailed theoretical framework for understanding their behaviour. Beginning with the key observable phenomena in nanostructures, the authors describe quantum confined systems, transmission in nanostructures, quantum dots, and single electron phenomena. Separate chapters are devoted to interference in diffusive transport, temperature decay of fluctuations, and non-equilibrium transport and nanodevices. Throughout the book, the authors interweave experimental results with the appropriate theoretical formalism. The book will be of great interest to graduate students taking courses in mesoscopic physics or nanoelectronics, and researchers working on semiconductor nanostructures.
A detailed introduction to interdisciplinary application area of distributed systems, namely the computer support of individuals trying to solve a problem in cooperation with each other but not necessarily having identical work places or working times. The book is addressed to students of distributed systems, communications, information science and socio-organizational theory, as well as to users and developers of systems with group communication and cooperation as top priorities.
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.