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Dynamic Behavior Of Materials Volume 1

Author: Tom Proulx
Publisher: Springer Science & Business Media
ISBN: 9781441982285
Size: 71.11 MB
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Dynamic Behavior of Materials, Volume 1: Proceedings of the 2010 Annual Conference on Experimental and Applied Mechanics, the first volume of six from the Conference, brings together 71 contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Materials Science, including papers on Composite Materials, Dynamic Failure and Fracture, Dynamic Materials Response, Novel Testing Techniques, Low Impedance Materials, Metallic Materials, Response of Brittle Materials, Time Dependent Materials, High Strain Rate Testing of Biological and Soft Materials, Shock and High Pressure Response, Energetic Materials, Optical Techniques for Imaging High Strain Rate Material Response, and Modeling of Dynamic Response.

Scanning Probe Microscopy In Nanoscience And Nanotechnology

Author: Bharat Bhushan
Publisher: Springer Science & Business Media
ISBN: 3642035353
Size: 40.45 MB
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This book presents the physical and technical foundation of the state-of-the-art in applied scanning probe techniques. It constitutes a comprehensive overview of SPM applications. The chapters are written by leading researchers and application scientists.

Nanoelectronic Circuit Design

Author: Niraj K. Jha
Publisher: Springer Science & Business Media
ISBN: 9781441976093
Size: 12.63 MB
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This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanotubes or nanowires) or following an unconventional method (e.g., FinFET or III/V compound-based devices). These nanoscale devices have significant potential to revolutionize the fabrication and integration of electronic systems and scale beyond the perceived scaling limitations of traditional CMOS. While innovations in nanotechnology originate at the individual device level, realizing the true impact of electronic systems demands that these device-level capabilities be translated into system-level benefits. This is the first book to focus on nanoscale circuits and their design issues, bridging the existing gap between nanodevice research and nanosystem design.

Principles Of Electronic Media

Author: William R. Davie
Publisher: Pearson College Division
ISBN: 9780205449750
Size: 44.31 MB
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The professional broadcasting experience of this talented author team offers students considering careers in television, radio, or the Web a firm grounding in the field. Students will gain a basic understanding of the history and technical foundations of electronic media as well as the daily business realities and likely future challenges facing today's media professionals. Throughout the main text and in the stand-out "ProTalk" boxes, students meet industry leaders and visionaries who chart the future of electronic media. The authors' accessible and engaging writing style fosters understanding and encourages critical thinking on the complex issues that surround the way our culture interacts with the broadcasting media. New to this Second EditionNEW 4-color design! The first four-color book in this market gives this high-tech and very vibrant industry the visual appeal it deserves in a textbook. The new "Sidebar" feature unifies boxed material that covers a broad range of valuable material, from industry statistics and organizational charts, to media conglomerates and technological advances. Updated "ProTalk" boxes introduce readers to emerging and established industry leaders in radio, television and Web broadcasting Enhanced coverage of media professionals of diverse backgrounds, such as Native American, African American and Asian American, provide students with an accurate reflection of the broadcasting industry today. New and timely coverage of current events throughout every chapter, including discussions of reporting in Iraq, the Democratic primary race, the 2004 presidential elections, highly publicized court cases, and corporate scandals, give students valuable insights into the realities of working in the industry. Entertainment coverage--from reality TV to specialized radio talk shows--has been updated throughout every chapter, bringing electronic media into the cultural world of students and energizing class discussions Part III: Electronic Media: A Broader View has been restructured to first introduce students to legal and ethical frameworks of the field, and then to the theories and research they will apply on the job. From there students are poised to understand and explore the highly regulated world of public broadcasting and, ultimately, electronic media's role and effects in the world.Praise for "Principles of Electronic Media" "The authors do more than survey the field of electronic media; they encourage students to envision and determine their potential roles within today's media landscape." "Antone J. Silvia, University of Rhode Island" ..".a textbook that could become a staple of students studying electronic media." "Kenneth A Fischer, Southern Illinois University"

Carbon Nanotubes

Author: Ado Jorio
Publisher: Springer Science & Business Media
ISBN: 9783540728658
Size: 14.97 MB
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Building on the success of its predecessor, Carbon Nanotubes: Synthesis, Structure, Properties and Applications, this second volume focuses on those areas that have grown rapidly in the past few years. Contributing authors reflect the multidisciplinary nature of the book and are all leaders in their particular areas of research. Among the many topics they cover are graphene and other carbon-like and tube-like materials, which are likely to affect and influence developments in nanotubes within the next five years. Extensive use of illustrations enables you to better understand and visualize key concepts and processes.

Entropy And Entropy Generation

Author: J.S. Shiner
Publisher: Springer Science & Business Media
ISBN: 9781402004162
Size: 39.84 MB
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Entropy and entropy generation play essential roles in our understanding of many diverse phenomena ranging from cosmology to biology. Their importance is manifest in areas of immediate practical interest such as the provision of global energy as well as in others of a more fundamental flavour such as the source of order and complexity in nature. They also form the basis of most modern formulations of both equilibrium and nonequilibrium thermodynamics. Today much progress is being made in our understanding of entropy and entropy generation in both fundamental aspects and application to concrete problems. The purpose of this volume is to present some of these recent and important results in a manner that not only appeals to the entropy specialist but also makes them accessible to the nonspecialist looking for an overview of the field. This book contains fourteen contributions by leading scientists in their fields. The content covers such topics as quantum thermodynamics, nonlinear processes, gravitational and irreversible thermodynamics, the thermodynamics of Taylor dispersion, higher order transport, the mesoscopic theory of liquid crystals, simulated annealing, information and biological aspects, global energy, photovoltaics, heat and mass transport and nonlinear electrochemical systems. Audience: This work will be of value to physicists, chemists, biologists and engineers interested in the theory and applications of entropy and its generation.

Electron Microscopy Of Nanotubes

Author: Zhong-lin Wang
Publisher: Springer Science & Business Media
ISBN: 9781402073618
Size: 35.21 MB
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Research in carbon nanotubes has reached a horizon that is impacting a variety of fields, such as nanoelectronics, flat panel display, composite materials, sensors, nanodevices and novel instrumentation. The unique structures of the nanotubes result in numerous superior physical and chemical properties, such as the strongest mechanical strength and the highest thermal conductivity, room temperature ballistic quantum conductance, electromechanical coupling, and super surface functionality. Among the various analytical techniques, high-resolution transmission electron microscopy (HRTEM) has played a key role in the discovery and characterization of carbon nanotubes. It may be claimed that carbon nanotubes might not have been discovered without using HRTEM. There is a great need of a book that addresses specifically the theory, techniques and application of electron microscopy and associated techniques for nanotube research. The objective of this book is to fill this gap. The potential of HRTEM is now well received in wide ranging communities such as materials science, physics, chemistry and electrical engineering. TEM is a powerful technique that is indispensable for characterizing nanomaterials, and Electron Microscopy of Nanotubes focuses on the applications of TEM in structural, electronic, and property characterization of carbon nanotubes and demonstrates how a comprehensive application of HRTEM and associated new techniques for nanotube research can be applied to a wide range of materials. The book contains 12 chapters and the authors for the chapters are the world prominent scientists specializing in the field. The contents of the book can be separated into three parts. The first part composed of chapters 1-6 is about the diffraction, imaging and spectroscopy of carbon-based nanotubes. The second part (chapters 7-9) describes the physical property nanomeasurements of carbon nanotubes based on in-situ TEM. The last part is about non-carbon based tubular structures and related structures.

Carbon Nanotube Electronics

Author: Ali Javey
Publisher: Springer Science & Business Media
ISBN: 9780387692852
Size: 75.55 MB
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This book provides a complete overview of the field of carbon nanotube electronics. It covers materials and physical properties, synthesis and fabrication processes, devices and circuits, modeling, and finally novel applications of nanotube-based electronics. The book introduces fundamental device physics and circuit concepts of 1-D electronics. At the same time it provides specific examples of the state-of-the-art nanotube devices.