Solid-State Electronics and Photonics in Biology and Medicine 3

Solid-State Electronics and Photonics in Biology and Medicine 3 PDF Author: Yu-Lin Wang
Publisher: The Electrochemical Society
ISBN: 160768716X
Category :
Languages : en
Pages : 81

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Solid-State Electronics and Photonics in Biology and Medicine 3

Solid-State Electronics and Photonics in Biology and Medicine 3 PDF Author: Yu-Lin Wang
Publisher: The Electrochemical Society
ISBN: 160768716X
Category :
Languages : en
Pages : 81

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Solid-State Electronics and Photonics in Biology and Medicine 2

Solid-State Electronics and Photonics in Biology and Medicine 2 PDF Author: Yu-Lin Wang
Publisher: The Electrochemical Society
ISBN: 1607686783
Category :
Languages : en
Pages : 75

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Solid-state Electronics and Photonics in Biology and Medicine 5

Solid-state Electronics and Photonics in Biology and Medicine 5 PDF Author: Y.-L. Wang
Publisher: The Electrochemical Society
ISBN: 1607688379
Category : Science
Languages : en
Pages : 107

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Solid-State Electronics and Photonics in Biology and Medicine 4

Solid-State Electronics and Photonics in Biology and Medicine 4 PDF Author: Y.-L. Wang
Publisher: The Electrochemical Society
ISBN: 1607688107
Category :
Languages : en
Pages : 109

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Solid-state Electronics and Photonics in Biology and Medicine 6

Solid-state Electronics and Photonics in Biology and Medicine 6 PDF Author: Y.-L. Wang
Publisher: The Electrochemical Society
ISBN: 1607688719
Category : Science
Languages : en
Pages : 101

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Book Description
This issue of ECS Transactions includes papers based on presentations from the symposium "Solid-state Electronics and Photonics in Biology and Medicine 6," originally held at the 235th ECS Meeting in Dallas, Texas, May 26-30, 2019.

Integrated Microsystems

Integrated Microsystems PDF Author: Krzysztof Iniewski
Publisher: CRC Press
ISBN: 1351833561
Category : Medical
Languages : en
Pages : 762

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Book Description
As rapid technological developments occur in electronics, photonics, mechanics, chemistry, and biology, the demand for portable, lightweight integrated microsystems is relentless. These devices are getting exponentially smaller, increasingly used in everything from video games, hearing aids, and pacemakers to more intricate biomedical engineering and military applications. Edited by Kris Iniewski, a revolutionary in the field of advanced semiconductor materials, Integrated Microsystems: Electronics, Photonics, and Biotechnology focuses on techniques for optimized design and fabrication of these intelligent miniaturized devices and systems. Composed of contributions from experts in academia and industry around the world, this reference covers processes compatible with CMOS integrated circuits, which combine computation, communications, sensing, and actuation capabilities. Light on math and physics, with a greater emphasis on microsystem design and configuration and electrical engineering, this book is organized in three sections—Microelectronics and Biosystems, Photonics and Imaging, and Biotechnology and MEMs. It addresses key topics, including physical and chemical sensing, imaging, smart actuation, and data fusion and management. Using tables, figures, and equations to help illustrate concepts, contributors examine and explain the potential of emerging applications for areas including biology, nanotechnology, micro-electromechanical systems (MEMS), microfluidics, and photonics.

Brain-Computer Interfaces

Brain-Computer Interfaces PDF Author: Theodore W. Berger
Publisher: Springer Science & Business Media
ISBN: 1402087055
Category : Technology & Engineering
Languages : en
Pages : 310

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Book Description
We have come to know that our ability to survive and grow as a nation to a very large degree depends upon our scientific progress. Moreover, it is not enough simply to keep 1 abreast of the rest of the world in scientific matters. We must maintain our leadership. President Harry Truman spoke those words in 1950, in the aftermath of World War II and in the midst of the Cold War. Indeed, the scientific and engineering leadership of the United States and its allies in the twentieth century played key roles in the successful outcomes of both World War II and the Cold War, sparing the world the twin horrors of fascism and totalitarian communism, and fueling the economic prosperity that followed. Today, as the United States and its allies once again find themselves at war, President Truman’s words ring as true as they did a half-century ago. The goal set out in the Truman Administration of maintaining leadership in science has remained the policy of the U. S. Government to this day: Dr. John Marburger, the Director of the Office of Science and Technology (OSTP) in the Executive Office of the President, made remarks to that effect during his 2 confirmation hearings in October 2001. The United States needs metrics for measuring its success in meeting this goal of maintaining leadership in science and technology. That is one of the reasons that the National Science Foundation (NSF) and many other agencies of the U. S.

Optical Interferometry for Biology and Medicine

Optical Interferometry for Biology and Medicine PDF Author: David D. Nolte
Publisher: Springer Science & Business Media
ISBN: 1461408903
Category : Science
Languages : en
Pages : 355

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Book Description
This book presents the fundamental physics of optical interferometry as applied to biophysical, biological and medical research. Interference is at the core of many types of optical detection and is a powerful probe of cellular and tissue structure in interfererence microscopy and in optical coherence tomography. It is also the root cause of speckle and other imaging artefacts that limit range and resolution. For biosensor applications, the inherent sensitivity of interferometry enables ultrasensitive detection of molecules in biological samples for medical diagnostics. In this book, emphasis is placed on the physics of light scattering, beginning with the molecular origins of refraction as light propagates through matter, and then treating the stochastic nature of random fields that ultimately dominate optical imaging in cells and tissue. The physics of partial coherence plays a central role in the text, with a focus on coherence detection techniques that allow information to be selectively detected out of incoherent and heterogeneous backgrounds. Optical Interferometry for Biology and Medicine is divided into four sections. The first covers fundamental principles, and the next three move up successive scales, beginning with molecular interferometry (biosensors), moving to cellular interferometry (microscopy), and ending with tissue interferometry (biomedical). An outstanding feature of the book is the clear presentation of the physics, with easy derivations of the appropriate equations, while emphasizing "rules of thumb" that can be applied by experimental researchers to give semi-quantitative predictions.

Fundamentals of Photonics

Fundamentals of Photonics PDF Author: Bahaa E. A. Saleh
Publisher: Wiley-Interscience
ISBN:
Category : Photography
Languages : en
Pages : 1014

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Book Description
In recent years, photonics has found increasing applications in such areas as communications, signal processing, computing, sensing, display, printing, and energy transport. Now, Fundamentals of Photonics is the first self-contained introductory-level textbook to offer a thorough survey of this rapidly expanding area of engineering and applied physics. Featuring a logical blend of theory and applications, coverage includes detailed accounts of the primary theories of light, including ray optics, wave optics, electromagnetic optics, and photon optics, as well as the interaction of light with matter, and the theory of semiconductor materials and their optical properties. Presented at increasing levels of complexity, these sections serve as building blocks for the treatment of more advanced topics, such as Fourier optics and holography, guidedwave and fiber optics, photon sources and detectors, electro-optic and acousto-optic devices, nonlinear optical devices, fiber-optic communications, and photonic switching and computing. Included are such vital topics as: Generation of coherent light by lasers, and incoherent light by luminescence sources such as light-emitting diodes Transmission of light through optical components (lenses, apertures, and imaging systems), waveguides, and fibers Modulation, switching, and scanning of light through the use of electrically, acoustically, and optically controlled devices Amplification and frequency conversion of light by the use of wave interactions in nonlinear materials Detection of light by means of semiconductor photodetectors Each chapter contains summaries, highlighted equations, problem sets and exercises, and selected reading lists. Examples of real systems are included to emphasize the concepts governing applications of current interest, and appendices summarize the properties of one- and two-dimensional Fourier transforms, linear-systems theory, and modes of linear systems. An Instructor's Manual presenting detailed solutions to all the problems in the book is available from the Wiley editorial department.

Metal Oxides for Next-generation Optoelectronic, Photonic, and Photovoltaic Applications

Metal Oxides for Next-generation Optoelectronic, Photonic, and Photovoltaic Applications PDF Author: Vijay Kumar
Publisher: Elsevier
ISBN: 0323993672
Category : Technology & Engineering
Languages : en
Pages : 676

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Book Description
Metal Oxides for Next Generation Optoelectronic, Photonic and Photovoltaic Applications focuses on the optoelectronic, photonic and photovoltaic behaviors of metallic oxides and closely related phenomena, from elementary principles to the latest findings. Each chapter includes a comprehensive evaluation of the synthesis and characterization of the most relevant metal oxides nanostructures for each application. In addition, there is a focus on methods to tune the materials' properties in order to improve devices performance. This book is suitable for researchers and practitioners in academia and industry working in the disciplines of materials science and engineering, chemistry and physics. Metal oxides are widely used in various optoelectronic devices, photonics, display devices, smart windows, sensors, optical components, energy-saving, and harvesting devices. Each application requires materials with their own specific properties. By controlling the particle size, shape, crystal structure, one can tune various properties of metal oxides viz. bandgap, absorption properties, conductivity, which alter the material for the specific application. - Includes discussions of synthesis and characterization of metal oxides materials for applications in next-generation optoelectronic, photonic and photovoltaic devices - Emphasizes material design strategies of metal oxide nanostructures - Focuses on the optoelectronic, photonic and photovoltaic behaviors of metallic oxides and closely related phenomena, from elementary principles to the latest findings