Libros sobre el tema "MIS devices"

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1

Franke, Jörg, ed. Three-Dimensional Molded Interconnect Devices (3D-MID). München: Carl Hanser Verlag GmbH & Co. KG, 2014. http://dx.doi.org/10.3139/9781569905524.

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2

Zheng, L. Electroluminescence of mid-infrared III-V devices. Manchester: UMIST, 1997.

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3

Franke, Jörg. Three-Dimensional Molded Interconnect Devices (3D-MID). München, Germany: Carl Hanser Verlag GmbH & Co. KG, 2014. http://dx.doi.org/10.1007/978-1-56990-552-4.

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4

Kawasaki, Tōru, Takeo Nakagawa y Tetsuo Yumoto. MID (shashutsu seikei kairo buhin). Tōkyō: Shīemushī, 1997.

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5

International Workshop on Advanced Motion Control (4th 1996 Mie University). AMC '96-Mie: 1996 4th International Workshop on Advanced Motion Control : proceedings, March 18-21, 1996, Mie University, Tsu-City, Mie-Pref., Japan. [New York]: Institute of Electrical and Electronics Engineers, 1996.

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6

Niederhuber, John E. Totally Implantable Venous Access Devices: Management in Mid- and Long-term Clinical Setting. Milano: Springer Milan, 2012.

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7

Ditzian, Jan L. MCS 2 database embedded training: Procedural findings for command and control systems. Alexandria, VA: U.S. Army Research Institute for the Behavioral and Social Sciences, 1989.

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8

Chapter, IEEE Joint MTT/ED/CPMT/COM, IEEE Microwave Theory and Techniques Society., Novosibirskiĭ gosudarstvennyĭ tekhnicheskiĭ universitet y IEEE-Russia Conference on High Power Microwave Electronics (2nd : 1999 : Novosibirsk, Russia), eds. 1999 High power microwave electronics: Measurements, identification, applications, MIA-ME'99 : proceedings of the IEEE-Russia conference : September 21-23, 1999, Novosibirsk, Russia. [Novosibirsk: Novosibirsk State Technical University, 1999.

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9

IEEE-Russia Conference on High Power Microwave Electronics--Measurements, Identification, Applications (2nd 1999 Novosibirsk, Russia). 1999 high power microwave electronics: Measurements, identification, applications, MIA-ME'99 : September 21-23, 1999, Novosibirsk, Russia. [Novosibirsk: Novosibirsk State Technical University, 1999.

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10

Fernandez-Riou, Benoît. Le Forex, introduction au marché des devises: Un marché financier parmi d'autres mais pas comme les autres. Paris: Gualino, 2008.

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11

International Conference on Rapid Thermal Processing for Future Semiconductor Devices (2nd 2001 Ise-Shima, Mie, Japan). Rapid thermal processing for future semiconductor devices: Proceedings of the 2001 International Conference on Rapid Thermal Processing for Future Semiconductor Devices (RTP 2001), held at Ise-Shima, Mie, Japan, November 14-16, 2001. Amsterdam: Elsevier, 2003.

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12

W, Eccleston, Uren M y INFOS '91 (1991 :, eds. Insulating films on semiconductors 1991: Proceedings from the 7th biennial European conference, including satellite workshops on Silicon on Insulator: Materials and Device Technology and The Physics of Hot Electron Degradation in Si MOSFETs held at the University of Liverpool, 2nd to 6th April 1991. Bristol: Adam Hilger, 1991.

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13

International Symposium on Micro Machine and Human Science (6th 1995 Nagoya Municipal Industrial Research Institute). MHS '95, proceedings of the Sixth International Symposium on Micro Machine and Human Science, Nagoya Municipal Industrial Research Institute, October 4-6, 1995. [New York]: Institute of Electrical and Electronics Engineers, 1995.

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14

Min guo shi qi zong shu mu, 1911-1949: Yu yan wen zi fen ce. Beijing: Shu mu wen xian chu ban she, 1986.

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15

Haarmann, Anke y Harald Lemke, eds. Die Keimzelle. Bielefeld, Germany: transcript Verlag, 2021. http://dx.doi.org/10.14361/9783839455500.

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Gemeinsam gärtnern und Kunst leben als utopisches Labor einer gerechten und ökologischen Stadtgesellschaft - das war die Devise des Nachbarschaftsgartens »Keimzelle« (2011-2019) in Hamburg. Die Beiträger*innen des Bandes liefern eine theoretisch fundierte wie literarisch-künstlerische Auseinandersetzung mit dem Potenzial von urbanen Räumen des Selbermachens. Begleitet von einer sachkundigen Diskursgemeinschaft wird das Gärtnern zum Modell einer transformativen Kraft, in der Fragen des Guten Lebens greifbar werden. Und im Zusammenspiel von kritischer Wissenschaft und politischer Initiative werden die Möglichkeiten einer alternativen Stadtentwicklung deutlich. Eine Pflichtlektüre nicht nur für Commoner*innen, Konvivialist*innen und Gärtner*innen!
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16

Mastronardi, Luigi y Luca Romagnoli, eds. Metodologie, percorsi operativi e strumenti per lo sviluppo delle cooperative di comunità nelle aree interne italiane. Florence: Firenze University Press, 2020. http://dx.doi.org/10.36253/978-88-5518-168-6.

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The present essay includes the main results of the research project on community-based cooperatives, promoted in 2018 by Fondosviluppo and FEDAM, and implemented by researchers of University of Molise. The volume highlights the potential and the modes of operating of community-based cooperatives, which carry out a mix of productive and socially useful activities for local community well-being. The research, through a new methodological and operational path, reaches the following results: a) devise a strategy to detect the degree of social, economic and environmental vulnerability levels of Italian inner areas; b) outline the needs of local communities; c) define the role of community-based cooperatives in bridging regional gaps, also identifying their possible policy support.
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17

TIDE Congress (2nd 1995 Paris, France). The European context for assistive technology: Proceedings of the 2nd TIDE Congress, 26-28 April 1995, Paris. Amsterdam: IOS Press, 1995.

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18

Cullen, Kevin. Telecommunications for older people and disabled people in Europe: Preparing for the information society. Amsterdam: IOS Press, 1997.

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19

Cullen, Kevin. Telecommunications for older people and disabled people in Europe: Preparing for the information society. Amsterdam: IOS Press, 1997.

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20

Office, General Accounting. Tax administration: Results of IRS' mid-fiscal year 1989 financial review : report to the Chairman, Subcommittee on Oversight, Committee on Ways and Means, House of Representatives. Washington, D.C: The Office, 1989.

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21

Sean mis discipulos. Cincinnati, Ohio: RCL Benziger, 2014.

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22

Evasion and Escape Devices Produced by MI9, MIS-X, and SOE in World War II. Schiffer Military History, 2015.

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23

High Quality Liquid Crystal Displays and Smart Devices: Surface Alignment, New Technologies and Smart Device Applications. Institution of Engineering & Technology, 2019.

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24

High Quality Liquid Crystal Displays and Smart Devices: Surface Alignment, New Technologies and Smart Device Applications, Volume 2. Institution of Engineering & Technology, 2019.

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25

High Quality Liquid Crystal Displays and Smart Devices: 2 Volume Set. Institution of Engineering & Technology, 2019.

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26

High Quality Liquid Crystal Displays and Smart Devices: Development, Display Applications and Components. Institution of Engineering & Technology, 2019.

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27

Kobayashi, Shunsuke, Yasuhiro Ukai y Shoichi Ishihara. High Quality Liquid Crystal Displays and Smart Devices: Development, Display Applications and Components, Volume 1. Institution of Engineering & Technology, 2019.

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28

Youssef, Mohamed Ait. Aphorismes: Recueil de Mes Devises. Lulu Press, Inc., 2020.

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29

Tournie, Eric y Laurent Cerutti. Mid-Infrared Optoelectronics: Materials, Devices, and Applications. Elsevier Science & Technology, 2019.

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30

Tournie, Eric y Laurent Cerutti. Mid-Infrared Optoelectronics: Materials, Devices, and Applications. Elsevier Science & Technology, 2019.

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31

Most Secret: MI9 Escape and Evasion Devices. Imperial War Museum, 2023.

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32

Three-Dimensional Molded Interconnect Devices (3D-MID). Hanser Verlag, Carl, 2014.

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33

Medical Device Register: 1996 Supplement (Medical Device Register Mid-Year Supplement). Thomson P D R, 1996.

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34

Medical Device Register: 1995 Supplement (Medical Device Register Mid-Year Supplement). Thomson P D R, 1995.

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35

AMC '96-Mie: 1996 4th International Workshop on Advanced Motion Control : Proceedings, March 18-21, 1996, Mie University, Tsu-City, Mie-Pref., Japan. Institute of Electrical and Electronics Engineers, 1996.

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36

Zhou, Zhong-Xuon. Solutions manual for Electronic devices and circuits, discrete and integrated, by M.S. Ghausi. Holt, Rinehart, and Winston, 1985.

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37

Medical Device Register, 1993 Supplement: The Official Directory of Hospital Suppliers (Medical Device Register Mid-Year Supplement). Medical Device Register, 1993.

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38

Chang, Iris J. A handwritten numeral recognition system with multi-level decision scheme (MDS). 1986.

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39

Terahertz And Mid Infrared Radiation Generation Detection And Applications. Springer, 2011.

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40

Whelan, P. E. Medical Device Register, 1990: Mid-Year Supplement: The Official Directory of Hospital Suppliers. Medical Device Register, 1990.

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41

Whelan, P. E. Medical Device Register, 1989: Mid-Year Supplement: The Official Directory of Hospital Suppliers. Medical Device Register, 1989.

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42

Three-dimensional molded interconnect devices (3D-MID): Materials, manufacturing, assembly, and applications for injection molded circuit carriers. Munich: Hanser Publishers, 2014.

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43

Devil's Bargain: The New Spy Thriller from the Former Head of MI5. Bloomsbury Publishing Plc, 2022.

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44

Rimington, Stella. Devil's Bargain: The New Spy Thriller from the Former Head of MI5. Bloomsbury Publishing Plc, 2023.

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45

Dunn, Lauren E., Joshua Z. Willey y Ronald M. Lazar. Neuroprotection for Mechanical Circulatory Support. Editado por David L. Reich, Stephan Mayer y Suzan Uysal. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780190280253.003.0012.

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This chapter examines the adverse neurological events associated with mechanical circulatory support (MCS), which includes left ventricular assist devices (LVAD) and percutaneous devices for cardiac disease. The most frequently encountered neurological events are ischemic and hemorrhagic stroke, as well as intracerebral hemorrhage (ICH), heart failure and cardiovascular disease. The management of acute cerebrovascular conditions in this population poses unique challenges, given concomitant anticoagulation usage, hemodynamically unstable patients, and lack of randomized controlled trials investigating these clinical scenarios. Other acute neurological events include cerebral hyperperfusion and cerebral air embolism. This chapter describes these complications and their risk factors, and the available evidence-based and institutional management strategies.
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46

Microwave and millimeter-wave electronic packaging. Boston: Artech House, 2014.

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47

Perkins, Gavin D. Cardiac massage and blood flow management during cardiac arrest. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0062.

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When cardiac arrest occurs, blood flow to the vital organs diminishes rapidly. Chest compressions are an essential element of cardiopulmonary resuscitation (CPR), yet they achieve, at best, one-third of the normal cardiac output. The speed of initiating CPR, as well as its quality is critical to patient outcomes. Optimal chest characteristics of compressions are defined as pushing hard (depth > 5 cm) and fast (compression rate 100–120/min). Pressure should be released fully between sequential chest compressions and interruptions in chest compressions should be minimized. Even short interruptions in CPR around the time of attempted defibrillation can be harmful. CPR feedback and prompt devices can be used to monitor the quality of CPR. Studies have shown these devices can improve the quality of CPR, but do not improve overall survival. Mechanical chest compression devices may be usefully deployed when it is difficult or unsafe to perform manual CPR, but there is no evidence that the routine deployment of these devices improves outcome. Vasoactive drugs improve coronary perfusion pressure and increase the chances of return of spontaneous circulation. However, there is no definitive evidence that they improve long-term survival. Recent data have raised the possibility that adrenaline may worsen long-term outcomes.
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48

Karzmark, C. J., Robert J. Morton y James Lamb. A Primer on Theory and Operation of Linear Accelerators in Radiation Therapy. Medical Physics Publishing, 2017. http://dx.doi.org/10.54947/9781930524965.

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By the mid-1950s, a linear accelerator suitable for treating deep-seated tumors was built in the Stanford Microwave Laboratory and installed at Stanford Hospital. It served as a prototype for commercial units that were built later. Since that time, medical linear accelerators gained in popularity as major radiation therapy devices, but few basic training materials on their operation had been produced for use by medical professionals. C.J. Karzmark, a radiological physicist at Stanford University, was involved with medical linacs since their development, and he agreed to collaborate with Robert Morton of the Center for Devices and Radiological Health (formerly the Bureau of Radiological Health), U.S. Food and Drug Administration, in writing the first edition of this primer. Since its first appearance, this book has become a classic. This third edition takes into account the significant advances occurring in radiotherapy linacs since the second edition was published in 1998. Again, the level of treating these advances is simplified so that the audience of radiation therapists as well as physicians, engineers, and physicists can benefit.
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49

Joyce, David L. y Lyle D. Joyce. Mechanical Circulatory Support. Oxford University Press, 2019. http://dx.doi.org/10.1093/med/9780190909291.001.0001.

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Mechanical circulatory support (MCS) offers life-saving treatment options for patients with advanced heart failure, cardiogenic shock, and acute cardiopulmonary failure. With the development of short-term, long-term, left-sided, right-sided, biventricular, and cardiopulmonary support options, the complexity surrounding this field has evolved substantially in the past decade. This textbook seeks to provide a logical and systematic framework for managing patients who require MCS therapies. In chapters 2–9, a comprehensive approach to selecting and preparing patients for MCS interventions is described. In chapters 10–23, the range of currently available devices is reviewed with updates on the most up-to-date clinical experiences based on recently published outcomes. Chapters 24–30 describe the current state of the art in perioperative strategies for achieving long-term success. Finally, chapters 31–46 outline the myriad of clinical challenges that often occur in the postoperative period, including some of the frequently encountered adverse events that are unique to the physiology associated with this technology. The fundamental principles included in this textbook will provide a framework for the MCS provider that can serve as a road map amidst the rapidly evolving landscape created by the technology pipeline within this industry.
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50

Vurgaftman, Igor, Matthew P. Lumb y Jerry R. Meyer. Bands and Photons in III-V Semiconductor Quantum Structures. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198767275.001.0001.

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Semiconductor quantum structures are at the core of many photonic devices such as lasers, photodetectors, solar cells etc. To appreciate why they are such a good fit to these devices, we must understand the basic features of their band structure and how they interact with incident light. This book takes the reader from the very basics of III-V semiconductors (some preparation in quantum mechanics and electromagnetism is helpful) and shows how seemingly obscure results such as detailed forms of the Hamiltonian, optical transition strengths, and recombination mechanisms follow. The reader does not need to consult other references to fully understand the material, although a few handpicked sources are listed for those who would like to deepen their knowledge further. Connections to the properties of novel materials such as graphene and transition metal dichalcogenides are pointed out, to help prepare the reader for contributing at the forefront of research. The book also supplies a complete, up-to-date database of the band parameters that enter into the calculations, along with tables of optical constants and interpolation schemes for alloys. From these foundations, the book goes on to derive the characteristics of photonic semiconductor devices (with a focus on the mid-infrared) using the same principles of building all concepts from the ground up, explaining all derivations in detail, giving quantitative examples, and laying out dimensional arguments whenever they can help the reader’s understanding. A substantial fraction of the material in this book has not appeared in print anywhere else, including journal publications.
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