Книги з теми "Onboard electronic equipment – Protection"

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1

Palocz-Andresen, Michael. Onboard diagnostics and onboard measurement in the automotive industry, shipbuilding, and aircraft construction. Warrendale, Pa: SAE International, 2012.

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2

Lightning Protection 92 (Conference) (1992 London, England). Lightning Protection 92: Buildings, structures and electronic equipment. Leatherhead: ERA Technology, 1992.

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3

Denny, Hugh W. Transient protection, grounding, and shielding of electronic traffic control equipment. Washington, D.C: Transportation Research Board, National Research Council, 1989.

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4

Ricketts, L. W. Fundamentals of nuclear hardening of electronic equipment. Malabar, Fla: R.E. Krieger Pub. Co., 1986.

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5

Steinberg, Dave S. Preventing thermal cycling and vibration failures in electronic equipment. New York: J. Wiley, 2001.

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6

Lysne, Olav. The Huawei and Snowden Questions: Can Electronic Equipment from Untrusted Vendors be Verified? Can an Untrusted Vendor Build Trust into Electronic Equipment? Cham: Springer Nature, 2018.

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7

Yeh, L. T. Thermal management of telecommunications equipment. New York: ASME Press, 2013.

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8

Boxleitner, Warren. Electrostatic discharge and electronic equipment: A practical guide for designing to prevent ESD problems. New York: IEEE Press, 1989.

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9

American Society of Heating, Refrigerating and Air-Conditioning Engineers. Liquid cooling guidelines for datacom equipment centers. Atlanta, [GA]: ASHRAE, 2014.

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10

Ltd, ERA Technology. Lightning protection 98: Buildings, structures and electronic equipment : conference proceedings 6-7 May 1998, Solihull, UK. Leatherhead: ERA Technology Ltd., 1998.

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11

Wilkinson, Simon. Waste electrical and electronic equipment (WEEE) collection trials in Ireland (2001-WM/MS1-M1): Synthesis report. Johnstown Castle, Co. Wexford: Environmental Protection Agency, 2004.

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12

Dunn, Barrie D. Evaluation of conformal coatings for future spacecraft applications. Paris, France: European Space Agency, 1994.

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13

Association, ESD. ESD Association technical report for the development of an electrostatic discharge control program for the protection of electronic parts, assemblies and equipment: Handbook. [United States?]: ESD Association, 2002.

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14

Cullen, Gerry L. Server room climate & power monitoring: How to protect computer equipment against damage & downtime using low-cost, Web-based devices. Austin, TX: IT Watchdogs, Inc., 2006.

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15

United, States Congress House Committee on Energy and Commerce Subcommittee on Commerce Trade and Consumer Protection. Repairing the 21st century car: Is technology locking the consumer out? : hearing before the Subcommittee on Commerce, Trade, and Consumer Protection of the Committee on Energy and Commerce, House of Representatives, One Hundred Eighth Congress, second session, September 22, 2004. Washington: U.S. G.P.O., 2004.

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16

American, Society of Heating Refrigerating and Air-Conditioning Engineers. Thermal guidelines for data processing environments. 3rd ed. Atlanta, GA: ASHRAE, 2012.

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17

American Society of Heating, Refrigerating and Air-Conditioning Engineers. Thermal guidelines for data processing environments. Atlanta: ASHRAE, 2015.

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18

American, Society of Heating Refrigerating and Air-Conditioning Engineers Inc. Thermal guidelines for data processing environments. Atlanta, GA: ASHRAE, 2004.

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19

Rudie, Norman J. Principles and techniques of radiation hardening. 3rd ed. North Hollywood, Calif. (13000 Raymer St., North Hollywood 91605): Western Periodicals Co., 1986.

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20

McPartland, Brian J. McGraw-Hill's National Electrical Code handbook: Based on the current 2002 National Electrical Code. 2nd ed. New York: McGraw-Hill, 2002.

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21

Sclater, Neil. Electronics technology handbook. New York: McGraw-Hill, 1999.

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22

E, Mitchell W. S., and Institution of Electrical and Electronics Incorporated Engineers (Great Britain), eds. Protection of electronic equipment. London: Institution of Electrical and Electronics Incorporated Engineers, 1989.

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23

Protection of Electronic Computer - Data Processing Equipment. Natl Fire Protection Assn, 1992.

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24

Lightning Protection 98: Buildings, Structures and Electronic Equipment - Conference Proceedings. ERA Technology Ltd, 1998.

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25

IEEE Industry Applications Society. Power Systems Engineering Committee., Institute of Electrical and Electronics Engineers., IEEE-SA Standards Board, and American National Standards Institute, eds. IEEE recommended practice for powering and grounding electronic equipment. New York, N.Y: Institute of Electrical and Electronics Engineers, 2006.

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26

Steinberg, Dave S. Preventing Thermal Cycling and Vibration Failures in Electronic Equipment. Wiley-Interscience, 2001.

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27

Lysne, Olav. The Huawei and Snowden Questions: Can Electronic Equipment from Untrusted Vendors be Verified? Can an Untrusted Vendor Build Trust into Electronic Equipment? Springer, 2018.

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28

(Firm), Schaffner EMC, ed. Electro-magnetic compatability: Interference suppression and simulation : relative to the protection of electronic equipment. Schaffner, 1985.

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29

Electro-magnetic compatibility: Interference suppression and simulation : relative to the protection of electronic equipment. Luterbach: Schaffner Elektronik, 1995.

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30

(Firm), STAT Resources, and Security Equipment Industry Association, eds. The Residential market for electronic security and fire protection systems: National survey. Santa Monica, CA (2800 28th St., Suite 124, Santa Monica 90405): SEIA, 1985.

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31

American Society of Heating Refrigeratin. Liquid Cooling Guidelines for Datacom Equipment Centers. American Society of Heating, Refrigerating &, 2006.

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32

Design considerations for datacom equipment centers. 2nd ed. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2009.

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33

Design considerations for datacom equipment centers. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2005.

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34

How to Protect Your House and Its Contents from Lightning: Surge Protection: IEEE Guide for Surge Protection of Equipment Connected to AC Power and Co. IEEE Computer Society Press, 2005.

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35

1938-, Cohen Richard L., ed. How to protect your house and its contents from lightning: Surge protection : IEEE guide for surge protection of equipment connected to AC power and communication circuits. New York: IEEE Press, 2005.

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36

American Society of Heating, Refrigerating and Air-Conditioning Engineers., ed. Structural and vibration guidelines for datacom equipment centers. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2007.

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37

Repairing the 21st Century Car: Is Technology Locking the Consumer Out?: Hearing Before the Subcommittee on Commerce, Trade, and Consumer Protection o. Not Avail, 2004.

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38

Server Room Climate & Power Monitoring. 48HrBooks Publishers, 2006.

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39

American Society of Heating, Refrigerating and Air-Conditioning Engineers., ed. Thermal guidelines for data processing environments. 2nd ed. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2009.

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40

American Society of Heating, Refrigerating and Air-Conditioning Engineers., ed. High density data centers: Case studies and best practices. Atlanta, GA: American Society of Heating, Refrigerating, and Air-conditioning Engineers, 2008.

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41

Electronic warfare: Established criteria not met for Airborne Self-Protection Jammer production : report to the Chairman, Subcommittee on Federal Services, Post Office, and Civil Service, Committee on Governmental Affairs, U.S. Senate. Washington, D.C: The Office, 1992.

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42

Best practices for datacom facility energy efficiency. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2008.

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43

American Society of Heating, Refrigerating and Air-Conditioning Engineers., ed. Best practices for datacom facility energy efficiency. 2nd ed. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2009.

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44

American Society of Heating, Refrigerating and Air-Conditioning Engineers., ed. Particulate and gaseous contamination in datacom environments. Atlanta, GA: American Society of Heating, Refrigerating, and Air-Conditioning Engineers, 2009.

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45

Particulate and gaseous contamination in datacom environments. Atlanta: ASHRAE, 2014.

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46

McPartland, J. F., and Brian J. McPartland. McGraw-Hill's National Electrical Code Handbook. 2nd ed. Mcgraw-Hill (Tx), 1993.

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47

McPartland, Joseph F., Brian J. McPartland, Joseph McPartland, and Brian McPartland. McGraw-Hill's National Electrical Code® Handbook. 2nd ed. McGraw-Hill Professional, 2002.

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48

McPartland, J. F., and Brian J. McPartland. McGraw-Hill's National Electrical Code Handbook. Mcgraw-Hill (Tx), 1993.

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49

McPartland, Joseph F., Brian J. McPartland, Joseph McPartland, and Brian McPartland. McGraw-Hill's National Electrical Code® Handbook. McGraw-Hill Professional, 2002.

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50

Ufimtseva, Nataliya V., Iosif A. Sternin, and Elena Yu Myagkova. Russian psycholinguistics: results and prospects (1966–2021): a research monograph. Institute of Linguistics, Russian Academy of Sciences, 2021. http://dx.doi.org/10.30982/978-5-6045633-7-3.

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Анотація:
The monograph reflects the problems of Russian psycholinguistics from the moment of its inception in Russia to the present day and presents its main directions that are currently developing. In addition, theoretical developments and practical results obtained in the framework of different directions and research centers are described in a concise form. The task of the book is to reflect, as far as it is possible in one edition, firstly, the history of the formation of Russian psycholinguistics; secondly, its methodology and developed methods; thirdly, the results obtained in different research centers and directions in different regions of Russia; fourthly, to outline the main directions of the further development of Russian psycholinguistics. There is no doubt that in the theoretical, methodological and applied aspects, the main problems and the results of their development by Russian psycholinguistics have no analogues in world linguistics and psycholinguistics, or are represented by completely original concepts and methods. We have tried to show this uniqueness of the problematics and the methodological equipment of Russian psycholinguistics in this book. The main role in the formation of Russian psycholinguistics was played by the Moscow psycholinguistic school of A.A. Leontyev. It still defines the main directions of Russian psycholinguistics. Russian psycholinguistics (the theory of speech activity - TSA) is based on the achievements of Russian psychology: a cultural-historical approach to the analysis of mental phenomena L.S. Vygotsky and the system-activity approach of A.N. Leontyev. Moscow is the most "psycholinguistic region" of Russia - INL RAS, Moscow State University, Moscow State Linguistic University, RUDN, Moscow State Pedagogical University, Moscow State Pedagogical University, Sechenov University, Moscow State University and other Moscow universities. Saint Petersburg psycholinguists have significant achievements, especially in the study of neurolinguistic problems, ontolinguistics. The most important feature of Russian psycholinguistics is the widespread development of psycholinguistics in the regions, the emergence of recognized psycholinguistic research centers - St. Petersburg, Tver, Saratov, Perm, Ufa, Omsk, Novosibirsk, Voronezh, Yekaterinburg, Kursk, Chelyabinsk; psycholinguistics is represented in Cherepovets, Ivanovo, Volgograd, Vyatka, Kaluga, Krasnoyarsk, Irkutsk, Vladivostok, Abakan, Maikop, Barnaul, Ulan-Ude, Yakutsk, Syktyvkar, Armavir and other cities; in Belarus - Minsk, in Ukraine - Lvov, Chernivtsi, Kharkov, in the DPR - Donetsk, in Kazakhstan - Alma-Ata, Chimkent. Our researchers work in Bulgaria, Hungary, Vietnam, China, France, Switzerland. There are Russian psycholinguists in Canada, USA, Israel, Austria and a number of other countries. All scientists from these regions and countries have contributed to the development of Russian psycholinguistics, to the development of psycholinguistic theory and methods of psycholinguistic research. Their participation has not been forgotten. We tried to present the main Russian psycholinguists in the Appendix - in the sections "Scientometrics", "Monographs and Manuals" and "Dissertations", even if there is no information about them in the Electronic Library and RSCI. The principles of including scientists in the scientometric list are presented in the Appendix. Our analysis of the content of the resulting monograph on psycholinguistic research in Russia allows us to draw preliminary conclusions about some of the distinctive features of Russian psycholinguistics: 1. cultural-historical approach to the analysis of mental phenomena of L.S.Vygotsky and the system-activity approach of A.N. Leontiev as methodological basis of Russian psycholinguistics; 2. theoretical nature of psycholinguistic research as a characteristic feature of Russian psycholinguistics. Our psycholinguistics has always built a general theory of the generation and perception of speech, mental vocabulary, linked specific research with the problems of ontogenesis, the relationship between language and thinking; 3. psycholinguistic studies of speech communication as an important subject of psycholinguistics; 4. attention to the psycholinguistic analysis of the text and the development of methods for such analysis; 5. active research into the ontogenesis of linguistic ability; 6. investigation of linguistic consciousness as one of the important subjects of psycholinguistics; 7. understanding the need to create associative dictionaries of different types as the most important practical task of psycholinguistics; 8. widespread use of psycholinguistic methods for applied purposes, active development of applied psycholinguistics. The review of the main directions of development of Russian psycholinguistics, carried out in this monograph, clearly shows that the direction associated with the study of linguistic consciousness is currently being most intensively developed in modern Russian psycholinguistics. As the practice of many years of psycholinguistic research in our country shows, the subject of study of psycholinguists is precisely linguistic consciousness - this is a part of human consciousness that is responsible for generating, understanding speech and keeping language in consciousness. Associative experiments are the core of most psycholinguistic techniques and are important both theoretically and practically. The following main areas of practical application of the results of associative experiments can be outlined. 1. Education. Associative experiments are the basis for constructing Mind Maps, one of the most promising tools for systematizing knowledge, assessing the quality, volume and nature of declarative knowledge (and using special techniques and skills). Methods based on smart maps are already widely used in teaching foreign languages, fast and deep immersion in various subject areas. 2. Information search, search optimization. The results of associative experiments can significantly improve the quality of information retrieval, its efficiency, as well as adaptability for a specific person (social group). When promoting sites (promoting them in search results), an associative experiment allows you to increase and improve the quality of the audience reached. 3. Translation studies, translation automation. An associative experiment can significantly improve the quality of translation, take into account intercultural and other social characteristics of native speakers. 4. Computational linguistics and automatic word processing. The results of associative experiments make it possible to reveal the features of a person's linguistic consciousness and contribute to the development of automatic text processing systems in a wide range of applications of natural language interfaces of computer programs and robotic solutions. 5. Advertising. The use of data on associations for specific words, slogans and texts allows you to predict and improve advertising texts. 6. Social relationships. The analysis of texts using the data of associative experiments makes it possible to assess the tonality of messages (negative / positive moods, aggression and other characteristics) based on user comments on the Internet and social networks, in the press in various projections (by individuals, events, organizations, etc.) from various social angles, to diagnose the formation of extremist ideas. 7. Content control and protection of personal data. Associative experiments improve the quality of content detection and filtering by identifying associative fields in areas subject to age restrictions, personal information, tobacco and alcohol advertising, incitement to ethnic hatred, etc. 8. Gender and individual differences. The data of associative experiments can be used to compare the reactions (and, in general, other features of thinking) between men and women, different social and age groups, representatives of different regions. The directions for the further development of Russian psycholinguistics from the standpoint of the current state of psycholinguistic science in the country are seen by us, first of all:  in the development of research in various areas of linguistic consciousness, which will contribute to the development of an important concept of speech as a verbal model of non-linguistic consciousness, in which knowledge revealed by social practice and assigned by each member of society during its inculturation is consolidated for society and on its behalf;  in the expansion of the problematics, which is formed under the influence of the growing intercultural communication in the world community, which inevitably involves the speech behavior of natural and artificial bilinguals in the new object area of psycholinguistics;  in using the capabilities of national linguistic corpora in the interests of researchers studying the functioning of non-linguistic and linguistic consciousness in speech processes;  in expanding research on the semantic perception of multimodal texts, the scope of which has greatly expanded in connection with the spread of the Internet as a means of communication in the life of modern society;  in the inclusion of the problems of professional communication and professional activity in the object area of psycholinguistics in connection with the introduction of information technologies into public practice, entailing the emergence of new professions and new features of the professional ethos;  in the further development of the theory of the mental lexicon (identifying the role of different types of knowledge in its formation and functioning, the role of the word as a unit of the mental lexicon in the formation of the image of the world, as well as the role of the natural / internal metalanguage and its specificity in speech activity);  in the broad development of associative lexicography, which will meet the most diverse needs of society and cognitive sciences. The development of associative lexicography may lead to the emergence of such disciplines as associative typology, associative variantology, associative axiology;  in expanding the spheres of applied use of psycholinguistics in social sciences, sociology, semasiology, lexicography, in the study of the brain, linguodidactics, medicine, etc. This book is a kind of summarizing result of the development of Russian psycholinguistics today. Each section provides a bibliography of studies on the relevant issue. The Appendix contains the scientometrics of leading Russian psycholinguists, basic monographs, psycholinguistic textbooks and dissertations defended in psycholinguistics. The content of the publications presented here is convincing evidence of the relevance of psycholinguistic topics and the effectiveness of the development of psycholinguistic problems in Russia.

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