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1

Perinot, Glen. Genomic analysis of human papillomavirus types 16 and 18: Production of recombinant plasmid : part I in the production of a recombinant vaccine for human papillomavirus. Sudbury, Ont: Laurentian University, 1993.

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2

PPLA 2003, Messina and Catania, Italy, 18-19 September 2003. Plasma Production by Laser Ablation: PPLA 2003. Singapore: World Scientific Publishing, 2005.

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3

Bertolini, Joseph, Neil Goss, and J. M. Curling. Production of plasma proteins for therapeutic use. Hoboken, N.J: John Wiley & Sons, 2013.

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4

Bertolini, Joseph, Neil Goss, and John Curling, eds. Production of Plasma Proteins for Therapeutic Use. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118356807.

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5

Cham, Yuen-wai. A study of digital printing in plastic card production. London: LCP, 1999.

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6

Formulation, &. Production Conference (1996 Indianapolis Ind ). Powder coating: Formulation & Production Conference : Tuesday, September 17, 1996, Westin Hotel, Indianapolis, IN : conference proceedings. Alexandria, VA (2121 Eisenhower Ave., Suite 401, Alexandria 22314): The Institute, 1996.

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7

Bogenschütz, August Friedrich. Analysis and testing in production of circuit boards and plated plastics. Teddington, Middlesex, England: Finishing Publications, 1985.

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8

Jalufka, N. W. Laser production and heating of plasma for MHD application. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Division, 1988.

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9

Jalufka, N. W. Laser production and heating of plasma for MHD application. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Division, 1988.

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10

Schoukens, A. F. S. The production of refined ferromanganese in a transferred-arc plasma furnace. Randburg, South Africa: Council for Mineral Technology, 1988.

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11

Hegberg, Bruce A. Technologies for recycling post-consumer mixed plastics: Plastic lumber production, emerging separation technologies, waste plastic handlers, and equipment manufacturers. Chicago, Ill. (Box 6998, Chicago 60680): University of Illinois Center for Solid Waste Management and Research, Office of Technology Transfer, School of Public Health, 1991.

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12

International, Meeting on Pulsed Plasma Laser Ablation PPLA (1st 2003 Messina and Catania Italy). Plasma production by laser ablation, PPLA 2003: Messina and Catania, Italy, 18-19 September 2003. Singapore: World Scientific, 2004.

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13

I͡U︡, Druzhinin I., Godunov S. K, and Institut matematiki (Rossiĭskai͡a︡ akademii͡a︡ nauk. Sibirskoe otdelenie), eds. Silʹnye razryvy v magnitnoĭ gidrodinamike. Novosibirsk: Nauka, 1993.

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14

Sidebotham, John Allan. The production and clinical application of a Factor VII clotting assay based on immunodepleted plasma. Manchester: University of Manchester, 1995.

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15

Jin shu su xing cheng xing ji shu jin ji. Beijing Shi: Ji xie gong ye chu ban she, 2008.

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16

Egan, Margaret R. Smoke, carbon monoxide, and hydrogen chloride production from the pyrolysis of conveyor belting and brattice cloth. Washington, D.C. (810 7th St., N.W., Washington 20241-0001): U.S. Dept. of the Interior, Bureau of Mines, 1992.

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17

Kravchenko, Igor', Maksim Glinskiy, Sergey Karcev, Viktor Korneev, and Diana Abdumuminova. Resource-saving plasma technology in the repair of processing equipment. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1083289.

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In the monograph methodological bases of selection of method of coating, design of technological processes of hardening and recovery of the wearing surfaces of parts using a systems engineering analysis and information support technologist. The mathematical model of plasma spraying of materials with different thermal conductivity and methods criteria for evaluation of technical and technological opportunities of a plasma coating method. Describes the methods and results of experimental studies, the analysis of the conditions and causes of loss of efficiency of processing equipment APK. The proposed scientific and methodical approach to the justification of expediency of the recovery and strengthening of the working bodies and parts expensive imported technological equipment. The proposed mathematical model describing the physical processes in plasma coating for various applications. The structure of the algorithm for solving the task of hardening and recovery of worn parts plasma methods on the basis of the integrated CAE system. This monograph is intended for employees of scientific research institutions, specialists of machine-building production and enterprises of technical service, as well as teachers, postgraduates and students of agricultural engineering areas of training.
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18

The first snap-fit handbook: Creating and managing attachments for plastic parts. 2nd ed. Munich: Hanser, 2005.

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19

Adaskin, Anatoliy, Aleksandr Krasnovskiy, and Tat'yana Tarasova. Materials science and technology of metallic, non-metallic and composite materials. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1143245.

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Book 1 of the textbook consists of two parts. Part I describes the structure of metallic, non-metallic, and composite materials. Technologies of production of metal materials are considered: metallurgical production of ferrous and non-ferrous metals; powder metallurgy; technologies of production of non-metallic materials: polymers, glass, graphite; technologies of production of composite materials, including semi-finished products-prepregs, premixes. Part II is devoted to methods for studying the properties of materials. Metal materials, technologies of their hardening by thermal, chemical-thermal treatment, and plastic deformation are considered. The features of organic and inorganic nonmetallic materials, as well as the possibility of changing their properties, are given. Composite materials are widely covered, and the areas of their rational application are shown. Revised chapter 14, which deals with intelligent materials. Meets the requirements of the federal state educational standards of higher education of the latest generation. For bachelors and undergraduates studying in groups of training areas 15.00.00 "Mechanical Engineering" and 22.00.00 "Materials Technologies". It can be used for training graduate students of engineering specialties, as well as for advanced training of engineering and technical workers of machine-building enterprises.
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20

Zaporowski, Bolesław. Przetwarzanie energii w przepływie niskotemperaturowej plazmy w polu magnetycznym. Poznań: Wydawn. Politechniki Poznańskiej, 1993.

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21

Naka, Yūji. Haikibutsu no sukunai junkangata purasutikku no sekkei, seizō gijutsu kaihatsu kenkyū hokokusho: Development of plastic production chain with recycling. [Tokyo]: Kagaku Gijutsu Senryaku Suishin Kikō, 2001.

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22

Swisher, Douglas Lee. Production of ultra-fine grains and evolution of grain boundaries during severe plastic deformation of aluminum and its alloys. Monterey, Calif: Naval Postgraduate School, 2000.

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23

Fukuoka-shi, Japan) International Symposium on Giant Straining Process for Advanced Materials (2010. Production of multifunctional materials using severe plastic deformation: Proceedings of International Symposium on Giant Straining Process for Advanced Materials(GSAM2010). Fukuoka: Kyūshū University Press, 2011.

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24

Mauro, Orazio Di. Soldatini italiani: Produzione in pasta e plastica dal 1930 al 1970 = Italian toy soldiers : composition and plastic production from 1930 to 1970. [Turin, Italy]: Edizioni Lazzaro, 1994.

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25

Pachurin, German. Technology for studying the destruction of structural materials under different loading conditions. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/981296.

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The textbook is devoted to solving topical issues related to the prediction of the effect of plastic deformation on the behavior in various operating conditions of a wide class of metals and alloys. The technology developed by the author for studying the mechanical properties and the process of destruction of plastically treated metal materials under various loading conditions (static at different temperatures, cyclic in air at low, room and elevated temperatures, as well as at room temperature in the presence of a corrosive environment) is described. Meets the requirements of the federal state educational standards of higher education of the latest generation. Addressed to bachelors and undergraduates of higher educational institutions of full-time and part-time education in the areas of training 20.03.01 Technosphere safety" (training profile "Safety of technological processes and production"), 22.03.01 and 22.04.01 "Materials Science and Materials Technology", 22.03.02 and 22.04.02 "Metallurgy", 15.03.01 and 15.04.01 "Mechanical Engineering", 15.05.01 "Design of technological machines and complexes", 15.03.02 "Technological machines and equipment", 15.03.04 and 15.04.04 "Automation of technological processes and production", 17.05.02 "Strelkovo-pushechnoe, artillery and rocket weapons", 15.03.05 "Design and technological support of machine-building industries". It can be useful for scientific and engineering workers of enterprises of automotive, aviation, shipbuilding and other metalworking branches of mechanical engineering, laboratory workers, as well as for training specialists in materials science, metal science and metal forming."
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26

Workshop on Mechanical Reliability of Polymeric Materials and Plastic Packages of IC Devices (1998 Paris, France). Proceedings of the 1998 Workshop on Mechanical Reliability of Polymeric Materials and Plastic Packages of IC Devices: Presented at Hotel Concorde Saint-Lazare, November 29-December 2, 1998, Paris, France. Edited by Suhir Ephraim. New York: American Society of Mechanical Engineers, 1998.

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27

Berins, M. Production of Plastic Films. Springer, 1996.

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28

Teagasc, ed. Crop production under plastic. 2nd ed. Dublin: Teagasc, 1990.

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29

Bertolini, Joseph, Neil Goss, and John Curling. Production of Plasma Proteins for Therapeutic Use. Wiley & Sons, Incorporated, John, 2012.

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30

Bertolini, Joseph, Neil Goss, and John Curling. Production of Plasma Proteins for Therapeutic Use. Wiley & Sons, Incorporated, John, 2012.

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31

Bertolini, Joseph, Neil Goss, and John Curling. Production of Plasma Proteins for Therapeutic Use. Wiley & Sons, Limited, John, 2012.

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32

Bertolini, Joseph, Neil Goss, and John Curling. Production of Plasma Proteins for Therapeutic Use. Wiley & Sons, Incorporated, John, 2012.

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33

Burhanettin, Altan, ed. Severe plastic deformation: Toward bulk production of nanostructured materials. New York: Nova Scince, 2005.

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34

Gunnarsson, Rickard. Titanium oxide nanoparticle production using high power pulsed plasmas. Linköping University Electronic Press, 2016. http://dx.doi.org/10.3384/lic.diva-128622.

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35

Topilnytsky, Petro, Serhiy Boychenko, Andriy Pushak, Victoria Romanchuk, Joseph Lubinin, Igor Trofimov Trofimov, and Oksana Mikosyanchyk. Plastic oils: properties and quality. The centre education literature, 2021. http://dx.doi.org/10.18372/50099.

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The textbook contains information: on the general characteristics and technical requirements for plastic oils; about the composition of plastic oils; about the basic physical and chemical, operational, ecological properties of plastic lubricants and methods of their definition. Considerable attention is paid to the classification, range and labeling of lubricants. The basic technological schemes of production of plastic lubricants are considered. Attention is also paid to the safety and protection of the environment during the production and use of plastic lubricants. The considered textbook plays an important role in the formation of professional knowledge in students of 161 specialties "Chemical Technology and Engineering" and students of higher technical educational institutions of III-IV levels of accreditation of related fields of knowledge. It can be useful for oil and gas professionals and engineers involved in the operation of machinery and the use of fuel, lubricants and technical fluids.
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36

Altan, Burhanettin S. Severe Plastic Deformation: Toward Bulk Productions of Nanostructured Materials. Nova Science Publishers, 2006.

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37

Volova, Tatiana G. Polyhydroxyalkanoates--Plastic Materials of the 21st Century: Production, Properties, and Application. Nova Science Publishers, 2004.

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38

Ronco, Pierre M. Kidney involvement in plasma cell dyscrasias. Edited by Giuseppe Remuzzi. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199592548.003.0150.

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Monoclonal proliferations of the B-cell lineage are characterized by abnormal and uncontrolled expansion of a single clone of B cells at different maturation stages, with a variable degree of differentiation to immunoglobulin-secreting plasma cells. Therefore, they are usually associated with the production and secretion in blood of a monoclonal immunoglobulin and/or a fragment thereof which may become deposited in tissues. These deposits can take the form of casts (in myeloma cast nephropathy), crystals (in myeloma-associated Fanconi syndrome), fibrils (in light-chain and exceptional heavy-chain amyloidosis), or granular precipitates (in monoclonal immunoglobulin deposition disease). They may disrupt organ structure and function, inducing life-threatening complications. All of the pathologic entities related to immunoglobulin deposition principally involve the kidney, which is not only explained by the high levels of renal plasma flow and glomerular filtration rate, but also by the sieving properties of the glomerular capillary wall and by the prominent role of the renal tubule in LC handling and catabolism.The different renal (and other) manifestations are related to the unique physicochemical characteristics of each paraprotein or immunoglobulin fragment, and the rate of their production.
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39

Sustainable Materials Processes And Production. Thames & Hudson Ltd, 2013.

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40

Hare, Gregory Michael Timothy. The physiology of plasma prorenin production and activation in man and rat. 1988.

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41

Inc, ICON Group International. The 2000-2005 Outlook for Plastic Production Excluding Bottles and Plumbing in Europe. Icon Group International, 2001.

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42

Group, The Plastics Research. Plastic Production Equipment in Mexico: A Strategic Entry Report, 1997 (Strategic Planning Series). Icon Group International, Inc., 2005.

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43

Inc, ICON Group International. The 2000-2005 Outlook for Plastic Production Excluding Bottles and Plumbing in Asia. Icon Group International, 2001.

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44

Inc, ICON Group International. The 2000-2005 Outlook for Plastic Production Excluding Bottles and Plumbing in Oceana. Icon Group International, 2001.

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45

ICON, Group International Inc. The 2000-2005 Outlook for Plastic Production Excluding Bottles and Plumbing in Africa. Icon Group International, 2001.

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46

(Editor), Santo Gammino, Angela Maria Mezzasalma (Editor), Fortunato Neri (Editor), and Lorenzo Torrisi (Editor), eds. Plasma Production By Laser Ablation: Ppla 2003, Messina And Catania, Italy 18 19 September 2003. World Scientific Publishing Company, 2004.

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47

Inc, ICON Group International. The 2000-2005 Outlook for Plastic Production Excluding Bottles and Plumbing in Latin America. Icon Group International, 2001.

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48

Birch, Jonathan. Gene Mobility and the Concept of Relatedness. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198733058.003.0006.

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Social behaviour is widespread in the microbial world, yet social evolution theory was mostly developed with multicellular animals in mind. One difference between multicellular organisms and microbes is the prevalence of mobile genetic elements, such as plasmids, in microbial populations. Plasmids are often implicated in the production of so-called public goods, and relatedness may be at the heart of this phenomenon. However, gene mobility introduces a temporal aspect to relatedness: because genotypes can change over the life cycle, two bacteria may share a gene at one time point, but not at some earlier or later time point. This chapter argues that the best concept of relatedness in this context is a diachronic concept that captures the association between actor genotypes at the moment of gene expression and recipient genotypes at the end of the life cycle.
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49

Inc, ICON Group International. The 2000-2005 Outlook for Plastic Production Excluding Bottles and Plumbing in the Middle East. Icon Group International, 2001.

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50

Ady, Hershcovitch, United States. Dept. of Energy. Office of Fusion Energy., United States. Air Force. Office of Scientific Research., U.S. Army Strategic Defense Command., and International Symposium on the Production and Neutralization of Negative Ions and Beams (5th : 1989 : Brookhaven National Laboratory), eds. Production and neutralization of negative ions and beams: Fifth international symposium, Brookhaven, NY 1990. New York: American Institute of Physics, 1990.

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