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1

Wu, Bing. An approach to integrate declarative conceptual integrity rules into database systems with an active mechanism. Manchester: UMIST, 1996.

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2

François, Malburet, red. Mechanical vibrations: Active and passive control. London: ISTE, 2006.

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3

G, Scandalios John, red. Oxidative stress and the molecular biology of antioxidant defenses. Plainview, N.Y: Cold Spring Harbor Laboratory Press, 1997.

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4

1961-, Timofeev Igor, red. Mechanisms of spontaneous active states in the neocortex, 2007. Trivandrum, Kerala, India: Research Signpost, 2007.

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5

Vibration control of active structures: An introduction. Wyd. 3. Berlin: Springer, 2011.

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6

Kozlowski, Angela C. Biologically active ingredients: Demonstrating their mechanisms and proof of efficacy. Carol Stream, IL: Allured Pub Corp, 2009.

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7

T, Soong T., i Constantinou M. C, red. Passive and active structural vibration control in civil engineering. Wien: Springer-Verlag, 1994.

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8

R, Fozard John, i Saxena Pramod R, red. Serotonin--molecular biology, receptors, and functional effects. Basel: Birkhäuser Verlag, 1991.

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9

Preumont, André. Vibration control of active structures: An introduction. Wyd. 2. Dordrecht: Kluwer Academic Publishers, 2002.

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10

Tammi, Kari. Active vibration control of rotor in desktop test environment. Espoo [Finland]: VTT Technical Research Centre of Finland, 2003.

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11

1966-, Miyake Akira, i Shah Priti 1968-, red. Models of working memory: Mechanisms of active maintenance and executive control. Cambridge: Cambridge University Press, 1999.

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12

Meier, G. E. A., i P. R. Viswanath, red. IUTAM Symposium on Mechanics of Passive and Active Flow Control. Dordrecht: Springer Netherlands, 1999. http://dx.doi.org/10.1007/978-94-011-4199-4.

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13

1933-, Sugi Haruo, i Pollack Gerald H, red. Mechanism of myofilament sliding in muscle contraction. New York: Plenum Press, 1993.

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14

Vibration control of active structures: An introduction. Wyd. 2. Dordrecht: Kluwer Academic Publishers, 2002.

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15

Preumont, André. Vibration control of active structures: An introduction. Dordrecht: Kluwer Academic Publishers, 1997.

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16

Scott, Michael A. Active vibration damping of the space shuttle remote manipulator system. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1991.

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17

Baryshev, Ruslan. Proactive library in the information and educational environment of the University. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1123649.

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In the monograph, the University library is presented as a complex system that includes elements of various properties and varying complexity. As in any system, structural change inevitably affects the performance of all its components. In this regard, the library is an element of the information and educational environment of the University, which is designed to support and improve the effectiveness of educational and scientific activities. The article reveals the concept of active University library" as a system for providing information services to the reader in any form and on any medium based on classical and network forms of service based on query advance services. The article analyzes the opportunities provided by the active University library for its users. The mechanism of activation of an electronic library through selective provision of information is considered, and the principle of the influence of an active electronic library on its proactivity is approved. For all those interested in librarianship and Informatization of education."
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18

Preumont, André. Vibration Control of Active Structures: An Introduction. Dordrecht: Springer Netherlands, 1997.

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19

Emanuele, Guglielmino, red. Semi-active suspension control: Improved vehicle ride and road friendliness. London: Springer, 2008.

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20

Kolovsky, M. Z. Nonlinear dynamics of active and passive systems of vibration protection. New York: Springer Verlag, 1999.

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21

Zhang, Guowen, red. Structure Identification and Functional Mechanism of Natural Active Components. MDPI, 2022. http://dx.doi.org/10.3390/books978-3-0365-5596-6.

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22

Itoh, Yasuto, red. Mechanism of Sedimentary Basin Formation - Multidisciplinary Approach on Active Plate Margins. InTech, 2013. http://dx.doi.org/10.5772/50016.

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23

Hor, Lien-l. Genetic studies on the mechanism of periplasmic binding protein-dependent active transport. 1991.

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24

Khisty, Vijaya Jatindrakumar. The mechanism of action of the chaperone SecB during protein export in Escherichia coli. 1995.

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25

Hendrickson, Rebecca C., i Murray A. Raskind. Pharmacological Treatment of Nightmares, Sleep Disturbance, and Daytime Hyperarousal in PTSD: The Role of Prazosin, Other Noradrenergic Modulators, and Sedative Hypnotics or Commonly Used Sedating Medications. Redaktorzy Charles B. Nemeroff i Charles R. Marmar. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190259440.003.0035.

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Disruption of stress-response systems contributes to the pathophysiology of post-traumatic stress disorder (PTSD). Consistent with this, daytime hyperarousal and nighttime sleep disruption, including trauma-related nightmares, are core symptoms of the disorder, often requiring targeted pharmacologic treatment. Although a variety of medications that target sleep–wake and arousal mechanisms are commonly used for this purpose, there remains the best empirical support for prazosin, a brain-active antagonist of the α‎1 noradrenaline receptor, with emerging evidence for doxazosin, a longer-acting medication with the same mechanism of action. This chapter reviews the evidence for use of prazosin and doxazosin as well as for the sedative hypnotics (benzodiazepines, nonbenzodiazepine hypnotics, and related medications), antihistamines, and sedating antidepressants trazodone and nefazodone to address hyperarousal symptoms and trauma-associated nightmares in PTSD. Clinical recommendations for the use of prazosin in PTSD, as well as a discussion of emerging pharmacologic treatments, are also included.
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26

Wood, R. Active Defense Mechanisms in Plants. Springer, 2012.

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Wood, R. Active Defense Mechanisms in Plants. Springer, 2013.

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Wood, R. Active Defense Mechanisms in Plants. Springer, 2012.

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29

Wells, Gregg B. Determination of molecular conformations of spin-labeled molecules by endor spectroscopy: Structure at the active site of an acyl-enzyme of a-chymotrypsin and implications for the reaction mechanism. 1988.

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30

Mechanics of soft active materials. 2009.

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31

Morrison, Harry. Enzyme Active Sites and Their Reaction Mechanisms. Elsevier Science & Technology Books, 2020.

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32

Enzyme Active Sites and their Reaction Mechanisms. Elsevier, 2021. http://dx.doi.org/10.1016/c2019-0-03090-7.

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Morrison, Harry. Enzyme Active Sites and Their Reaction Mechanisms. Elsevier Science & Technology, 2020.

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34

Baz, Amr M. Active and Passive Vibration Damping. Wiley & Sons, Incorporated, John, 2018.

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35

Baz, Amr M. Active and Passive Vibration Damping. Wiley & Sons, Limited, John, 2018.

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36

Baz, Amr M. Active and Passive Vibration Damping. Wiley & Sons, Incorporated, John, 2018.

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37

Preumont, Andre. Active Control of Structures. John Wiley & Sons Inc, 2008.

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38

Fuller, Christopher C., S. J. Elliott i P. A. Nelson. Active Control of Vibration. Academic Press, 1996.

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39

Gruhlke, Martin C. H., Jong H. Kim, Kirkwood M. Land i Luisa Cheng, red. Redox-Active Molecules as Antimicrobials: Mechanisms and Resistance. Frontiers Media SA, 2021. http://dx.doi.org/10.3389/978-2-88971-637-1.

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40

Rahimi, Mahmood Reza, i Soleiman Mosleh. Intensification of Sorption Processes: Active and Passive Mechanisms. Elsevier, 2021.

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41

Rahimi, Mahmood Reza, i Soleiman Mosleh. Intensification of Sorption Processes: Active and Passive Mechanisms. Elsevier, 2021.

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42

Gurgenidze, Davit, i Givi Gavardashvili. Fundamentals of The Ecological-Economic Theory of Integrated Natural Resource Management. Georgian Technical University, 2022. http://dx.doi.org/10.36073/978-9941-28-869-2.

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The main effective indicator of the use of natural resources is the natural capacity, which is determined by the volume of natural resources used and the final products. There are two types (levels) of natural capacity: Macro level - the level of the whole economy and the level of productivity. It is argued that the measurement of the rate of naturalness in dynamics may become one of the main criteria for the transition to solid development. We can distinguish three mechanisms for the implementation of environmental-economic policies: direct regulation (state influence); Economic stimulus (market mechanisms); Mixed mechanisms. The experience of the world in 2010-2020 shows that it is impossible to solve environmental problems only through state intervention or market mechanisms. There are "principal" reasons for the failure of the market mechanism (external, low prices, etc.) and the ineffectiveness of state influence (subsidies, taxes, etc.) in the areas of environmental protection and use of natural resources. In this regard, a mixed mechanism is most acceptable, which allows the implementation of environmental-economic policies, etc., using state influence and market mechanisms. In view of all the above, the monograph "Fundamentals of the Ecological-Economic Theory of Integrated Natural Resource Management" discusses the necessary and necessary theoretical-practical issues, which knowledge will help PhD students, masters and researchers interested in the field of ecology and economics to take an active part in solving the tasks required for the safe operation of Georgia's energy and transport corridors at the modern level.
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43

Krysinski, Tomasz, François Malburet i François Malburet. Mechanical Vibrations: Active and Passive Control. Wiley & Sons, Incorporated, John, 2010.

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44

Active and Passive Vibration Damping. Wiley & Sons, Limited, John, 2019.

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45

Mechanisms of spontaneous active states in the neocortex, 2007. Trivandrum, Kerala, India: Research Signpost, 2007.

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46

Sokoloff, David R., Ronald K. Thornton i Priscilla W. Laws. RealTime Physics : Active Learning Laboratories, Module 1: Mechanics. Wiley & Sons, Incorporated, John, 2011.

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Sokoloff, David R. Mechanics, Module 1, RealTime Physics: Active Learning Laboratories. Wiley, 1998.

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48

Haywood, Raphaëlle D. Radial-velocity Searches for Planets Around Active Stars. Springer, 2016.

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Haywood, Raphaëlle D. Radial-velocity Searches for Planets Around Active Stars. Springer, 2018.

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Haywood, Raphaëlle D. Radial-Velocity Searches for Planets Around Active Stars. Springer London, Limited, 2016.

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