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1

Wesson, Caren L., Lynn S. Fuchs, Gerald Tindal, and Doug Marston. "Increasing Efficiency." TEACHING Exceptional Children 20, no. 1 (September 1987): 46–47. http://dx.doi.org/10.1177/004005998702000112.

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2

Crawford, Mark C., and Thomas Romer. "Increasing Efficiency." Mechanical Engineering 139, no. 12 (December 1, 2017): 37. http://dx.doi.org/10.1115/1.2017-dec-5.

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This article discusses the technology used at the John W. Turk Jr. Power Plant in Fulton, Ark., to tackle the challenges of raising the pressure and temperature of the steam to new heights. The Turk plant is the first in the United States where the final steam conditions exceed both the critical pressure and a temperature of 1,100°F. Operating as an ultrasupercritical boiler, the Turk plant has the highest net plant efficiency of any solid fuel power plant in the United States. In this plant, Southwestern Electric Power Company tapped Babcock & Wilcox to design, supply, and erect the 600-MW advanced supercritical steam generator. To best optimize efficiency, the design team selected a single reheat cycle with elevated steam pressure and temperature. Babcock & Wilcox engineers also employed computational fluid dynamics modeling to place burners and overfire air ports to make the best use of low-sulfur coal.
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3

Jamshedovna, Kurbanova Rakhima. "Increasing Efficiency of Catering Enterprises through Modernization." International Journal of Psychosocial Rehabilitation 24, no. 4 (April 30, 2020): 6818–27. http://dx.doi.org/10.37200/ijpr/v24i4/pr2020493.

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4

Halimovich, Yuldashev Abdusamat, and Ermatov Axror Baxtiyorjon Ogli. "Increasing Learning Efficiency Using Adaptive Testing Technology." American Journal of Engineering And Techonology 03, no. 02 (February 17, 2021): 31–41. http://dx.doi.org/10.37547/tajet/volume03issue02-05.

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Purpose: The article describes a set of software developed for adaptive testing technology in the implementation of an objective assessment of students' knowledge. There is also information about the possibility of computerizing education, reducing the unproductive live work of teachers, preserving the methodological potential of experienced professors, installing computer software for management. Methods: It is noted that the experiments were carried out by 2nd year students of the Andijan Machine-Building Institute in the direction of "Ground transport systems and their operation." Results: The research results are presented in the form of some data by means of mathematical statistical processing. The Pearson, Kolmagorov and Romanovsky criteria were also used to check the accuracy of the study results. Conclusion: it is stated that a software package aimed at creating a technology for remote and adaptive testing without the participation of the human factor will allow processing the results of experiments in educational and research centers and achieving them in practice.
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5

Lecce, James G. "Increasing Sow Efficiency." Journal of Animal Science 63, no. 4 (October 1, 1986): 1274. http://dx.doi.org/10.2527/jas1986.6341274x.

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6

Slutzky, Marc W. "Increasing power efficiency." Nature Biomedical Engineering 4, no. 10 (October 2020): 937–38. http://dx.doi.org/10.1038/s41551-020-00631-7.

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7

Tukhtamisheva, Ainur. "Renovation of Industrial Buildings by Increasing Energy Efficiency." Journal of Advanced Research in Dynamical and Control Systems 12, SP3 (February 28, 2020): 785–91. http://dx.doi.org/10.5373/jardcs/v12sp3/20201318.

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8

Yoon, Yong J., and Martine Quinzii. "Increasing Returns and Efficiency." Southern Economic Journal 60, no. 2 (October 1993): 538. http://dx.doi.org/10.2307/1060121.

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9

Bill, Karen, John Koch, Pierre Kwan, Adrienne Menniti, and Justine Abrook. "Increasing Filter Removal Efficiency." Proceedings of the Water Environment Federation 2016, no. 11 (January 1, 2016): 523–34. http://dx.doi.org/10.2175/193864716819707085.

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10

Oesterlin, Peter, and Andreas Purath. "Increasing the Photovoltaic Efficiency." Laser Technik Journal 7, no. 1 (January 2010): 25–27. http://dx.doi.org/10.1002/latj.201090003.

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11

Wu, Shuo-En, and Ya-Ping Hsieh. "Increasing The Efficiency Of Graphene-Based Schottky-Barrier Devices." Advanced Materials Letters 10, no. 2 (December 19, 2018): 132–35. http://dx.doi.org/10.5185/amlett.2019.2183.

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12

Galkin, O. V. "INCREASING OF THE EXPRESSION OF RECOMBINANT scFv-ANTIBODIES EFFICIENCY." Biotechnologia Acta 10, no. 5 (October 2017): 19–29. http://dx.doi.org/10.15407/biotech10.05.019.

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13

Avcı, Murat, and Adem Yılmaz. "INCREASING EFFICIENCY BY INTEGRATING THERMOLECTRIC MATERIALS INTO FUEL CELL." E-journal of New World Sciences Academy 14, no. 3 (July 22, 2019): 104–11. http://dx.doi.org/10.12739/nwsa.2019.14.3.1a0435.

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14

Kuddusovna, Rakhmonova Sharofat. "Increasing the Efficiency of Pedagogical Activity: Structural and Functional Approach." International Journal of Psychosocial Rehabilitation 24, no. 4 (April 30, 2020): 6337–41. http://dx.doi.org/10.37200/ijpr/v24i4/pr2020443.

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15

Yershina, A. K. "A METHOD FOR INCREASING THE EFFICIENCY OF A WIND TURBINE." Eurasian Physical Technical Journal 17, no. 2 (December 24, 2020): 73–77. http://dx.doi.org/10.31489/2020no2/73-77.

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The article discusses the possibilities of improving the energy efficiency of wind turbines. A brief analysis of the current state of development of alternative energy, in particular wind energy in Kazakhstan, is considered. It is shown that an increase in the power of a wind - power plant is possible due to the use of a system of simultaneously rotating rotors. A brief description of the Bidarier-2 wind turbine construction, which can significantly increase the power removed from the wind flow, is given. The possibility of further increasing the efficiency of the Bidarrieus-2 wind turbine by means of a concentrator is discussed. The unique method for the speed controlling of the wind flow with the help of sliding flaps of the guide concentrator in order to improve the performance of the wind turbine at high wind speed is proposed first time.
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16

JEVTIĆ, Petronije, Yousef Mohamed Ali RAMADAN, Mohamed Omar ELSAYAH, and Nada ŽIVANOVIĆ. "INCREASING EFFICIENCY IN THE PRODUCTION INDUSTRY USING THE REENGINEERING METHOD." EKONOMIKA I UPRAVLENIE: PROBLEMY, RESHENIYA 1, no. 1 (2021): 132–39. http://dx.doi.org/10.36871/ek.up.p.r.2021.01.01.020.

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Анотація:
Today, manufacturing companies, on a global level, are facing major changes that cause a complex form of successful business. Given the rapid growth of the IT information industry, high technology in complex industries, complex production processes, know – how and other innovations, increasing efficiency should be a strategic goal of all developed companies in the world. Basically, the business management of these industries is aimed at increasing efficiency by applying efficient methods and techniques that give good results in engineering. This primarily refers to those techniques that today in a complex time of business, can give a high quality approach to business management, highly efficient organization and high quality products and services that will conquer world markets today and in the future. The concept of TQM – total quality management throughout the company worldwide, originated from Japanese companies in the 1970's and quickly spread to all manufacturing companies in the world. On that basis, it can be said that the strategic intention, assessment and goal of the path of each management that will lead the business towards the fulfillment of market laws of business. One of the most important methods of the TQM concept is Business Process Reengineering, which brings fundamental business improvements to both the main and ancillary processes of industrial business.
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17

Jonibekovna, Nishonova Dilnavoz. "The Role Of Module Teaching System In Increasing Lesson Efficiency." American Journal of Social Science and Education Innovations 03, no. 05 (May 7, 2021): 140–44. http://dx.doi.org/10.37547/tajssei/volume03issue05-25.

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This article analyses the work being done and achievements in the field of modular training, which is one of the most pressing issues in the education system of the country. The requirements and rules required for modular training, the purpose and essence of modular training technology are explained.
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18

Magaril, E. R., R. Z. Magaril, and L. V. Trushkova. "INCREASING THE EFFICIENCY OF PYROLYSIS." Oil and Gas Studies, no. 6 (December 30, 2015): 61–68. http://dx.doi.org/10.31660/0445-0108-2015-6-61-68.

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It is shown that pyrolysis process selectivity for ethylene can be increased at decreasing the condensation products output and suppressing the formation of pyrocarbon by adding 2 % hydrogen mass to the raw material. It is also proved that increasing the pyrolysis process efficiency is possible when propane fraction containing propadiene is recirculated into the pyrolysis raw material, which accelerates the process at low temperatures and suppresses the output of condensation products.
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19

Chemerkin, Yury. "Increasing Security Guidelines’ Framework Efficiency." International Journal for Information Security Research 3, no. 4 (December 1, 2013): 354–63. http://dx.doi.org/10.20533/ijisr.2042.4639.2013.0041.

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20

Golubeva, Svetlana S., and Maria V. Golubnickenko. "Increasing Enterprise Efficiency Through Outsourcing." Izvestiya of Saratov University. New Series. Series Economics. Management. Law 19, no. 4 (2019): 377–86. http://dx.doi.org/10.18500/1994-2540-2019-19-4-377-386.

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21

Yanushkyavichus, V., and A. Dumchene. "Increasing work efficiency of nurses." Ukrainian Journal of Occupational Health 2008, no. 1 (March 31, 2008): 60–63. http://dx.doi.org/10.33573/ujoh2008.01.060.

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22

Hesse, Max, Oleg Popov, and Holger Lieberwirth. "Increasing efficiency by selective comminution." Minerals Engineering 103-104 (April 2017): 112–26. http://dx.doi.org/10.1016/j.mineng.2016.09.003.

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23

Ockhammar, Hilde Cathrine Böhle, Kristina Miras Wardell, and Julius Hreinsson. "Increasing efficiency of sperm cryobanking." Reproductive BioMedicine Online 37 (May 2018): e13-e14. http://dx.doi.org/10.1016/j.rbmo.2018.04.024.

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24

Thomas, Andreas. "Increasing the efficiency of water." World Pumps 2013, no. 1 (January 2013): 38–39. http://dx.doi.org/10.1016/s0262-1762(13)70032-4.

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25

Lewis, Creighton, Nicole Restauri, and Toshimasa Clark. "Strategies for Increasing Radiologist Efficiency." Current Problems in Diagnostic Radiology 48, no. 2 (March 2019): 103–4. http://dx.doi.org/10.1067/j.cpradiol.2018.12.001.

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26

Tuohy, Jim. "Increasing competitive intelligence system efficiency." Competitive Intelligence Review 2, no. 2 (1991): 38–39. http://dx.doi.org/10.1002/cir.3880020219.

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27

Schmitz, H. "Collective efficiency and increasing returns." Cambridge Journal of Economics 23, no. 4 (July 1, 1999): 465–83. http://dx.doi.org/10.1093/cje/23.4.465.

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28

Suchilin, V. A., L. V. Sumzina, and A. V. Maksimov. "Method for Refrigerators Efficiency Increasing." IOP Conference Series: Materials Science and Engineering 262 (November 2017): 012121. http://dx.doi.org/10.1088/1757-899x/262/1/012121.

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29

Bosner, Nela. "Increasing efficiency of inverse iteration." ANNALI DELL'UNIVERSITA' DI FERRARA 54, no. 2 (October 3, 2008): 203–16. http://dx.doi.org/10.1007/s11565-008-0046-0.

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30

Russell, Hannah G., and Mike S. Tankersley. "Increasing Clinic Efficiency: Lean Allergy." Journal of Allergy and Clinical Immunology: In Practice 7, no. 8 (November 2019): 2946–47. http://dx.doi.org/10.1016/j.jaip.2019.08.029.

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31

Murphy, Catherine M. "Increasing Efficiency Through Outfit Planning." Journal of Ship Production 5, no. 01 (February 1, 1989): 1–9. http://dx.doi.org/10.5957/jsp.1989.5.1.1.

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Outfit planning provides a means to increase productivity and schedule enhancements through zone outfitting, group technology, and prefabrication. Puget Sound Naval Shipyard has gained an understanding of outfit planning through publications by the Maritime Administration's National Shipbuilding Research Program. In an attempt to increase efficiency, Puget Sound Naval Shipyard is using outfit planning methods to overhaul, alter, and repair U.S. naval ships. One project targeted for outfit planning is the forward-end electronic package on submarines. This paper describes Puget Sound's efforts to use outfit planning concepts in developing work packages for the forward end ship alterations.
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32

Lindenthal, Lorenz, Richard Buchinger, Hedda Drexler, Florian Schrenk, Thomas Ruh, and Christoph Rameshan. "Exsolution Catalysts—Increasing Metal Efficiency." Encyclopedia 1, no. 1 (February 25, 2021): 249–60. http://dx.doi.org/10.3390/encyclopedia1010023.

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Exsolution catalysts are perovskite oxide-based materials that can exsolve catalytically active dopant elements as nanoparticles covering the surface, while the perovskite backbone can act as a stable support material. Thus, under proper conditions, a highly catalytically active and stable catalyst surface can be achieved. For many catalytic materials, precious metals or non-abundant elements play a key role in high catalytic activity. As these elements are often expensive or their supply is ecologically and ethically problematic, the replacement, or at the least reduction in the necessary amount used, is a common aim of current research. One strategy to do so is utilizing exsolution catalysts, as the active elements can be very selectively exsolved, and hence only very small doping amounts are sufficient for excellent results. This approach enables catalyst design with very high active metal efficiency.
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33

AZIZI, BAHARAK. "Increasing the Efficiency of Active Human Resources in Agriculture through Education." Journal of Research on the Lepidoptera 50, no. 3 (September 30, 2019): 376–82. http://dx.doi.org/10.36872/lepi/v50i3/201117.

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34

Jorgewad, Rajesh M. "Increasing Efficiency of the Dye Degrading Bacteria by Plasmid Transfer Method." SSR Institute of International Journal of Life Sciences 5, no. 2 (March 2019): 2218–23. http://dx.doi.org/10.21276/ssr-iijls.2019.5.2.3.

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35

Deineko, Liudmyla, Mykola Sychevskiy, Olena Tsyplitska, Nadiia Grebeniuk, and Oleksandr Deineko. "Increasing resource efficiency in the industrial complex ensuring environmental human rights." Environmental Economics 12, no. 1 (December 28, 2021): 124–39. http://dx.doi.org/10.21511/ee.12(1).2021.11.

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The close relationship between industrial development and environmental pollution is considered the main problem of negative climate changes and the deterioration of life quality leading to an increase in mortality. In this regard, the protection of environmental human rights is of great importance. The paper aims to assess the trends of industrial influence on the human environment and the level of protection of environmental human rights in different countries through reviewing and analysis of the set of relevant studies. The paper brings novelty exploring an array of objectives for protecting human environmental rights in the framework of the Sustainable Development Goals, implementation of a circular and resource-efficient economy, together with the Industry 4.0 technologies for industrialized countries, including Ukraine. Most studies consider contradictions between the economic and environmental goals of both businesses and the state the main obstacle for the ecologization of industrial production. The economic feasibility of introducing more resource-efficient business models has been proved. The impact of Ukrainian industrial companies on the environment and the state of human environmental rights protection is studied. The results of the study allow stating that the resource and energy inefficiency of industrial technology in the country, as well as the weakness of state institutions in the implementation of reforms for sustainable development, is a fundamental threat to human rights and a healthy life.
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36

Kudelina, Olga V., Olga N. Tulupova, and Аnna V. Lozhnikova. "Increasing Healthcare Efficiency in Tomsk Oblast." Vestnik Tomskogo gosudarstvennogo universiteta. Ekonomika, no. 50 (2020): 56–75. http://dx.doi.org/10.17223/19988648/50/4.

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37

., Khuda Bakhsh, Bashir Ahmad ., and Sarfraz Hassan . "Food Security Through Increasing Technical Efficiency." Asian Journal of Plant Sciences 5, no. 6 (October 15, 2006): 970–76. http://dx.doi.org/10.3923/ajps.2006.970.976.

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38

SUSLOV, Nikolay Maksimovich, Stanislav Alekseevich CHERNUKHIN, and Dmitriy Nikolaevich SUSLOV. "Increasing energy efficiency of walker dragline." NEWS of the Ural State Mining University 59, no. 3 (September 15, 2020): 131–39. http://dx.doi.org/10.21440/2307-2091-2020-3-131-139.

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Relevance of the work. Reducing the cost of mining in the course of open pit mining has always been considered one of the important tasks in the mining industry; it allows to reduce the cost of the extracted ore. When developing quarries, the most costly work, in which there is no direct mining, is the overburden of waste rocks. The method of stripping operations is one of the most efficient and highly productive, which uses a non-transport technology with a walking dragline excavator. Moving such powerful machines is energy-intensive and affects the efficiency of the machine as a whole, therefore, the modernization of the walking mechanism will increase the energy efficiency of the excavator and ultimately reduce the cost of mining. The most common mechanism for moving such machines is a hydraulically driven three-bearing mechanism. This paper describes the proposed modernization of such a walking mechanism, which makes it possible to get rid of two main disadvantages, namely, the lack of energy recuperation of the lifted machine along the path and the dragging of the base edge against the ground, which creates additional resistance to movement. The installation of hydraulic accumulators in the hydraulic system of the drive of the movement of the machine will allow accumulating the energy of the machine raised above the ground when walking, and the introduction of an additional support shoe into the support base of the machine will get rid of dragging the base. In general, the presented modernization of the mechanism will reduce the energy consumption of moving a dragline excavator with a three-bearing walking mechanism with a hydraulic drive and, ultimately, reduce the cost of mining. Purpose of the work: to improve the efficiency of the dragline as a whole by increasing the energy efficiency of its movement. Objectives: consider design changes to reduce the energy cost of moving the dragline. Results. A variant of adding a support shoe into the walking mechanism is considered, which makes it possible to eliminate the friction of the base against the rock along the path by completely separating the base from the ground. Calculations of energy consumption of mechanisms for different types of draglines with the existing and proposed mechanism are carried out. Conclusions, application of results. The calculations given in this paper allow us to conclude about the effectiveness of the changes made to the design of the walking mechanism. The proposed mechanism allows you to significantly reduce the cost of moving and get rid of the disadvantages inherent in the existing mechanism.
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39

Vinogradov, A. M., A. A. Pinaev, D. A. Vinogradov, A. V. Puzin, V. G. Shadrin, N. V. Zor’ko, and V. V. Somov. "INCREASING HOODING EFFICIENCY OF SODERBERG CELLS." Izvestiya Vuzov Tsvetnaya Metallurgiya (Proceedings of Higher Schools Nonferrous Metallurgy, no. 1 (January 1, 2017): 19–30. http://dx.doi.org/10.17073/0021-3438-2017-1-19-30.

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40

Rabinovich, Oleg, Sergey Legotin, Sergey Didenko, Evgeniy Yakimov, Yuriy Osipov, and Irina Fedorchenko. "Heterostructure optimization for increasing LED efficiency." Japanese Journal of Applied Physics 55, no. 5S (April 20, 2016): 05FJ13. http://dx.doi.org/10.7567/jjap.55.05fj13.

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41

Anderson, Mark Dáibhidh, and David Vilares. "Increasing NLP Parsing Efficiency with Chunking." Proceedings 2, no. 18 (September 19, 2018): 1160. http://dx.doi.org/10.3390/proceedings2181160.

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We introduce a “Chunk-and-Pass” parsing technique influenced by a psycholinguistic model, where linguistic information is processed not word-by-word but rather in larger chunks of words. We present preliminary results that show that it is feasible to compress linguistic data into chunks without significantly diminishing parsing performance and potentially increasing the speed.
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42

Lukhtura, F. I., N. V. Karnaukh, M. V. Medvedieva, and V. Yu Ivashin. "On the pumping stations efficiency increasing." Reporter of the Priazovskyi State Technical University. Section: Technical sciences, no. 37 (December 28, 2018): 61–74. http://dx.doi.org/10.31498/2225-6733.37.2018.160239.

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43

Srnka, Katharina J., Reinhard Grohs, and Ingeborg Eckler. "Increasing Fundraising Efficiency by Segmenting Donors." Australasian Marketing Journal (AMJ) 11, no. 1 (January 2003): 70–86. http://dx.doi.org/10.1016/s1441-3582(03)70119-0.

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44

Mischuk, Dmitry. "INCREASING EFFICIENCY MANIPULATOR BY OPTIMAL CONTROL." Gіrnichі, budіvelnі, dorozhnі ta melіorativnі mashini, no. 85 (July 12, 2015): 43–50. http://dx.doi.org/10.26884/damu.a158508.

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45

Varol, Asaf, Cumali İlkılıç, and Yasin Varol. "Increasing the efficiency of wind turbines." Journal of Wind Engineering and Industrial Aerodynamics 89, no. 9 (July 2001): 809–15. http://dx.doi.org/10.1016/s0167-6105(01)00069-1.

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46

Kurz, E., M. Chill, A. Desai, and W. Kwon. "Increasing periprocedural efficiency in interventional radiology." Journal of Vascular and Interventional Radiology 28, no. 2 (February 2017): S229. http://dx.doi.org/10.1016/j.jvir.2016.12.1163.

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47

Reeves, Byron, James J. Cummings, James K. Scarborough, and Leo Yeykelis. "Increasing Energy Efficiency With Entertainment Media." Environment and Behavior 47, no. 1 (November 28, 2013): 102–15. http://dx.doi.org/10.1177/0013916513506442.

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