Journal articles on the topic 'Development Power'

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1

Peet, Richard, and Jonathan Crush. "Power of Development." Economic Geography 73, no. 2 (April 1997): 257. http://dx.doi.org/10.2307/144452.

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2

HENDERSON, W. "Power of Development." African Affairs 95, no. 381 (October 1, 1996): 611–12. http://dx.doi.org/10.1093/oxfordjournals.afraf.a007775.

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3

Okaru, Paul N. "Power for development." IEE Review 35, no. 7 (1989): 262. http://dx.doi.org/10.1049/ir:19890115.

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4

Hines, P. J. "DEVELOPMENT: Flower Power." Science 322, no. 5901 (October 24, 2008): 507b. http://dx.doi.org/10.1126/science.322.5901.507b.

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5

Williams, Glyn. "Power of development." Political Geography 17, no. 1 (January 1998): 119–20. http://dx.doi.org/10.1016/s0962-6298(97)87284-8.

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6

HIRAYAMA, Shoichi, and Takaya KAWABE. "Fusion Power Reactor Development Compared with Fission Power Reactor Development." Journal of the Atomic Energy Society of Japan / Atomic Energy Society of Japan 36, no. 6 (1994): 507–13. http://dx.doi.org/10.3327/jaesj.36.507.

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7

Trubitsyn, A. A. "DEVELOPMENT OF HIGH POWER MICROFOCUS X-RAY TUBE." Eurasian Physical Technical Journal 18, no. 1 (March 30, 2021): 43–50. http://dx.doi.org/10.31489/2021no1/43-50.

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In this paper, we propose and study a new method for increasing the power of a microfocus X-ray tube of transmission type. The proposed method is based on the idea of using a heat pipe as a tube anode. A theoretical expression is obtained for the maximum power dissipated at such an anode, depending on the diameter of the electron beam and the thickness of the tungsten target. It is shown that the power of the proposed tube can be many times higher than the power of tubes with standard composite anodes. An electron-optical scheme of a tube with electrostatic focusing is proposed and analyzed.
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8

Ustoev, Abdurazzok Kurbanovich. "DEVELOPMENT OF SPEED-POWER ABILITIES IN YOUNG SAMBISTS." CURRENT RESEARCH JOURNAL OF PEDAGOGICS 02, no. 11 (November 1, 2021): 157–60. http://dx.doi.org/10.37547/pedagogics-crjp-02-11-30.

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The purpose of this article was to develop and experimentally substantiate the effectiveness of the training methodology for young sambo wrestlers 10 -11 years old with a focus on the speed-strength component. The experiment was attended by 24 young sambists from the sports school of the city of Termez, Surkhandarya region. The athletes were divided into experimental and control groups. A specially organized pedagogical experiment lasted 20 weeks. The content of the training sessions of the experimental group included a large number of general developmental and special exercises aimed at the development of speed-strength abilities of athletes. We used exercises with rubber shock absorbers, weights, jumping exercises, throwing various objects, games with elements of martial arts, outdoor games and exercises that contribute to the development of the ability to quickly tension and relax muscles.
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9

KIMURA, Hisashi, Tetsunori HATTORI, and Tsukasa KUDOU. "1A13 Development of secure radio system(Electrical-Power)." Proceedings of International Symposium on Seed-up and Service Technology for Railway and Maglev Systems : STECH 2015 (2015): _1A13–1_—_1A13–7_. http://dx.doi.org/10.1299/jsmestech.2015._1a13-1_.

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10

Profant, Tomáš. "'Development' and Power: A Sociological Analysis of Power in 'Development' Cooperation." Czech Sociological Review 49, no. 2 (April 1, 2013): 291–318. http://dx.doi.org/10.13060/00380288.2013.49.2.05.

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11

Lampert, Stanley. "POWER DEVELOPMENT: New concepts in power development for the shot put." National Strength & Conditioning Association Journal 8, no. 6 (1986): 36. http://dx.doi.org/10.1519/0744-0049(1986)008<0036:ncipdf>2.3.co;2.

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12

Tojiev, Jamshid Zokir ugli. "DEVELOPMENT OF INNOVATIVE POWER OF STUDENTS IN TECHNICAL INSTITUTIONS." Frontline Social Sciences and History Journal 02, no. 04 (April 1, 2022): 153–60. http://dx.doi.org/10.37547/social-fsshj-02-04-18.

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This article aims to provide an innovative direction of thinking through the development of person-centered pedagogical technologies that fully meet the level of intellectual, intellectual and social development of students in the educational process; the development of innovative potential, taking into account their extracurricular interests and life experiences.
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13

van Driel, Barry, Kamila Kaminska, and Jennifer A. Vadeboncoeur. "Book Review: Teaching against Islamophobia, Teaching Critical Thinking: Practical Wisdom, Cultural-Historical Perspectives on Teacher Education and Development: Learning Teaching." Power and Education 2, no. 3 (January 2010): 341–46. http://dx.doi.org/10.2304/power.2010.2.3.341.

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14

Konovalov, Yuriy, and Aleksey Luk'yanov. "SOLAR POWER DEVELOPMENT PROSPECTS." Bulletin of the Angarsk State Technical University 1, no. 15 (January 12, 2022): 62–65. http://dx.doi.org/10.36629/2686-777x-2021-1-15-62-65.

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Renewable energy sources are considered, the most promising ones are highlighted, the advantages and disadvantages of solar energy converters are analyzed. Trends in the development of solar energy are considered
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15

Morrison, Scot D., and Eric J. Chaconas. "Power Development for Golf." Strength and Conditioning Journal 36, no. 4 (August 2014): 43–48. http://dx.doi.org/10.1519/ssc.0000000000000066.

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16

Durning, Alan B. "People Power and Development." Foreign Policy, no. 76 (1989): 66. http://dx.doi.org/10.2307/1148918.

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17

Haas, Olaf. "LOW-CONSUMPTION POWER DEVELOPMENT." ATZextra worldwide 15, no. 7 (July 2010): 52–59. http://dx.doi.org/10.1365/s40111-010-0224-9.

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18

Tang, Daohan. "China's wind power development." E3S Web of Conferences 53 (2018): 01018. http://dx.doi.org/10.1051/e3sconf/20185301018.

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This paper reviews the development of wind power in China. As one of the biggest energyconsuming and the worst environment deterioration countries, Chinese government has been actively exploring wind power instead of traditional energy. In the paper, there are some unique locations selected based on favourable geographical conditions and exploring potential. Moreover, relevant wind power development policies have been clarified. On the basis of current wind power implementation, some key problems in the policies have been pointed out.
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19

WILKINS, KARIN G. "Gender, power and development." Journal of International Communication 4, no. 2 (December 1997): 102–20. http://dx.doi.org/10.1080/13216597.1997.9751856.

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20

Oman, H. "Space solar power development." IEEE Aerospace and Electronic Systems Magazine 15, no. 2 (February 2000): 3–8. http://dx.doi.org/10.1109/maes.2000.825665.

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21

Meyer, Niels I. "Danish wind power development." Energy for Sustainable Development 2, no. 1 (May 1995): 18–25. http://dx.doi.org/10.1016/s0973-0826(08)60108-8.

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22

Dean, Stephen O. "Fusion power development pathways." Journal of Fusion Energy 12, no. 4 (December 1993): 415–20. http://dx.doi.org/10.1007/bf01054833.

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23

Bhat, Sher Singh. "Accelerated Transmission Development For Accelerated Power Development." Hydro Nepal: Journal of Water, Energy and Environment 4 (May 24, 2009): 8–10. http://dx.doi.org/10.3126/hn.v4i0.1814.

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Due to our lack of vision, planning and other mistakes, Nepal is in a very serious situation of load shedding. The nation is about 200 MW deficit of power supply. Hydropower development is an endeavor related with several sectors. It cannot be taken as only a commercial sector considering that businessmen will make all necessary things when there is a demand. In the past, the transmission sector has not been given due importance. Because of the complex nature of Transmission, there should only be one transmission operator in the country. Based on the periodic basin-wise generation plan of the nation, we should prepare an accelerated Development Plan. The Basin Plan should indicate how and where local level, regional level and national level hydro plants will be connected to the grid, and the sequence of developing the basin transmission network.Hydro Nepal: Journal of Water, Energy and Environment Issue No. 4, January, 2009 Page 8-10
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24

Scheidegger, R., W. Santiago, K. E. Bozak, L. R. Pinero, and A. Birchenough. "(Invited) High Power SiC Power Processing Unit Development." ECS Transactions 69, no. 11 (October 2, 2015): 13–19. http://dx.doi.org/10.1149/06911.0013ecst.

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25

Rabiee, Abdorreza, Nima Amjady, and Heidarali Shayanfar. "Reactive power market development considering power system security." Electrical Engineering 92, no. 4-5 (September 9, 2010): 151–64. http://dx.doi.org/10.1007/s00202-010-0171-5.

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26

Cahill, Amanda. "Power over, power to, power with: Shifting perceptions of power for local economic development in the Philippines." Asia Pacific Viewpoint 49, no. 3 (October 29, 2008): 294–304. http://dx.doi.org/10.1111/j.1467-8373.2008.00378.x.

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27

Victor Guimarães França, João, Jonathan Hunder Dutra Gherard Pinto, Dayane do Carmo Mendonça, João Victor Matos Farias, Renata Oliveira de Sousa, Heverton Augusto Pereira, Seleme Isaac Seleme Júnior, and Allan Fagner Cupertino. "DEVELOPMENT OF A DIDACTIC PLATFORM FOR FLEXIBLE POWER ELECTRONIC CONVERTERS." Eletrônica de Potência 27, no. 03 (September 22, 2022): 1–11. http://dx.doi.org/10.18618/rep.2022.3.0012.

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28

Brych, V., and T. Artemchuk. "Modern approaches to improving mechanisms of electric power industry development." Economics, Entrepreneuship, Management 3, no. 1 (2016): 1–5. http://dx.doi.org/10.23939/eem2016.01.001.

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29

Tegegn, Melakou. "Power Politics." Journal of Developing Societies 24, no. 2 (June 2008): 273–306. http://dx.doi.org/10.1177/0169796x0802400208.

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30

Hammett, Daniel. "Whose development? Power and space in international development." Geography 104, no. 1 (March 1, 2019): 12–18. http://dx.doi.org/10.1080/00167487.2019.12094057.

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31

Rakova, Xeniya Mikhailovna. "Wind Power Market Development Initiative." Applied Mechanics and Materials 617 (August 2014): 307–12. http://dx.doi.org/10.4028/www.scientific.net/amm.617.307.

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Among other loads such structures kind as high-rise buildings, long highway bridges with cable structures is subjected to significant wind pressure loads. Therefore, this constructions kind requires wind loads qualitative and accurate date as wind speed and strength obtained from wind atlas data and due to the field wind potential assessment with implementation of long-term meteorological mast measurements. General meteorological data are usually insufficient. Current report is devoted to the wind resources potential assessment methodology representation.
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32

Szablewski, Andrzej. "Conditions of Nuclear Power Development." Gospodarka Narodowa 236, no. 11-12 (December 31, 2009): 1–24. http://dx.doi.org/10.33119/gn/101215.

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33

Ryzhkov, Aleksandr. "Power plant burning technology development." Modern science: researches, ideas, results, technologies, no. 1(3) (September 10, 2010): 3–12. http://dx.doi.org/10.23877/ms.ts.4.001.

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34

Llagas, Johnson, John Jayson Datoy, Patricia Dela Cerna, Gladys Mae Laborde, Miriam Estrada, Maribel Balagtas, and Ruchel Oasan. "Development of Power Vegan Cupcake." Abstract Proceedings International Scholars Conference 6, no. 1 (October 29, 2018): 99. http://dx.doi.org/10.35974/isc.v6i1.1400.

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The objective of this study was to develop a healthy eating on the go for busy people. The Power Vegan Cupcake is a plant-based, nutrient-dense product, and is made from local plant-based ingredients. Saluyot and soymilk were used as replacements for egg and milk. Brown rice flour, muscuvado, banana, raisins, and peanuts made the cupcake a complete food. The dry ingredients were sifted and mixed. Saluyot and pandan leaves were boiled for 15 minutes and then cooled, blended, and strained. The saluyot puree and pandan juice were then mixed with the dry ingredients, soy milk, and vanilla. The batter was mixed, and raisins and banana were added. The batter was baked in an oven for 25 minutes at 200°C. Each Power Vegan Cupcake (70g) contained 41.7g of carbohydrates, 4.7g of protein, and 3.12g of fat for a total calorie content of 198.4kcal. It also contained 28.75ug of Vitamin A, 2.4mg of Vitamin C, 50.6mg of calcium, 1.5mg of iron, 0.17mg of thiamin, 0.19mg of riboflavin, 2.93mg of niacin, and 98.7mg of phosphorus. The product was found to contain a higher amount of carbohydrates, protein, and micronutrients compared to regular cupcakes on the market. Thirty respondents, ages 18-29, evaluated the product. The results showed a rating of like very much from 63%, 53%, and 50% of the evaluators in terms of appearance, texture, and taste, respectively. Advance development of saluyot as egg substitute for strict vegetarian foods is recommended.
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35

BLIX, Hans. "Sustainable Development and Nuclear Power." Journal of the Atomic Energy Society of Japan / Atomic Energy Society of Japan 39, no. 2 (1997): 114–17. http://dx.doi.org/10.3327/jaesj.39.114.

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36

KABASHIMA, SHIGEHARU. "Development of MHD Power Generation." Journal of the Institute of Electrical Engineers of Japan 120, no. 4 (2000): 227–30. http://dx.doi.org/10.1541/ieejjournal.120.227.

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37

HAYASHI, Hidemi, Hiroshi OKAMOTO, Masataka IWAKUMA, Yoshihiro GOSHO, Keiichi TANABE, Takashi SAITO, Yuji AOKI, and Shigeru YOSHIDA. "Development of REBCO Power Transformers." TEION KOGAKU (Journal of the Cryogenic Society of Japan) 46, no. 6 (2011): 342–49. http://dx.doi.org/10.2221/jcsj.46.342.

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38

Kan, Hirofumi, Takeshi Kanzaki, Hirofumi Miyajima, Masahiro Miyamoto, Yukihiro Itoh, Ken Matsui, Takenori Morita, et al. "Development High Power Semiconductor Laser." Review of Laser Engineering 25, Supplement (1997): S9—S12. http://dx.doi.org/10.2184/lsj.25.supplement_s9.

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39

SHIOZAKI, Isao. "Geothermal Power Development in Japan." Journal of the Japan Society of Engineering Geology 60, no. 3 (August 10, 2019): 120–24. http://dx.doi.org/10.5110/jjseg.60.120.

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40

Lim, Julian J. H., and Christopher I. Barley. "Complex Training for Power Development." Strength and Conditioning Journal 38, no. 6 (December 2016): 33–43. http://dx.doi.org/10.1519/ssc.0000000000000265.

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41

Gatta, G., B. Leban, M. Paderi, J. Padulo, G. M. Migliaccio, and M. Pau. "The development of swimming power." Muscle Ligaments and Tendons Journal 04, no. 04 (January 2019): 438. http://dx.doi.org/10.32098/mltj.04.2014.08.

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42

HAYASHI, Hidemi, and Masataka IWAKUMA. "Development of YBCO Power Transformer." Journal of The Institute of Electrical Engineers of Japan 134, no. 8 (2014): 553–55. http://dx.doi.org/10.1541/ieejjournal.134.553.

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43

Hatziargyriou, N., and A. Zervos. "Wind power development in Europe." Proceedings of the IEEE 89, no. 12 (2001): 1765–82. http://dx.doi.org/10.1109/5.975906.

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44

Westoby, Peter. "Politics, power and community development." Community Development Journal 52, no. 4 (August 9, 2017): 734–36. http://dx.doi.org/10.1093/cdj/bsx033.

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45

Ghorashi, A. H. "Energy development and power generation." IEEE Power Engineering Review 14, no. 6 (June 1994): 49. http://dx.doi.org/10.1109/mper.1994.286577.

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46

Carr, Constance. "The Power of Sustainable Development." Regions Magazine 300, no. 1 (December 2015): 11–13. http://dx.doi.org/10.1080/13673882.2015.11668689.

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47

Lindenfield, Gael. "The power of personal development." Management Development Review 8, no. 1 (February 1995): 28–31. http://dx.doi.org/10.1108/09622519510077556.

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48

Brusnitsin, A. N. "Development of nontraditional power engineering." Thermal Engineering 54, no. 8 (August 2007): 593–601. http://dx.doi.org/10.1134/s0040601507080010.

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49

Boretti, Alberto. "Trends in tidal power development." E3S Web of Conferences 173 (2020): 01003. http://dx.doi.org/10.1051/e3sconf/202017301003.

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Tidal energy has been around for almost 2, 000 years, as the first Tide Mills date the Romans times. Tidal power generation then emerged in the 1960s, with the construction of the 240 MW La Rance power station, a still working example of good renewable energy initiative, permitting electricity production at very competitive costs since now more than 54 years. Unfortunately, apart from the construction in 2011 of a similar plant based on the tidal range technology, the 254 MW Sihwa Lake power station, almost nothing else happened in the real world for tidal energy, apart from very small or demonstration plants. While the future is certainly towards tidal streams/currents technologies rather than tidal range technologies, as tidal currents turbines may also be used for oceanic currents installations, these technologies are still in their infancy, as apart from their theoretical performance, every other aspect of a submerged power plant operation needs further developments.
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50

Kaygusuz, Kamil. "Sustainable Development of Hydroelectric Power." Energy Sources 24, no. 9 (September 2002): 803–15. http://dx.doi.org/10.1080/00908310290086725.

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