Books on the topic 'Technology Oceania'

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1

Rubin, Arnold. Art as technology: The arts of Africa, Oceania, Native America, Southern California. Edited by Pearlstone Zena. Beverly Hills, CA: Hillcrest Press, 1989.

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2

Wu, Guan-Yuan, Kuang-Chung Tsai, and W. K. Chow, eds. The Proceedings of 11th Asia-Oceania Symposium on Fire Science and Technology. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-32-9139-3.

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3

Oceania Benchmark Sites Network for Agrotechnology Transfer Workshop (1989 Nouméa, New Caledonia). Oceania Benchmark Sites Network for Agrotechnology Transfer (OBSNAT) Workshop: Noumea, New Caledonia, 5-16 June 1989 : report. Noumea, New Caledonia: South Pacific Commission, 1989.

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4

M, Huang P., Iskandar I. K. 1938-, and Chino M, eds. Soils and groundwater pollution and remediation: Asia, Africa, and Oceania. Boca Raton, FL: Lewis Publishers, 2000.

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5

Asia-Oceania Symposium on Information Technology and Strategy for Earthquake Disaster Reduction (2002 Tokyo, Japan). Proceedings of Asia-Oceania Symposium on Information Technology and Strategy for Earthquake Disaster Reduction: February 20-22, 2002, at KKR Hotel, Tokyo. [Tokyo: National Research Institute of Fire and Disaster, 2002.

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6

service), Wiley InterScience (Online, ed. Ecosystem based fisheries management in the western pacific. Hoboken, NJ: Wiley, 2011.

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7

International Federation for Information and Documentation. Commission for Asia and Oceania. General Assembly and Congress. The use of new information technologies in developing countries: International Federation for Information and Documentation, Commission for Asia and Oceania, 10th Congress and General Assembly, Beijing, China, 24-26 October 1988. Hong Kong: International Federation for Information and Documentation, Commission for Asia and Oceania, 1988.

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8

George, Kozmetsky, Matsumoto Hiroshi, Smilor Raymond W, and Global Community Forum '87 (1987 : Apia, Samoa), eds. Pacific cooperation and development. New York: Praeger, 1988.

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9

Wyban, James. Intensive shrimp production technology: The Oceanic Institute shrimp manual. Honolulu, Hawaii: The Institute, 1991.

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10

Undersea technology. New York: Bookwright Press, 1990.

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11

Reuben, Robert. Materials in marine technology. London: Springer-Verlag, 1994.

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12

1945-, Walker Lindsay, and Ford Glyn, eds. The future for ocean technology. London: F. Pinter, 1987.

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13

Enkvist, Ernst. Development of Arctic offshore technology. [Helsinki]: Technology Development Centre, 1990.

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14

Somvanshi, V. S. Introduction of monofilament longline technology for harvesting oceanic tuna and allied resources in the Indian EEZ. Mumbai: Government of Indi, Fishery Survey of India, Deppt. of Animal Husbandry, Dairying & Fisheries, Ministry of Agriculture, 2008.

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15

Vortex flow in nature and technology. Malabar, Fla: Krieger, 1995.

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16

Energy-Sources, Technology Conference and Exhibition (11th 1988 New Orleans La ). Current practices and new technology in ocean engineering, 1988. New York, N.Y. (345 E. 47th St., New York 10017): American Society of Mechanical Engineers, 1988.

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17

Barrow, Clyde W. The marine science and technology industry in New England. [Amherst, Mass.?]: University of Massachusetts, Donahue Institute, 2005.

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18

International Symposium on Underwater Technology (2nd 2000 Tokyo, Japan). Underwater technology: Proceedings of the 2000 International Symposium on Underwater Technology : UT'00 : 23-26 May, 2000, Tokyo, Japan. Piscataway, NJ: IEEE, 2000.

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19

Oceanic Engineering Society (U.S.), Tōkyō Daigaku. Seisan Gijutsu Kenkyūjo., and United States. Office of Naval Research. Asian Office., eds. Underwater technology: Proceedings of the 2002 International Symposium on Underwater Technology : UT 02 : 16-19 April, 2002, Tokyo, Japan. Piscataway, NJ: IEEE, 2002.

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20

NOAA diving manual: Diving for science and technology. Palm Beach Gardens, Florida: Best Publishing Company, 2013.

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21

NOAA diving manual: Diving for science and technology. [Silver Spring, Md.] (1335 East-West Highway, Room 5262, Silver Spring 20910): U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Oceanic and Atmospheric Research, Office of Undersea Research, 1991.

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22

International Symposium on Underwater Technology (4th 2004 Taipei, Taiwan). Underwater technology 2004: 2004 International Symposium on Underwater Technology : UT 04 : proceedings : April 20-23, 2004, Howard International House, Taipei. Piscataway, N.J: IEEE, 2004.

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23

Oceans 2000 (2000 Providence, R.I.). Oceans 2000 MTS/IEEE: Where marine science and technology meet. Piscataway, NJ: IEEE, 2000.

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24

Divetech '84 (1984 London, England). Developments in diving technology: Proceedings of an international conference (Divetech '84). London: Graham & Trotman, 1985.

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25

Technology, Society for Underwater, ed. Advances in underwater technology and offshore engineering: Proceedings of an international conference, (Divetech '84) organized by the Society for Underwater Technology, and held in London, UK, 14-15 November 1984. London: Graham & Trotman, 1985.

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26

Oceans 94 (1994 Brest, France). Oceans 94: Oceans engineering for today's technology and tomorrow's preservation : proceedings. Piscataway, NJ, USA: IEEE, 1994.

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27

Oceans 94 (1994 Brest, France). Oceans '94: Oceans engineering for today's technology and tomorrow's preservation : proceedings. New York, N.Y: Institute of Electrical and Electronics Engineers, 1994.

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28

Zhongguo hai yang gao ji shu ji qi chan ye hua fa zhan zhan lüe yan jiu. Qingdao: Qingdao hai yang da xue chu ban she, 2003.

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29

Indian Conference in Ocean Engineering (3rd 1986 Indian Institute of Technology, Bombay). Third Indian Conference on Ocean Engineering, December 11-13, 1986, Indian Institute of Technology, Bombay. [Bombay]: The Institute, 1986.

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30

Pacific Congress on Marine Technology (2nd 1986 Honolulu, Hawaii). Proceedings of the Pacific Congress on Marine Technology, PACON 86: March 24-28, 1986, Honolulu, Hawaii. Honolulu, Hawaii: The Society, 1986.

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31

Anderson, Atholl. Seafaring in Remote Oceania. Edited by Ethan E. Cochrane and Terry L. Hunt. Oxford University Press, 2014. http://dx.doi.org/10.1093/oxfordhb/9780199925070.013.003.

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Long-distance seafaring or voyaging is often understood in a traditionalist perspective that assumes particular sail and watercraft technology for which there is no physical evidence, a capability for search-and-return voyages of discovery, a degeneration of voyaging technology over time, and an isomorphism between the ethnographic and pre-European records. This chapter reviews the ethnohistoric, ethnographic, and linguistic evidence pertaining to Oceanic boats and sailing rigs and concludes that prior to about A.D. 1500 Oceanic sailing rigs were mastless without triangular sails and had no weatherly capability. This conclusion has ramifications for the explanation of the episodic nature of Oceanic colonization and post-colonization interaction.
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32

Nishitani, Makiko. Desire, Obligation, and Familial Love: Mothers, Daughters, and Communication Technology in the Tongan Diaspora. University of Hawaii Press, 2020.

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33

Desire, Obligation, and Familial Love: Mothers, Daughters, and Communication Technology in the Tongan Diaspora. University of Hawaii Press, 2021.

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34

Desire, Obligation, and Familial Love: Mothers, Daughters, and Communication Technology in the Tongan Diaspora. University of Hawaii Press, 2020.

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35

Nishitani, Makiko. Desire, Obligation, and Familial Love: Mothers, Daughters, and Communication Technology in the Tongan Diaspora. University of Hawaii Press, 2020.

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36

Nishitani, Makiko. Desire, Obligation, and Familial Love: Mothers, Daughters, and Communication Technology in the Tongan Diaspora. University of Hawaii Press, 2020.

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37

Chow, W. K., Guan-Yuan Wu, and Kuang-Chung Tsai. Proceedings of 11th Asia-Oceania Symposium on Fire Science and Technology. Springer Singapore Pte. Limited, 2020.

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38

Chow, W. K., Guan-Yuan Wu, and Kuang-Chung Tsai. The Proceedings of 11th Asia-Oceania Symposium on Fire Science and Technology. Springer, 2019.

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39

Nakamura, Yuji, Kazunori Harada, Ken Matsuyama, Keisuke Himoto, and Kaoru Wakatsuki. Fire Science and Technology 2015: The Proceedings of 10th Asia-Oceania Symposium on Fire Science and Technology. Springer, 2018.

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40

Nakamura, Yuji, Kazunori Harada, Ken Matsuyama, Keisuke Himoto, and Kaoru Wakatsuki. Fire Science and Technology 2015: The Proceedings of 10th Asia-Oceania Symposium on Fire Science and Technology. Springer London, Limited, 2016.

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41

Nakamura, Yuji, Kazunori Harada, Ken Matsuyama, Keisuke Himoto, and Kaoru Wakatsuki. Fire Science and Technology 2015: The Proceedings of 10th Asia-Oceania Symposium on Fire Science and Technology. Springer, 2016.

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42

O'Connor, Sue, and Peter Hiscock. The Peopling of Sahul and Near Oceania. Edited by Ethan E. Cochrane and Terry L. Hunt. Oxford University Press, 2014. http://dx.doi.org/10.1093/oxfordhb/9780199925070.013.002.

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Sahul, comprising Australia, Tasmania, and New Guinea was colonized from Sunda, the enlarged southernmost extension of Eurasia, by anatomically modern Homo sapiens over 50,000 years ago. Pleistocene colonization of Sahul required watercraft to cross the perpetual island region of Wallacea, wherein populations adjusted to changing patterns of floral and faunal diversity. Once in Sahul, populations quickly adapted to the varying resources, developed regional differences in technology and culture, and likely contributed to megafaunal extinctions also influenced by environmental change. Ancient DNA and skeletal studies indicate that after colonization, Sahul was largely isolated from other populations. The earliest humans to inhabit Near Oceania, the islands northeast of New Guinea, arrived approximately 45,000 years ago. While the sophistication of their earliest navigational technology is debated, by 20,000 years ago these populations engaged in increasingly frequent voyaging, translocating New Guinea mainland fauna to the islands and moving valuable stone resources over hundreds of kilometers.
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43

Oceania Benchmark Sites Network for Agrotechnology Transfer (OBSNAT) Workshop: Noumea, New Caledonia, 5-16 June 1989 : report (Report of meeting). South Pacific Commission, 1989.

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44

Huang, P. M., and I. K. Iskandar. Soils and Groundwater Pollution Remediation: Asia, Africa, and Oceania. CRC, 1999.

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45

Huang, P. M., and I. K. Iskandar. Soils and Groundwater Pollution and Remediation: Asia, Africa, and Oceania. Taylor & Francis Group, 2020.

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46

Huang, P. M., and I. K. Iskandar. Soils and Groundwater Pollution and Remediation: Asia, Africa, and Oceania. Taylor & Francis Group, 2020.

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47

Huang, P. M., and I. K. Iskandar. Soils and Groundwater Pollution and Remediation: Asia, Africa, and Oceania. Taylor & Francis Group, 2020.

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48

Huang, P. M., and I. K. Iskandar. Soils and Groundwater Pollution and Remediation: Asia, Africa, and Oceania. Taylor & Francis Group, 2020.

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49

Soils and groundwater pollution and remediation: Asia, Africa, and Oceania. Boca Raton: Lewis Publishers, 1999.

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50

Garduño Ruiz, E. P., A. García Huante, Y. Rodríguez Cueto, J. F. Bárcenas Graniel, M. A. Alatorre Mendieta, E. Cerezo Acevedo, G. Tobal Cupul, V. M. Romero Medina, and R. Silva Casarin. Ocean Thermal Energy Conversion (OTEC) State of the Art. EPOMEX-UAC, 2017. http://dx.doi.org/10.26359/epomex.cemie012017.

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The oceans function as large collectors of solar energy, which recently the human has had the interest to study. Ocean water retains approximately 15% of the totalof solar energy as thermal energy. The technology that allows generatingenergy through temperature differences the ocean is called Conversion Ocean Thermal Energy (otec). This type of energy is concentrated in the surface part of seawater and decreases exponentially with increasing depth, as the sea ​​bottom
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