Books on the topic 'Mid-ocean ridges'

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1

German, C. R., J. Lin, and L. M. Parson, eds. Mid-Ocean Ridges. Washington, D. C.: American Geophysical Union, 2004. http://dx.doi.org/10.1002/9781118665879.

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2

M, Sinton John, International Association of Volcanology and Chemistry of the Earth's Interior., and IUGG Union Symposium (9th : 1987 : Vancouver, B.C.), eds. Evolution of mid ocean ridges. Washington, DC, U.S.A: American Geophysical Union, 1989.

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3

Sinton, John M., ed. Evolution of Mid Ocean Ridges. Washington, D. C.: American Geophysical Union, 1989. http://dx.doi.org/10.1029/gm057.

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4

Kaihatsukyoku, Japan Kagaku Gijutsuchō Kenkyū. Kairei ni okeru enerugī, busshitsu frakkusu no kaimei ni kansuru chōsa hōkokusho. [Tokyo]: Kagaku Gijutsuchō Kenkyū Kaihatsukyoku, 1993.

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5

Japan. Kagaku Gijutsuchō. Kenkyū Kaihatsukyoku. Kairei ni okeru enerugī busshitsu furakkusu no kaimei ni kansuru kokusai kyōdō kenkyū (dai 1-ki Heisei 5--7-nendo) seika hōkokusho. [Tokyo]: Kagaku Gijutsuchō Kenkyū Kaihatsukyoku, 1997.

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6

1955-, Buck W. Roger, ed. Faulting and magmatism at mid-ocean ridges. Washington, D.C: American Geophysical Union, 1998.

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7

Roger Buck, W., Paul T. Delaney, Jeffrey A. Karson, and Yves Lagabrielle, eds. Faulting and Magmatism at Mid-Ocean Ridges. Washington, D. C.: American Geophysical Union, 1998. http://dx.doi.org/10.1029/gm106.

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8

Wilcock, William S. D., Edward F. DeLong, Deborah S. Kelley, John A. Baross, and S. Craig Cary, eds. The Subseafloor Biosphere at Mid-Ocean Ridges. Washington, D. C.: American Geophysical Union, 2004. http://dx.doi.org/10.1029/gm144.

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9

Morgan, Jason Phipps, Donna K. Blackman, and John M. Sinton, eds. Mantle Flow and Melt Generation at Mid-Ocean Ridges. Washington, D. C.: American Geophysical Union, 1992. http://dx.doi.org/10.1029/gm071.

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10

Georgen, Jennifer E. Interactions between mantle plumes and mid-ocean ridges: Constraints from geophysics, geochemistry, and geodynamical modeling. Woods Hole, Mass: Woods Hole Oceanographic Institution, 2001.

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11

Friesen, Walter B. Mineralogy and chemistry of hydrothermal chimneys from the northern Cleft segment, Juan de Fuca Ridge. [Menlo Park, CA]: U.S. Geological Survey, 1995.

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12

A, Nicolas. The mid-oceanic ridges: Mountains below sea level. Berlin: Springer, 1995.

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13

German, Christopher R., Jian Lin, and Lindsay M. Parson, eds. Mid-Ocean Ridges: Hydrothermal Interactions Between the Lithosphere and Oceans. Washington, D. C.: American Geophysical Union, 2004. http://dx.doi.org/10.1029/gm148.

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14

Cordery, Matthew Jean. Mantle convection, melt migration and the generation of basalts at mid-ocean ridges. Woods Hole, Mass: WHOI, 1991.

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15

Hosford, Allegra. Crustal accretion and evolution at slow and ultra-slow spreading mid-ocean ridges. Woods Hole, Mass: Woods Hole Oceanographic Institution, 2001.

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16

Ruedas, Thomas. Convection and melting processes in a mantle plume under a spreading ridge, with application to the Iceland plume. Berlin: Logos Berlin, 2004.

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17

Hussenoeder, Stefan Anthony. Seismic and magnetic constraints on the structure of upper oceanic crust at fast and slow spreading ridges. Woods Hole, Mass: Massachusetts Institute of Technology, Woods Hole Oceanographic Institution, Joint Program in Oceanography/Applied Ocean Science and Engineering, 1998.

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18

Lee, Myung W. Estimating the amount of gas hydrate in marine sediments in the Blake Ridge area, southeastern Atlantic Margin. Denver, CO: U.S. Geological Survey, 1992.

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19

A, Nicolas. Les montagnes sous la mer: Expansion des océans et tectonique des plaques. Orléans: Éditions du BRGM, 1990.

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20

Les montagnes sous la mer: Expansion des océans et tectonique des plaques. 2nd ed. Orléans: BRGM, 1999.

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21

P, Lowell Robert, ed. Magma to microbe: Modeling hydrothermal processes at ocean spreading centers. Washington, DC: American Geophysical Union, 2008.

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22

Hooft, Emilie Ernestine Ebba. The influence of magma supply and eruptive processes on axial morphology, crustal construction and magma chambers. Woods Hole, Mass: Massachusetts Institute of Technology, Woods Hole Oceanographic Institution, Joint Program in Oceanography/Applied Ocean Science and Engineering, 1997.

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23

Miller, Kay L. Bathymetric comparison of three mid-ocean ridge areas with slow- spreading characteristics. [Rockville, Md.]: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Oceanic and Atmospheric Administration, Office of Undersea Research, 1989.

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24

(2001), AMORE 2001. Polarstern ARKTIS XVII/2 cruise report, AMORE 2001 (Arctic Mid-Ocean Ridge Expedition). Bremerhaven: Alfred-Wegener-Institut für Polar- und Meeresforschung, 2002.

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25

Mid-Ocean Ridges. Cambridge University Press, 2013.

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26

Cann, J. R., H. Elderfield, and A. S. Laughton, eds. Mid-Ocean Ridges. Cambridge University Press, 1999. http://dx.doi.org/10.1017/cbo9780511600050.

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27

Searle, Roger. Mid-Ocean Ridges. Cambridge University Press, 2014.

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28

Sinton, John M. Evolution of Mid Ocean Ridges. Wiley & Sons, Limited, John, 2013.

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29

Cary, S. Craig, William S. D. Wilcock, Edward F. DeLong, Deborah S. Kelley, and John A. Baross. Subseafloor Biosphere at Mid-Ocean Ridges. Wiley & Sons, Limited, John, 2013.

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30

Buck, W. Roger, Paul T. Delaney, Yves Lagabrielle, and Jeffrey A. Karson. Faulting and Magmatism at Mid-Ocean Ridges. Wiley & Sons, Limited, John, 2013.

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31

Phipps, Morgan Jason, Blackman Donna K, and Sinton John M, eds. Mantle flow and melt generation at mid-ocean ridges. Washington, DC: American Geophysical Union, 1992.

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32

Morgan, Jason Phipps, Donna K. Blackman, and John M. Sinton. Mantle Flow and Melt Generation at Mid-Ocean Ridges. Wiley & Sons, Limited, John, 2013.

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33

Wilcock, William S. D., and RIDGE THEORETICAL INSTITUTE ON THE SUBSU. The Subseafloor Biosphere at Mid-Ocean Ridges (Geophysical Monograph). American Geophysical Union, 2004.

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34

Aleshire, Peter. Ocean Ridges and Trenches (The Extreme Earth). Chelsea House Publications, 2007.

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35

Kensaku, Tamaki, Fujimoto Hiromi, Tōkyō Daigaku Kaiyō Kenkyūjo, and Hakuhō Maru (Ship), eds. Rodriguez Triple Junction expedition in the Indian Ocean (InterRidge and ODP): Preliminary cruise report, R/V Hakuho Maru KH93-3 research cruise, July 8-September 17, 1993. [Tokyo]: Ocean Research Institute, University of Tokyo, 1995.

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36

A, Koski Randolph, and Geological Survey (U.S.), eds. Mineralogy and chemistry of hydrothermal chimneys from the northern Cleft segment, Juan de Fuca Ridge. [Reston, Va.]: U.S. Dept. of the Interior, U.S. Geological Survey, 1995.

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37

A, Koski Randolph, and Geological Survey (U.S.), eds. Mineralogy and chemistry of hydrothermal chimneys from the northern Cleft segment, Juan de Fuca Ridge. [Reston, Va.]: U.S. Dept. of the Interior, U.S. Geological Survey, 1995.

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38

J, MacLeod C., Tyler Paul A, and Walker C. L, eds. Tectonic, magmatic, hydrothermal, and biological segmentation of mid-ocean ridges. London: The Geological Society, 1996.

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39

German, Christopher R., Lindsay M. Parson, and Jian Lin. Mid-Ocean Ridges: Hydrothermal Interactions Between the Lithosphere and Oceans. Wiley & Sons, Limited, John, 2013.

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40

1937-, Cann J. R., Elderfield Harry 1943-, and Laughton A. S, eds. Mid-ocean ridges: Dynamics of processes associated with creation of new ocean crust. Cambridge: Cambridge University Press, 1999.

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41

Geochemistry of oceanic igneous rocks--ridges and islands. [Reston, VA]: U.S. Dept. of the Interior, U.S. Geological Survey, 1993.

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42

Sylvander, Brendan A. The Southeast Indian Ridge water contents of MORB glasses and chemical effects of propagating rifts. 1998.

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43

Pyle, Douglas G. Geochemistry of mid-ocean ridge basalt within and surrounding the Australian-Antarctic discordance. 1993.

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44

Pyle, Douglas G. Geochemistry of mid-ocean ridge basalt within and surrounding the Australian-Antarctic discordance. 1993.

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45

(Editor), J. R. Cann, H. Elderfield (Editor), and A. S. Laughton (Editor), eds. Mid-Ocean Ridges: Dynamics of Processes Associated with the Creation of New Oceanic Crust. Cambridge University Press, 1999.

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46

Peter, Halbach, Tunnicliffe Verena Julia, Hein James R, and Dahlem Workshop on Energy and Mass Transfer in Marine Hydrothermal Systems( 2001 : Berlin, Germany), eds. Energy and mass transfer in marine hydrothermal systems. Berlin, Germany: Dahlem University Press, 2003.

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47

Elderfield, H., A. S. Laughton, and J. R. Cann. Mid-Ocean Ridges: Dynamics of Processes Associated with the Creation of New Oceanic Crust. Cambridge University Press, 2010.

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48

Elderfield, H., A. S. Laughton, and J. R. Cann. Mid-Ocean Ridges: Dynamics of Processes Associated with the Creation of New Oceanic Crust. Cambridge University Press, 2012.

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49

(Editor), Christopher R. German, Jian Lin (Editor), Lindsay M. Parsons (Editor), and L. M. Parson (Editor), eds. Mid-ocean Ridges: Hydrothermal Interactions between the Lithosphere and Oceans (Geophysical Monograph). American Geophysical Union, 2004.

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50

Livermore, Roy. All at Sea. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198717867.003.0009.

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Abstract:
According to first-generation plate tectonics, sea-floor spreading was nice and simple. Plates were pulled apart at mid-ocean ridges, and weak mantle rocks rose to fill the gap and began to melt. The resulting basaltic magma ascended into the crust, where it ponded to form linear ‘infinite onion’ magma chambers beneath the mid-ocean tennis-ball seam. At frequent intervals, vertical sheets of magma rose from these chambers to the surface, where they erupted to form new ocean floor or solidified to form dykes, in the process acquiring a magnetization corresponding to the geomagnetic field at the time. Mid-ocean ridge axes were defined by rifted valleys and divided into segments by transform faults with offsets of tens to hundreds of kilometres, resulting in the staircase pattern seen on maps of the ocean floor. All mid-ocean ridges were thus essentially identical. Such a neat and elegant theory was bound to be undermined as new data were acquired in the oceans.
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