Results 191 to 200 of about 113,713 (252)
Cloud radiative effects significantly increase wintertime atmospheric blocking in the Euro-Atlantic sector. [PDF]
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North Atlantic Hydrography and the Mid-Atlantic Ridge
Geological Society of America Bulletin, 1949This paper presents primarily the soundings obtained by the Research Vessel ATLANTIS during the summer field season of 1947. It also utilizes some of the data obtained by later expeditions of the ATLANTIS and by several other vessels. The ATLANTIS is equipped with a continuously recording fathometer with a range up to 4000 fathoms.
IVAN TOLSTOY, MAURICE EWING
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Sands of the Mid-Atlantic Ridge
Science, 1965Sands collected at 24 locations along the crest of the Mid-Atlantic Ridge between 57°S and 38°N consist predominantly of olivine, diopsidic augite, hypersthene, enstatite, amphibole, quartz, plagioclase, and volcanic glass, suggesting an olivine tholeiitic source.
P J, Fox, B C, Heezen
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Nepheline Gabbro from the Mid-Atlantic Ridge
Nature, 1970IN the course of a long range programme aimed at the study of the petrology of the Equatorial Mid-Atlantic Ridge, a series of dredgings were made by Miami's Institute of Marine Sciences on the walls of the Romanche trench. The Romanche is a major tectonic fracture which intersects the Ridge close to the Equator, and offsets its axis, perpendicular to ...
J, Honnorez, E, Bonatti
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Mid-Atlantic Ridge: Age and Spreading Rates
Science, 1968Fission-track dating of basaltic glass from the Mid-Atlantic Ridge gives results which are consistent with the proposal of ocean-floor spreading. Solidification ages from ∼10,000 years to ∼300,000 years were measured. Correlation is also possible between the magnetic anomaly patterns over the Crest Mountains at 45°N and the geochronology of the ...
R L, Fleischer +3 more
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Tertiary Sediment from the Mid-Atlantic Ridge
Science, 1966Lower Miocene microfossils occur in basaltic glass in two dredge hauls from the crestal area of the Mid-Atlantic Ridge near 30°N. From the ridge and adjoining abyssal hills 43 pre-Pleistocene cores were identified, including one Cretaceous and four Eocene.
T, Saito, M, Ewing, L H, Burckle
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