973 resultados para RED-SEA


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The cores and dredges described in this report were taken on Cruise 16 of the R.R.S. "Discovery" from January until May 1967 by the National Institute of Oceanography, Wormley, United Kingdom. A total of 73 cores and dredges were recovered and are available through the British Oceanographic Data Centre for sampling and study.

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To reconstruct the still poorly understood thermocline fluctuations in the western tropical Indian Ocean, a sediment core located off Tanzania (GeoB12610-2; 04°49.00'S, 39°25.42'E, 399?m water depth) covering the last 35 ka was analysed. Mg/Ca-derived temperatures from the planktonic foraminifera Globigerinoides ruber (white) and Neogloboquadrina dutertrei indicate that the last glacial was ~2.5 °C colder in the surface waters and ~3.5 °C colder in the thermocline compared with the present day. The depth of the thermocline and thus the stratification of the water column were shallower during glacial periods and deepened during the deglaciation and Holocene. The increased inflow of Southern Ocean Intermediate Waters via 'ocean tunnels' appears to cool the thermocline from below, leading to a similarity between the thermocline record of GeoB12610-2 with the Antarctic EDML temperature curve during the glacial. With rising sea level and the corresponding greater inflow of Red Sea Waters and Indonesian Intermediate Waters, the proportion of Southern Ocean Intermediate Water within the South Equatorial Current is reduced and, by Holocene time, the correlation to Antarctica is barely traceable. Comparison with the eastern Indian Ocean reveals that the thermocline depth reverses from the last glacial to present.

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v.1. A-Juttah.--v.2. Kabzeel-Red-heifer.--v.3. Red-Sea-Zuzims.

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v.1. Aaron-Juttah.--v.2. Kabzeel-Red-heifer.--v.3. Red-Sea-Zuzims.

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Bibliographical footnotes.

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14th. A remarkable vision of Charles the eleventh of Sweden.--15th. An awful and authentic narrative of the monster Benito de Soto, the pirate of the Morning Star.--16th. The first and last sacrifice.--17th. The tiger's cave; or, The melancholy and tragical fate of Captains Wharton and Lincoln.--18th. The first and last love.--19th. The Scottish landlady, and her lodgers ... by Mr. Galt.--20th. Traditionary anecdotes of the Countess of Stair.--21st. First and last love.--Agnes Fitzroy.--22nd. The death of Alice Bland ... by the author of the Tales of a pilgrim--23d. Herby and his twelve wives.--24th. The murder hole.--25th. A remarkable trial of murders.

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... And the probability of its success considered. To which is added a brief sketch of the present state of Egypt; an historical account of Alexandria; the two harbours of that city accurately delineated, its former splendor and present state contrasted; with some remarks on its local importance should it become the mart of the East: together with a few particulars relating to the navigation of the Red Sea. By the editor of the History of Peter III. and Catharine II. of Russia.

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Boron and chlorine were determined in rain water and in atmospheric moisture condensed in a "Saratov" refrigerator. Ocean is the main source of boron on the earth surface. Boron evaporates from the ocean and enriches atmospheric precipitation: B/Cl ratio of ocean water (0.00024) increases by factor of 10-15. Assuming that the average Cl content in global river runoff is 7.8 mg/l and boron content 0.013 mgl, B/Cl ratio in this runoff is 0.0017. The average B/Cl ratio in rain water of the Golubaya (Blue) Bay (Gelendzhik, Black Sea region) is 0.0026 and in condensates of atmospheric moisture during onshore and offshore winds in the same region it averages from 0.0029 to 0.0033. The maximum boron content in the condensates of this region during onshore winds was 0.032 mg/l and the minimum during offshore winds, 0.004 mg/l. /Cl ratio in sea water over the Atlantic Ocean and in the Gelendzhik area of the Black Sea varied within narrow range, mostly from 0.0025 to 0.0035. Similar B/Cl ratio (0.0024) was found for atmospheric precipitation on the slope of the Terskei Ala-Tau near the Issyk-Kul Lake in 1969. Thus, although chemistries of boron and chlorine (in chlorides) are very different, the B/Cl ratio in the atmosphere is fairly constant. This can be taken as a confirmation of an assumption that salt composition of sea water passes into the atmosphere in molecularly dispersed state. Supposing that the ocean-atmosphere system is in equilibrium as regards to the boron budget, it can be assumed that the same amount of boron passes from the ocean into bottom sediments and from lithosphere rocks and soils into the hydrosphere.