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Qualitative data for calcareous nannofossils and marine and nonmarine diatoms...
Preservation: E = excellent, G = good, M = moderate, MP = moderate to poor, P = poor. Abundance: A = abundant, C = common, F = few, R = rare, VR = very rare, X = present.NA =... -
Qualitative data for calcareous nannofossils and marine and nonmarine diatoms...
Preservation: E = excellent, G = good, M = moderate, MP = moderate to poor, P = poor. Abundance: A = abundant, C = common, F = few, R = rare, VR = very rare, X = present. NA =... -
Qualitative data for calcareous nannofossils and marine and nonmarine diatoms...
Preservation: E = excellent, G = good, M = moderate, MP = moderate to poor, P = poor. Abundance: A = abundant, C = common, F = few, R = rare, VR = very rare, X = present. NA =... -
Coccolith record during MIS 11 from ODP Hole 161-977A
This dataset has no description
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(Table 4) Relative abundance of selected calcareous nannofossils species in s...
This dataset has no description
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(Table 3) Relative abundance of selected calcareous nannofossils species in s...
This dataset has no description
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Dinoflagellate cyst measurements from sediment core HH11-134-BC
This dataset has no description
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(Table 3) Coccolithophores cell densities for surface water samples of J.K. R...
This dataset has no description
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(Figure 3) Total and relative abundances of selected coccolithophore species ...
This dataset has no description
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(Table 17) Distrubution of calcareous nannofossil taxa in the Pleistocene-Pli...
Sediment depth is given in mbsf. Species abundance: A = abundant (usually >10 specimens observed per field), C = common (1-10 specimens per field), F = few (1 specimen per... -
(Table 16) Distrubution of calcareous nannofossil taxa in the lower Pliocene-...
Sediment depth is given in mbsf. Species abundance: A = abundant (usually >10 specimens observed per field), C = common (1-10 specimens per field), F = few (1 specimen per... -
(Table 15) Distrubution of calcareous nannofossil taxa in the Pleistocene-upp...
Sediment depth is given in mbsf. Species abundance: A = abundant (usually >10 specimens observed per field), C = common (1-10 specimens per field), F = few (1 specimen per... -
(Supplement 1) Most common taxa or groups of coccoliths from ODP Site 1233 (p...
This dataset has no description
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(Table 2) Calcareous nannofossil abundance in ODP Hole 164-994C sediments
Sediment depth is given in mbsf. Distribution: numbers = calculated percentage in the indigenous flora, figures are rounded off to the nearest whole numbers. <0.5 = few (>... -
(Table 10) Distribution chart of calcareous nannofossils of ODP Hole 135-839B
Species abundances per traverse: R = rare (1-5 specimens), S = rare to frequent (6-15 specimens), F = frequent (16-35 specimens), M = frequent to common (36-75 specimens), C =... -
(Table 9) Distribution chart of calcareous nannofossils of ODP Hole 135-839A
Species abundances per traverse: R = rare (1-5 specimens), S = rare to frequent (6-15 specimens), F = frequent (16-35 specimens), M = frequent to common (36-75 specimens), C =... -
(Table 8) Distribution chart of calcareous nannofossils of ODP Hole 135-838B
Species abundances per traverse: R = rare (1-5 specimens), S = rare to frequent (6-15 specimens), F = frequent (16-35 specimens), M = frequent to common (36-75 specimens), C =... -
(Table 6) Distribution chart of calcareous nannofossils of ODP Hole 135-837A
Species abundances per traverse: R = rare (1-5 specimens), S = rare to frequent (6-15 specimens), F = frequent (16-35 specimens), M = frequent to common (36-75 specimens), C =... -
(Table 5) Distribution chart of calcareous nannofossils of ODP Hole 135-836A
Species abundances per traverse: R = rare (1-5 specimens), S = rare to frequent (6-15 specimens), F = frequent (16-35 specimens), M = frequent to common (36-75 specimens), C =... -
(Table 4) Distribution chart of calcareous nannofossils of ODP Hole 135-835A
Species abundances per traverse: R = rare (1-5 specimens), S = rare to frequent (6-15 specimens), F = frequent (16-35 specimens), M = frequent to common (36-75 specimens), C =...