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Nannofossil abundance of Hole 15-149
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Nannofossil abundance of Hole 15-148
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Nannofossil abundance of Hole 15-147
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Nannofossil abundance of Hole 15-146A
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Nanoplankton abundance at station GeoB2021-3
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Nanoplankton abundance at station GeoB2021-1
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Nanoplankton abundance at station GeoB2017-4
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Nanoplankton abundance at station GeoB2017-1
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Nanoplankton abundance at station GeoB2012-5
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Nanoplankton abundance at station GeoB2012-2
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Nanoplankton abundance at station GeoB2011-3
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Nanoplankton abundance at station GeoB2008-4
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Nanoplankton abundance at station GeoB2006-4
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Nanoplankton abundance at station GeoB2005-5
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Nanoplankton abundance at station GeoB2005-3
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Distribution of nanoplankton at trap WR2
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Abundance of nanoplankton in sediment core GeoB1028-5
This dataset has no description
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Heterococcolithophores and holococcolithophores in the Mediterranean Sea duri...
For all the absolute coccolithophore abundances during the Meteor M84/3 cruise, see Oviedo et al. (2017) doi:10.1594/PANGAEA.875202. -
Nannoliths content of MIRA-CP1 core, Portugal
Sixteen calcareous nannoplankton taxa and didemnid ascidian spicules were identified throughout MIRA-CP1 core (see Alday et al. 2006 for further details). On the basis of...