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Microplankton abundance in the euphotic zone of the Aegean Sea at Station JUN...
Microplankton species composition analysis was performed according to the inverted microscope method of Utermoehl. Samples for identification and enumeration of larger... -
Microplankton abundance in the euphotic zone of the Aegean Sea at Station JUN...
Microplankton species composition analysis was performed according to the inverted microscope method of Utermoehl. Samples for identification and enumeration of larger... -
Microplankton abundance in the euphotic zone of the Aegean Sea at Station JUN...
Microplankton species composition analysis was performed according to the inverted microscope method of Utermoehl. Samples for identification and enumeration of larger... -
Microplankton abundance in the euphotic zone of the Aegean and Levantine Seas...
Microplankton species composition analysis was performed according to the inverted microscope method of Utermoehl. Samples for identification and enumeration of larger... -
Microplankton abundance in the euphotic zone of the Aegean Sea at Station JUN...
Microplankton species composition analysis was performed according to the inverted microscope method of Utermoehl. Samples for identification and enumeration of larger... -
Range table from diatoms in ODP Hole 144-880A
This dataset has no description
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Range table from diatoms in ODP Hole 181-1123A
This dataset has no description
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Range table from diatoms in ODP Hole 181-1122C
This dataset has no description
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Range table from diatoms in ODP Hole 181-1122A
This dataset has no description
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Range table from diatoms in ODP Hole 181-1119C
This dataset has no description
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Range table from diatoms in ODP Hole 167-1020B
This dataset has no description
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Range table from diatoms in ODP Hole 167-1018C
This dataset has no description
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Range table from diatoms in ODP Hole 167-1018A
This dataset has no description
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Diatom abundance of Hole 67-499
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Diatom abundance of Hole 36-328
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Diatom abundance of Hole 23-220
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Microfossil abundance of Hole 50-416A
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Microfossil abundance of Hole 50-415
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Diatom abundance of Hole 95-613
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Diatom abundance of Hole 95-612
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent)