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Microplankton abundance in the euphotic zone of the Aegean Sea at Station MAR...
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 MAR...
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 MAR...
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 MAR...
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 MAR...
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 in September 1994
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 in winter 1995
Microplankton species composition analysis was performed according to the inverted microscope method of Utermoehl. Samples for identification and enumeration of larger... -
Total and size-fractionated Chlorophyll a, species and counts of phytoplankto...
This dataset has no description
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Diatom biovolume in sediment core from Allouez Bay, Superior Harbor, Minnesot...
Diatom biovolume is measured per dry weight of sediment. Additional data on relative biovolume and biovolume accumulation rates can be found at "Further details". -
Diatom density in sediment core from Allouez Bay, Superior Harbor, Minnesota,...
Diatom density is measured per dry weight of sediment. -
Diatom counts in sediment core from Allouez Bay, Superior Harbor, Minnesota, USA
Additional data on relative abundance and cells accumulation rates of diatoms can be found under "Further details". -
Diatom biovolume in sediment core from Pokegama Bay, St. Louis River, Minneso...
Diatom biovolume measured per dry weight of sediment. Additional data on relative biovolume and biovolume accumulation rates can be found under "Further details". -
Diatom density in sediment core from Pokegama Bay, St. Louis River, Minnesota...
Diatom density measured per dry weight of sediment. -
Diatom counts in sediment core from Pokegama Bay, St. Louis River, Minnesota,...
Additional data on relative abundance and cells accumulation rates of diatoms can be found under "Further details". -
Diatom biovolume in sediment core from Duluth-Superior Harbor at Minnesota Po...
Diatom biovolume was measured per dry weight of sediment. Additional data on relative biovolume and biovolume accumulation rates can be found under "Further details". -
Diatom density in sediment core from Duluth-Superior Harbor at Minnesota Poin...
Diatom density per dry weight of sediment. -
Diatom counts in sediment core from Duluth-Superior Harbor at Minnesota Point...
Additional data on relative abundance and cells accumulation rates of diatoms can be found under "Further details". -
Diatoms in sediment samples from the pingo exposure AWI_12P-1908-A
Three profiles (12P-1908-A, 12P-2008-A, 12P-2208-A) of exposed deposits were sampled in course of the expedition Pokhodsk 2012 in the Kolyma Lowland, which contained frozen... -
Diatom and silicoflagellate record of sediment core ETO12_2-3
This dataset has no description
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(Table 10) Diatom biostratigraphy of ODP Hole 167-1020B sediments
DEPTH, sediment is given in mbsf. Abundance estimates as follows: A = abundant, C = common, F = few, R = rare, T = trace, and B = barren, - = not found.