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(Table 1) Calculated paleoelevations of drillhole points 35 million years ago
This dataset has no description
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Paleoelevations in the Pacific Ocean 35 million years ago
Data from deep sea drilling, linear magnetic anomalies and bathymetric measurements together with age and morphometric characteristics of seamounts have been used to construct a... -
Chemical and mineral compositions of basalts from the Pacific Ocean, DSDP data
Mineral and chemical alterations of basalts were studied in the upper part of the ocean crust using data of deep-sea drilling from D/S Glomar Challenger in the main structures... -
Geochemistry of the oceanic crust from ocean drilling samples
This book presents new data on chemical and mineral compositions and on density of altered and fresh igneous rocks from key DSDP and ODP holes drilled on the following main... -
(Table 4) Neogene diatoms at DSDP Site 55-433
Sediment depth is given in mbsf. Abundance is recorded as follows: R = rare (101 to 1000 individuals on one slide); F = few (1001 to 2000 individuals on one slide); C = common... -
(Table 3) Neogene diatoms at DSDP Hole 55-432
Sediment depth is given in mbsf. Abundance is recorded as follows: VR = very rare (less than 100 individuals on one slide, 18 x 18 mm). Preservation is recorded as follows: p =... -
(Table 2) Neogene diatoms at DSDP Site 55-431
Sediment depth is given in mbsf. Abundance is recorded as follows: VR = very rare (less than 100 individuals on one slide, 18 x 18 mm). Preservation is recorded as follows: p =... -
(Table 1) Neogene diatoms at DSDP Site 55-430
Sediment depth is given in mbsf. Abundance is recorded as follows: B = barren; VR = very rare (less than 100 individuals on one slide, 18 x 18 mm). Preservation is recorded as... -
Microfossil abundance of Hole 55-433A
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 55-433
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 55-433A
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 55-433
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 55-432
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 55-431A
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 55-431
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 55-430A
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 55-430
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Foraminifera abundance of Hole 55-432A
Relative abundance: D = dominant, A = abundant, C = common, F = few, R = rare, T = trace, P = present (numerical values are abundance in percent) -
Minor-element chemical analyses of Hole 55-433C
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Minor-element chemical analyses of Hole 55-433B
This dataset has no description
