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Lang, Thomas H (1986): (Table 1) Distribution of nannofossils in DSDP Hole 87-582B. PANGAEA, https://doi.org/10.1594/PANGAEA.250385, In supplement to: Lang, TH (1986): Calcareous nannofossils from the Nankai Trough and Japan Trench, Deep Sea Drilling Project Leg 87. In: Kagami, H; Karig, DE; Coulbourn, WT; et al. (eds.), Initial Reports of the Deep Sea Drilling Project, Washington (U.S. Govt. Printing Office), 87, 573-585, https://doi.org/10.2973/dsdp.proc.87.109.1986

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Related to:
DSDP (1989): Data from the Deep Sea Drilling Project. Sediment, hard rock and reference files. National Geophysical Data Center, National Environmental Satellite, Data and Information Service, National Oceanic and Atmospheric Administration, U.S. Department of Commerce, 1, CD-ROM
Project(s):
Coverage:
Latitude: 31.775000 * Longitude: 133.913300
Date/Time Start: 1982-06-28T00:00:00 * Date/Time End: 1982-06-28T00:00:00
Minimum DEPTH, sediment/rock: 48.60 m * Maximum DEPTH, sediment/rock: 741.80 m
Event(s):
87-582B * Latitude: 31.775000 * Longitude: 133.913300 * Date/Time: 1982-06-28T00:00:00 * Elevation: -4879.0 m * Penetration: 749.4 m * Recovery: 271.4 m * Location: North Pacific * Campaign: Leg87 * Basis: Glomar Challenger * Device: Drilling/drill rig (DRILL) * Comment: 66 cores; 633.8 m cored; 67.1 m drilled; 42.8 % recovery
Comment:
Species abundance: A = abundant (1-10 specimens per field of view at 1000X), C = common (1 specimen in 2-10 fields of view), F = few (1 specimen in 11-100 fields of view), R = rare (1 specimen in 101-1000 fields of view). - = absent.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethodComment
1EpochEpochLang, Thomas H
2Nannofossil zoneNannos zoneLang, Thomas H
3DEPTH, sediment/rockDepthmGeocode
4Sample code/labelSample labelLang, Thomas HODP sample designation
5Nannofossil abundanceNannos abundLang, Thomas HAbundance estimateB = barren (no nannofossils present), R = rare (1 nannofossil in 2-10 fields of view at 1560X), F = few (1-10 nannofossils per field), C = common (10-100 nannofossils per field)
6Nannofossils preservationNannos preservLang, Thomas HVG = very good, G = good, M = moderate, P = poor
7Braarudosphaera bigelowiiB. bigelowiiLang, Thomas HAbundance estimate
8Calcidiscus leptoporusC. leptoporusLang, Thomas HAbundance estimate
9Calcidiscus macintyreiC. macintyreiLang, Thomas HAbundance estimate
10Ceratolithus cristatusC. cristatusLang, Thomas HAbundance estimate
11Ceratolithus telesmusC. telesmusLang, Thomas HAbundance estimate
12Coccolithus pelagicusC. pelagicusLang, Thomas HAbundance estimate
13Crenalithus doronicoidesC. doronicoidesLang, Thomas HAbundance estimate
14Cricolithus jonesiiC. jonesiiLang, Thomas HAbundance estimate
15Discoaster brouweriD. brouweriLang, Thomas HAbundance estimate
16Discoaster pentaradiatusD. pentaradiatusLang, Thomas HAbundance estimate
17Discoaster variabilisD. variabilisLang, Thomas HAbundance estimate
18Emiliania huxleyiE. huxleyiLang, Thomas HAbundance estimate
19Gephyrocapsa caribbeanicaG. caribbeanicaLang, Thomas HAbundance estimate
20Gephyrocapsa oceanicaG. oceanicaLang, Thomas HAbundance estimate
21Helicosphaera carteriH. carteriLang, Thomas HAbundance estimate
22Helicosphaera selliiH. selliiLang, Thomas HAbundance estimate
23Pontosphaera japonicaP. japonicaLang, Thomas HAbundance estimate
24Pontosphaera sp.Pontosphaera sp.Lang, Thomas HAbundance estimatecf. P. multipora
25Pseudoemiliania lacunosaP. lacunosaLang, Thomas HAbundance estimate
26Reticulofenestra pseudoumbilicusR. pseudoumbilicusLang, Thomas HAbundance estimate
27Rhabdosphaera clavigeraR. clavigeraLang, Thomas HAbundance estimate
28Rhabdosphaera styliferaR. styliferaLang, Thomas HAbundance estimate
29Scapholithus fossilisS. fossilisLang, Thomas HAbundance estimate
30Sphenolithus sp.Sphenolithus sp.Lang, Thomas HAbundance estimate
31Syracosphaera pulchraS. pulchraLang, Thomas HAbundance estimate
32Umbilicosphaera mirabilisU. mirabilisLang, Thomas HAbundance estimate
33Cyclococcolithus sp.Cyclococcolithus sp.Lang, Thomas HAbundance estimategenus questionable
Size:
3241 data points

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