25,434 Works

(Table 1A) Lead and strontium isotope composition for selected samples from DSDP Sites 92-597 to 92-601

T J Barrett, Paul N Taylor, Ian Jarvis & J Lugowski
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(Table 1) Attenuation coefficient of lateral propagating light in sea ice, southern Beaufort Sea, supplement to: Zhao, Jinping; Li, Tao; Barber, David; Ren, Jingping; Pućko, Monika; Li, Shujiang; Li, Xiang (2010): Attenuation of lateral propagating light in sea ice measured with an artificial lamp in winter Arctic. Cold Regions Science and Technology, 61(1), 6-12

Jinping Zhao, Tao Li, David Barber, Jingping Ren, Monika Pućko, Shujiang Li & Xiang Li
The attenuation property of a lateral propagating light (LPL) in sea ice was measured using an artificial lamp in the Canadian Arctic during the 2007/2008 winter. A measurement method is proposed and applied whereby a recording instrument is buried in the sea ice and an artificial lamp is moved across the instrument. The apparent attenuation coefficient µ(lamda) for the lateral propagating light is obtained from the measured logarithmic relative variation rate. With the exception of...
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(Table 3) Sr-Nd-Pb isotope ratios of selected Cocos Plate samples

Seth Sadofski, Kaj Hoernle, Svend Duggen, Folkmar Hauff, Reinhard Werner & Carl-Dieter Garbe-Schönberg
Sediment depth is given in mbsf. For Pb and Nd data of Holes 170-1039C and 170-1040C see Hoernle et al. (2008) dataset: doi:10.1594/PANGAEA.773165.
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Geochemistry of oceanic crust of the Cocos Plate, supplement to: Sadofski, Seth; Hoernle, Kaj; Duggen, Svend; Hauff, Folkmar; Werner, Reinhard; Garbe-Schönberg, Carl-Dieter (2009): Geochemical variations in the Cocos Plate subducting beneath Central America: implications for the composition of arc volcanism and the extent of the Galápagos Hotspot influence on the Cocos oceanic crust. International Journal of Earth Sciences, 98(4), 901-913

Seth Sadofski, Kaj Hoernle, Svend Duggen, Folkmar Hauff, Reinhard Werner & Carl-Dieter Garbe-Schönberg
New geochemical data from the Cocos Plate constrain the composition of the input into the Central American subduction zone and demonstrate the extent of influence of the Galápagos Hotspot on the Cocos Plate. Samples include sediments and basalts from Ocean Drilling Program (ODP) Site 1256 outboard of Nicaragua, gabbroic sills from ODP Sites 1039 and 1040, tholeiitic glasses from the Fisher Ridge off northwest Costa Rica, and basalts from the Galápagos Hotspot Track outboard of...
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Massic magnetic susceptibility and CaCO3 content at the P. ohmi and T. hugii zones from the Rio Argos X.Ag-1 section, southeastern Spain, supplement to: Martinez, Mathieu; Pellenard, Pierre; Deconinck, Jean-François; Monna, Fabrice; Riquier, Laurent; Boulila, Slah; Moiroud, Mathieu; Company, M (2012): An orbital floating time scale of the Hauterivian/Barremian GSSP from a mangetic susceptibility signal (Rio Argos, Spain). Cretaceous Research, 36, 106-115

Mathieu Martinez & Mathieu Moiroud
An orbital floating time scale of the Hauterivian-Barremian transition (Early Cretaceous) is proposed using high-resolution magnetic susceptibility measurements. Orbital tuning was performed on the Río Argos section (southeast Spain), the candidate for a Global boundary Stratotype Section and Point (GSSP) for the Hauterivian-Barremian transition. Spectral analyses of MS variations, coupled with the frequency ratio method, allow the recognition of precession, obliquity and eccentricity frequency bands. Orbitally-tuned magnetic susceptibility provides minimum durations for ammonite biozones. The...
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(Table 3) Concentration of SO4 and Ba in pore fluids from ODP Leg 127/128 sites

Marta T von Breymann, Hans-Jürgen Brumsack & Kay-Christian Emeis
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Sample corelog of ODP Hole 160-970B

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-970A

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-969F

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-969D

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-969E

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-969B

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-969C

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-968B

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-969A

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-968C

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-967F

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-968A

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-967D

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-967E

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-967C

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-967B

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-966F

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-967A

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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Sample corelog of ODP Hole 160-966D

Kay-Christian Emeis, Alastair H F Robertson & Shipboard Scientific Party
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  • 2012
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