about
Sea shell diversity and rapidly evolving secretomes: insights into the evolution of biomineralizationThe Evolution of Silicon Transport in EukaryotesA perfect (geochemical) storm yielded exceptional fossils in the early oceanMechanism for Burgess Shale-type preservationAnimal evolution, bioturbation, and the sulfate concentration of the oceansThe worm turned, and the ocean followedFormation of the 'Great Unconformity' as a trigger for the Cambrian explosion.Molecular phylogeny and divergence times of deuterostome animals.Earth science. Causes of the Cambrian explosion.Crustacean-derived biomimetic components and nanostructured composites.Vitamin D: a dynamic molecule. How relevant might the dynamism for a vitamin be?Geochemical evidence for widespread euxinia in the later Cambrian ocean.Environmental context for the terminal Ediacaran biomineralization of animals.Innovation not recovery: dynamic redox promotes metazoan radiations.The geologic history of seawater pH.Low marine sulphate and protracted oxygenation of the Proterozoic biosphereEdiacaran in Uruguay: palaeoclimatic and palaeobiological implicationsTube structure and original composition of Sinotubulites: shelly fossils from the late Neoproterozoic in southern Shaanxi, China
P2860
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P2860
description
im Januar 2004 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована у 2004
@uk
name
Seawater chemistry and the advent of biocalcification
@en
Seawater chemistry and the advent of biocalcification
@nl
type
label
Seawater chemistry and the advent of biocalcification
@en
Seawater chemistry and the advent of biocalcification
@nl
prefLabel
Seawater chemistry and the advent of biocalcification
@en
Seawater chemistry and the advent of biocalcification
@nl
P356
P1433
P1476
Seawater chemistry and the advent of biocalcification
@en
P2093
Juske Horita
Sean T. Brennan
P356
10.1130/G20251.1
P407
P577
2004-01-01T00:00:00Z
P819
2004Geo....32..473B