select id,columnx from arkL_columns where dataset_id like 4

View/Edit arkL Database interval - Italy (Maron et al. 2019)

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The age-window currently being used to search for terms for autocompletion is 186.19 -> 291.5964 Ma.
Interval selector: New data?
interval above:South China
parent-intervals:this interval:Italy (Maron et al. 2019)sub-intervals: MA5n; SC2r; MA4; MA3; MA2; SC4; SC3;
interval below:Lower Triassic (Hounslow & Muttoni 2010); Cycle Scaled

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Interval data

intervalx:has added abv?id: 6868  sort:
alternative_term:block label:
formal term:
interval_type:mfs
parent_interval:
dataset: magnetochronology (dataset id = 4)
alt dataset: magnetochronology (dataset id = 77)
TSC Column: id:125
stage:
polarity:
colour:
interval_notes:
compilation_notes:
refs to add:
linked refs:Maron et al. 2019;
preset_duration:
preset_duration_notes:
tracecode; Q1base from event age; Q2top from event age; Q3a duration from base & top


age2020ageeventevent_idpupin intervalageage2020
Top:236.1900 <--- 8988 0.3000 Trachyceras aon TAZ236.19 00236.1875
Base:241.5964 <--- 90690.5600Nevadites secedensis TAZ241.5964 00241.6000
base
notes
comp notes

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Interval References

Maron, M., et al. (2019). New magnetobiostratigraphic results from the Ladinian of the Dolomites and implications for the Triassic geomagnetic polarity timescale. Palaeogeography Palaeoclimatology Palaeoecology. 517: 52-73. gs

Dataset References

Cande, S. C. & Kent, D. V. (1995). Revised calibration of the Geomagnetic Polarity time scale for the Late Cretaceous and Cenozoic. Journal of Geophysical Research. 100: 6093-6095. gs

Channell, J. E., Singer, B. S. & Jicha, B. R. (2020). Timing of Quaternary geomagnetic reversals and excursions in volcanic and sedimentary archives. Quaternary Science Reviews. 228(106114): -. gs

Hansma, J., et al. (2015). Late Devonian carbonate magnetostratigraphy from the Oscar and Horse Spring Ranges, Lennard Shelf, Canning Basin, Western Australia. Earth and Planetary Science Letters. 409: 232-242. gs

Hounslow, M. W. & Balabanov, Y. P. (2018). A geomagnetic polarity timescale for the Permian, calibrated to stage boundaries. In, Lucas, S. G. , and Shen, S. Z. (ed.) The Permian Timescale. Geological Society of London, Special Publications . 450: 61-103. gs

Hounslow, M. K. & Muttoni, G. (2010). The geomagnetic polarity timescale for the Triassic: linkage to stage boundary definitions. In, Lucas, S. G. (ed.) The Triassic Timescale. Geological Society of London, Special Publications . 334: 61-102. gs

Hounslow, M. W. (2020). A geomagnetic polarity time scale for the Carboniferous. Geological Society of London, Special Publications. in press.: -. gs

Husson, D., et al. (2011). Astronomical calibration of the Maastrichtian. Earth and Planetary Science Letters. 305: 328-340. gs

Kent, D. V., et al. (2018). Empirical evidence for stability of the 405-kiloyear Jupiter-Venus eccentricity cycle over hundreds of million years. Proceedings of the National Academy of Sciences, USA. 115(24): 6153-6158. gs

Ogg, J. G. (2020). Chapter 5 - Geomagnetic polarity time scale. In, Gradstein, F. M. , Ogg, J. G. , Schmitz, M. D. , and Ogg, G. M. (ed.) The Geologic Time Scale 2020. Elsevier, Boston, MA 1: 159-192. gs

Raffi, I., Wade, B. S. & Pälike, H. (2020). Chapter 29 - The Neogene Period. In, Gradstein, F. M. , Ogg, J. G. , Schmitz, M. D. , and Ogg, G. M. (ed.) The Geologic Time Scale 2020. Elsevier, Boston, MA 2: 1141-1217. gs

Steiner, M. B. (2006). The magnetic polarity time scale across the Permian Triassic boundary. In, Lucas, S. G. , Cassinis, G. , and Schneider, J. W. (ed.) Non-Marine Permian Biostratigraphy and Biochronology. Geological Society of London, Special Publications . 265: 15-38. gs

Thibault, N., et al. (2012). Astronomical calibration of upper Campanian Maastrichtian carbon isotope events and calcareous plankton biostratigraphy in the Indian Ocean (ODP Hole 762C): implication for the age of the Campanian Maastrichtian boundary. Palaeogeography Palaeoclimatology Palaeoecology. 37- 378: 52-71. gs

Zhang, Y., et al. (2020). Late Triassic magnetostratigraphy from the Germanic Basin and the global correlation of the Carnian Pluvial Episode. Earth and Planetary Science Letters. 541: 1-15. gs