Cover Image Magnetic Methods and the Timing of Geological Processes

Magnetic Methods and the Timing of Geological Processes

Product code: SP373

Print publication date: 27/08/2013

Earth and Solar System History, Stratigraphy, Geological Society of London, GSL Special Publications

Type: Book (Hardback)

Binding: Hardback

ISBN: 9781862393547

Author/Edited by: Edited by L. Jovane, E. Herrero-Bervera, L.A. Hinnov & B.A. Housen

Weight: 1.1kg

Number of pages: 408

Online publication date: 01/07/2013

Lyell Collection URL: https://www.lyellcollection.org/toc/sp/373/1

£110.00

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Full Description

Product Code: SP373

Edited by L. Jovane, E. Herrero-Bervera, L.A. Hinnov & B.A. Housen

Special Publication 373

Magnetostratigraphy is best known as a technique that employs correlation among different stratigraphic sections using the magnetic directions defining geomagnetic polarity reversals as marker horizons. The ages of the polarity reversals provide common tie points among the sections, allowing accurate time correlation. Recently, studies of magnetic methods and the timing of geological processes have acquired a broader meaning, now referring to many types of magnetic measurements within a stratigraphic sequence. Many of these measurements provide correlation and age control not only for the older and younger boundaries of a polarity interval, but also within intervals. Thus, magnetostratigraphy no longer represents a dating tool based only on geomagnetic polarity reversals, but comprises a set of techniques that includes measurements of geomagnetic field parameters, environmental magnetism, rock-magnetic properties, radiometric dating and astronomically forced palaeoclimatic change recorded in sedimentary rocks, and key corrections to magnetic directions related to geodynamics, palaeocurrents, tectonics and diagenetic processes. 

http://sp.lyellcollection.org/content/373/1

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JOVANE, L., HINNOV, L., HOUSEN, B. A. & HERRERO-BARVERA, E. Magnetic methods and the timing of geological processes

Integrated magnetostratigraphy

GUIDRY, E. P., RICHTER, C., ACTON, G. D., CHANNELL, J. E. T., EVANS, H. F., OHNEISER, C., YAMAMOTO, Y. & YAMAZAKI, T. Oligocene–Miocene magnetostratigraphy of deep-sea sediments from the equatorial Pacific (IODP Site U1333)

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Dating tectonic processes with magnetic methods

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Relative palaeointensity for dating geological sequences

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HERRERO-BERVERA, E. & JOVANE, L. On the palaeomagnetic and rock magnetic constraints regarding the age of IODP 325 Hole M0058A

CAMINHA-MACIEL, G. & ERNESTO, M. Characteristic wavelengths in VGP trajectories from magnetostratigraphic data of the Early Cretaceous Serra Geral lava piles, southern Brazil

Palaeoclimatic changes from rock magnetic proxies

GUNDERSON, K. L., KODAMA, K. P., ANASTASIO, D. J. & PAZZAGLIA, F. J. Rock-magnetic cyclostratigraphy for the Late Pliocene–Early Pleistocene Stirone section, Northern Apennine mountain front, Italy

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