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Paleomagnetisk analyse×Bassengsubsidenanalyse×Geokronologisk datering×
FagfeltGeovitenskapGeovitenskapGeovitenskap
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Opprinnelsesår190619781902
OpphavspersonBernard Brunhes and Motonori MatuyamaMcKenzie and SclaterErnest Rutherford and Frederick Soddy
Typetemporal constraint pipelinetectono-sedimentary analysis pipelinetemporal constraint pipeline
Opprinnelig kildeButler, R. F. (1992). Paleomagnetism: Magnetic Domains to Geologic Terranes. Blackwell Scientific Publications. link ↗Sclater, J. G., & Christie, P. A. F. (1980). Continental stretching: An explanation of the post-mid-Cretaceous subsidence of the Central North Sea Basin. Journal of Geophysical Research, 85(B7), 3711–3739. DOI ↗Dickin, A. P. (2005). Radiogenic Isotope Geology (2nd ed.). Cambridge University Press. DOI ↗
Aliaspaleomagnetic dating, magnetostratigraphy, paleomagnetic remanencetectonic subsidence, backstripping, thermal history analysisradiometric dating, isotopic dating, age determination
Relaterte343
SammendragPaleomagnetism analysis is the study of ancient magnetic properties of rocks, measuring fossil magnetization to determine paleomagnetic field history and assign geological ages. Pioneered by Brunhes (1906) and systematized by Tauxe (2010), this method reveals geomagnetic reversals, polar wander paths, and paleomagnetic chronology independent of fossil biostratigraphy. Analysis integrates laboratory rock magnetism with field sampling to build high-resolution timescales and constrain plate motion.Basin subsidence analysis is the quantitative study of how sedimentary basins deepen over geological time, driven by tectonics, isostasy, and load. Formalized by McKenzie (1978) and Sclater and Christie (1980), this method reveals the mechanical causes of basin development, predicts subsurface temperature and pressure histories, and constrains petroleum generation. Analysis integrates well stratigraphy, seismic geometry, gravity data, and thermal models to reconstruct basin evolution.Geochronological dating is the determination of absolute ages of rocks and minerals using the decay of radioactive isotopes. Pioneered by Rutherford and Soddy (1902), this method provides numerical anchors for geological timescales and enables quantitative understanding of geological processes. Modern techniques (K-Ar, Rb-Sr, U-Pb, 40Ar/39Ar) span from recent to ancient events and are essential for calibrating relative chronologies and assessing rates of geological change.
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ScholarGateSammenlign metoder: Paleomagnetism Analysis · Basin Subsidence Analysis · Geochronological Dating. Hentet 2026-06-20 fra https://scholargate.app/no/compare