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Quantifying Inclination Shallowing and Representing Flattening Uncertainty in Sedimentary Paleomagnetic Poles
James Pierce
, Yiming Zhang
, Eben B. Hodgin
,
Nicholas L. Swanson-Hysell
Research output
:
Contribution to journal
›
Article
›
peer-review
9
Scopus citations
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Dive into the research topics of 'Quantifying Inclination Shallowing and Representing Flattening Uncertainty in Sedimentary Paleomagnetic Poles'. Together they form a unique fingerprint.
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Keyphrases
Clastic Sedimentary Rocks
25%
Common Mean
25%
Creek
25%
Deep Time
25%
Detrital Remanent Magnetization
25%
Geomagnetic Field
25%
Inclination Shallowing
100%
Inherent Uncertainty
25%
Iron Oxide
100%
Kent Distribution
25%
Lava Flow
25%
Magnetization
25%
Magnetization Vector
50%
Paleolatitude
25%
Paleomagnetic Pole
100%
Paleosecular Variation
25%
Pigmentary
50%
Post-depositional Processes
25%
Present Challenges
25%
Red Beds
25%
Remanence
25%
Sandstone
25%
Variation Model
25%
Volcanic
50%
Earth and Planetary Sciences
Depositional Process
14%
Flattening
100%
Geomagnetism
14%
Lava Flow
14%
Paleolatitude
14%
Red Bed
14%
Remanence
14%
Remanent Magnetization
14%
Sandstone
14%
Sedimentary Rock
14%
Engineering
Process Result
100%