Laurentia's Grenville Loop: Tracking Rodinia Across the Mesoproterozoic to Neoproterozoic Boundary

Laurentia's Grenville Loop: Tracking Rodinia Across the Mesoproterozoic to Neoproterozoic Boundary

Magnetics Information Consortium (MagIC) via YouTube Direct link

Inclination correction using the elongation/inclination method

16 of 23

16 of 23

Inclination correction using the elongation/inclination method

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Laurentia's Grenville Loop: Tracking Rodinia Across the Mesoproterozoic to Neoproterozoic Boundary

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  1. 1 Intro
  2. 2 The well-dated Keweenawan Track mild post-emplacement thermal histories
  3. 3 Late Mesoproterozoic Laurentia paleogeography ~25 Myr of rifting and fast plate motion
  4. 4 No date, No rate
  5. 5 Previous age interpretation for the Jacobsville Formation
  6. 6 Field and radiometric constraints on Jacobsville deposition and deformation
  7. 7 Detrital zircon maximum deposition age constraints using CA-ID-TIMS
  8. 8 Age constraints on faulting from U-Pb dates on late kinematic fault breccia calcite
  9. 9 Field and geochronology constraints on Jacobsville deposition and deformation
  10. 10 Jacobsville paleomagnetism previous work
  11. 11 Siltstone and fine-grained sandstone beds in the Jacobsville Formation
  12. 12 Jacobsville paleomagnetism high resolution thermal demagnetization
  13. 13 Red bed paleomagnetism high-resolution thermal demagnetization
  14. 14 Positive Intraformational conglomerate test
  15. 15 Fold test provides age constraints
  16. 16 Inclination correction using the elongation/inclination method
  17. 17 Revisiting the Adirondack Highlands thermochronology
  18. 18 New geochronology data from the Adirondack Highlands
  19. 19 New thermochronology data from the Adirondack Highlands
  20. 20 Laurentia at the Center of Rodinia Supercontinent
  21. 21 Implication for the age of the Grenville Loop
  22. 22 Revisiting the Grenville poles Brown and McEnroe, 2012
  23. 23 Laurentia's slowdown after the onset of Grenvillian orogeny

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