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Lhasa terrane

  • Two Contrasting Phanerozoic Orogenic Systems Revealed by Hafnium Isotope Data William J

    Two Contrasting Phanerozoic Orogenic Systems Revealed by Hafnium Isotope Data William J

  • Initial Growth of the Northern Lhasaplano, Tibetan Plateau in the Early Late Cretaceous (Ca

    Initial Growth of the Northern Lhasaplano, Tibetan Plateau in the Early Late Cretaceous (Ca

  • Paleomagnetic Constraints on the Mesozoic Drift of the Lhasa Terrane (Tibet) from Gondwana to Eurasia

    Paleomagnetic Constraints on the Mesozoic Drift of the Lhasa Terrane (Tibet) from Gondwana to Eurasia

  • Post-Collisional Potassic Magmatism in the Eastern Lhasa Terrane, South Tibet: Products of Partial Melting of Mélanges in a Continental Subduction Channel

    Post-Collisional Potassic Magmatism in the Eastern Lhasa Terrane, South Tibet: Products of Partial Melting of Mélanges in a Continental Subduction Channel

  • Himalaya - Southern-Tibet: the Typical Continent-Continent Collision Orogen

    Himalaya - Southern-Tibet: the Typical Continent-Continent Collision Orogen

  • Late Paleozoic and Mesozoic Evolution of the Lhasa Terrane in the Xainza MARK Area of Southern Tibet

    Late Paleozoic and Mesozoic Evolution of the Lhasa Terrane in the Xainza MARK Area of Southern Tibet

  • Lhasa Terrane in Southern Tibet Came from Australia

    Lhasa Terrane in Southern Tibet Came from Australia

  • Cambrian Ultrapotassic Rhyolites from the Lhasa Terrane, South Tibet: Evidence for Andean-Type Magmatism Along the Northern Active Margin of Gondwana

    Cambrian Ultrapotassic Rhyolites from the Lhasa Terrane, South Tibet: Evidence for Andean-Type Magmatism Along the Northern Active Margin of Gondwana

  • Initial Rifting of the Lhasa Terrane from Gondwana

    Initial Rifting of the Lhasa Terrane from Gondwana

  • Global Plate Boundary Evolution and Kinematics Since the Late Paleozoic

    Global Plate Boundary Evolution and Kinematics Since the Late Paleozoic

  • Active Uplift of Southern Tibet Revealed Active Uplift of Southern Tibet Revealed

    Active Uplift of Southern Tibet Revealed Active Uplift of Southern Tibet Revealed

  • Opening of the Neo-Tethys Ocean and the Pangea B to Pangea a Transformation During the Permian

    Opening of the Neo-Tethys Ocean and the Pangea B to Pangea a Transformation During the Permian

  • The Cretaceous and Cenozoic Tectonic Evolution of Southeast Asia

    The Cretaceous and Cenozoic Tectonic Evolution of Southeast Asia

  • A Long-Lived Indian Ocean Slab: Deep Dip Reversal Induced by The

    A Long-Lived Indian Ocean Slab: Deep Dip Reversal Induced by The

  • Provenance of Late Triassic Sediments in Central Lhasa Terrane, Tibet and Its Implication

    Provenance of Late Triassic Sediments in Central Lhasa Terrane, Tibet and Its Implication

  • Localized Foundering of Indian Lower Crust in the India–Tibet Collision Zone

    Localized Foundering of Indian Lower Crust in the India–Tibet Collision Zone

  • Extending Full-Plate Tectonic Models Into Deep Time: Linking the Neoproterozoic and the Phanerozoic

    Extending Full-Plate Tectonic Models Into Deep Time: Linking the Neoproterozoic and the Phanerozoic

  • Evidence from a Gabbro-Diorite Complex in the Gangdese Magmatic

    Evidence from a Gabbro-Diorite Complex in the Gangdese Magmatic

Top View
  • Along-Strike Diachroneity in Deposition of the Kailas Formation in Central Southern Tibet: Implications for Indian Slab Dynamics GEOSPHERE; V
  • Pre‐Oxfordian (>163 Ma) Ophiolite Obduction in Central Tibet
  • A Tectonic Model Reconciling Evidence for the Collisions Between India, Eurasia and Intra-Oceanic Arcs of the Central-Eastern Tethys
  • PDF Linkchapter
  • Geological Society of America Bulletin
  • Palaeozoic and Mesozoic Geological
  • Discovery of the Early Jurassic Gajia Mélange in the Bangong–Nujiang
  • Jurassic Sedimentation in the South-Central Qiangtang Terrane Reveals Successive Terrane Collisions in Central Tibet
  • Potential Undiscovered Oil and Gas Resources of Region 3
  • The Ancestral Lhasa River: a Late Cretaceous Trans-Arc River That Drained the Proto–Tibetan Plateau Andrew K
  • A Late Cretaceous Trans-Arc River That Drained the Proto–Tibetan Plateau Andrew K
  • ASIA: Hypercollision Tectonics
  • Metcalfe-2006-Gondwana-Res.Pdf
  • Lower Cretaceous Strata in the Lhasa Terrane, Tibet, with Implications for Understanding the Early Tectonic History of the Tibetan Plateau
  • Sterntectonophysics in Press.Pdf
  • The Gangdese Retroarc Thrust Belt Revealed
  • Jurassic to Neogene Quantitative Crustal Thickness Estimates In
  • Detrital Zircon Geochronology of Pre‐Tertiary Strata in the Tibetan‐Himalayan Orogen G


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