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Gondwana Research, ISSN 1342-937X, 05/2012, Volume 21, Issue 4, pp. 987 - 993
Supercontinents play an important role in Earth's history. The exact definition of what constitutes a supercontinent is difficult to establish. Here the... 
Columbia | Pangaea | Supercontinent tectonics | Rodinia | Nuna | CONTINENTS | CONFIGURATION | NORTH CHINA | BREAK-UP | PALEO-MESOPROTEROZOIC SUPERCONTINENT | NEOPROTEROZOIC SUPERCONTINENT | RODINIA SUPERCONTINENT | PALEOMAGNETIC EVIDENCE | GEOSCIENCES, MULTIDISCIPLINARY | DYKE SWARMS | LAURENTIA
Journal Article
Gondwana Research, ISSN 1342-937X, 06/2015, Volume 27, Issue 4, pp. 1407 - 1418
The Proterozoic world was shaped by the Paleo-Mesoproterozoic Columbia and Neoproterozoic Rodinia supercontinents. The North China Craton (NCC) is an integral... 
Geochronology | Columbia–Rodinia transition | North China Craton | Mafic dykes | Mantle plume | Columbia-Rodinia transition | Earth | Mantle | Cratons | Analysis | Tectonics (Geology)
Journal Article
Geology, ISSN 0091-7613, 03/2015, Volume 43, Issue 5, pp. 459 - 462
The snowball Earth hypothesis predicts globally synchronous glaciations that persisted on a multimillion year time scale. Geochronological tests of this... 
KATANGA SUPERGROUP | GEOLOGY | AGE CONSTRAINTS | BREAKUP | RODINIA | NAMIBIA | SNOWBALL | STRATIGRAPHY | MACKENZIE MOUNTAINS | RE-OS GEOCHRONOLOGY | Glacial epoch | Geochronology | Analysis
Journal Article
Geology, ISSN 0091-7613, 04/2011, Volume 39, Issue 4, pp. 299 - 302
The Jiangnan fold belt separates the Yangtze and Cathaysia blocks in South China and has long been considered Grenvillian in age in order to place South China... 
GEOLOGY | MANTLE PLUME | BREAK-UP | YANGTZE BLOCK | VOLCANIC-ROCKS | RODINIA | MAGMATISM | JIANGNAN OROGEN | GEOCHEMICAL EVIDENCE | CATHAYSIA BLOCKS | Orogeny | Neoproterozoic Era | Research
Journal Article
Geology, ISSN 0091-7613, 10/2012, Volume 40, Issue 10, pp. 875 - 878
Detrital zircon spectra reflect the tectonic setting of the basin in which they are deposited. Convergent plate margins are characterized by a large proportion... 
AUSTRALIA | GEOLOGY | NORTH-ATLANTIC | BELT | APPALACHIANS | CONSTRAINTS | BREAKUP | LAURENTIAN MARGIN | RODINIA | AGES | SEDIMENTARY-ROCKS | Environmental aspects | Basins (Geology) | Geomorphology | Research | Tectonics (Geology)
Journal Article
Precambrian Research, ISSN 0301-9268, 2008, Volume 160, Issue 1, pp. 94 - 107
The Tarim Craton, located in northwestern China, is one of the largest cratons in China. Based on the tectonic evolution and stratigraphic sequence, the craton... 
Tarim Craton | Precambrian | Rodinia | GEOSCIENCES, MULTIDISCIPLINARY | CHINA | BLOCK | BREAKUP | VOLCANIC-ROCKS | MAGMATISM | MOUNTAINS | AGES | GEOCHEMISTRY
Journal Article
Geophysical Research Letters, ISSN 0094-8276, 01/2019, Volume 46, Issue 2, pp. 678 - 688
Journal Article
2016, Geological society special publication, ISBN 9781862397330, Volume no. 424., 297
The supercontinent-cycle hypothesis attributes planetary-scale episodic tectonic events to an intrinsic self-organizing mode of mantle convection, governed by... 
Continents | Rodinia (Supercontinent) | Pangaea (Supercontinent)
Book
Precambrian Research, ISSN 0301-9268, 08/2014, Volume 249, pp. 129 - 143
•We report six ∼1110Ma U–Pb ages (Umkondo LIP) from dyke swarms of southern Africa.•The dykes define up to three radiating swarms centered on the craton... 
Geochronology | Kalahari craton | Mesoproterozoic | Dyke swarms | Large Igneous Province | Rodinia
Journal Article
Precambrian Research, ISSN 0301-9268, 2005, Volume 136, Issue 2, pp. 107 - 123
As the lowest volcanics-bearing unit of the Neoproterozoic succession, the Beiyixi Formation is the key to understanding the early response to the breakup of... 
Glaciation | Bimodal volcanism | Tarim Block | Neoproterozoic | SHRIMP data | Rodinia
Journal Article
Precambrian Research, ISSN 0301-9268, 05/2019, Volume 324, pp. 18 - 31
•Three Precambrian phases of igneous activities in southern Tarim identified.•Tectonic evolution of Tarim from breakup of Columbia to assemblage of... 
Precambrian evolution | Southern Tarim terrane | Columbia breakup | Rodinia assembly | MAGMATIC EVENTS | A-TYPE GRANITES | NW CHINA | NORTHWEST CHINA | VOLCANIC-ROCKS | RODINIA SUPERCONTINENT | DISCRIMINATION DIAGRAMS | SOUTHERN MARGIN | GEOSCIENCES, MULTIDISCIPLINARY | PB ZIRCON GEOCHRONOLOGY | TECTONIC FRAMEWORK | Magmatism | Cratons | Tectonics (Geology)
Journal Article
Journal of Asian Earth Sciences, ISSN 1367-9120, 06/2018, Volume 158, pp. 240 - 252
[Display omitted] •First well-established Neoproterozoic stratigraphic framework of the Tarim Craton.•North-south differentiation of the stratigraphic... 
Evolution | Stratigraphy | Tarim | Rift basin | Neoproterozoic | Rodinia | MANTLE PLUME | BREAK-UP | CRUSTAL EVOLUTION | NORTHWEST CHINA | SNOWBALL EARTH | RODINIA SUPERCONTINENT | GEOSCIENCES, MULTIDISCIPLINARY | POLAR WANDER | PB ZIRCON GEOCHRONOLOGY | SOUTH CHINA | TECTONIC FRAMEWORK | Carbonates | Glacial epoch | Cratons | Tectonics (Geology)
Journal Article
Earth and Planetary Science Letters, ISSN 0012-821X, 1999, Volume 173, Issue 3, pp. 171 - 181
Mafic to ultramafic dykes and sills in South China, dated as 828±7 Ma old, are identical in age to the 827±6 Ma Gairdner Dyke Swarm in Australia, thought to be... 
South China Block | supercontinents | tectonics | mantle plumes | Neoproterozoic | Rodinia | Supercontinents | Tectonics | Mantle plumes | AUSTRALIA | CONVECTION | South China block | EAST ANTARCTICA | MAGMATISM | MARGINS | FLOOD BASALTS | GEOCHEMISTRY & GEOPHYSICS | GONDWANALAND | LAURENTIA | SUPERCONTINENT RODINIA
Journal Article
Journal of Asian Earth Sciences, ISSN 1367-9120, 2009, Volume 35, Issue 2, pp. 167 - 179
Zircon and baddeleyite U–Pb ages and geochemistry of the Neoproterozoic mafic dyke swarms at the northern margin of the Tarim Block, NW China, are reported... 
Mafic dyke swarm | Rodinia breakup | Tarim | Petrogenesis | MAGMATIC EVENT | NORTHWEST CHINA | VOLCANIC-ROCKS | RODINIA | FLOOD BASALTS | MANTLE SUPERPLUME | CONTINENTAL BREAKUP | GEOSCIENCES, MULTIDISCIPLINARY | U-PB ZIRCON | DRILL-CORE SAMPLES | SOUTH CHINA | Earth | Geochronology | Rocks, Igneous | Lithosphere | Geophysics | Tectonics (Geology) | Mantle | Mines and mineral resources
Journal Article