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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Eocambrian
Eocambrian granite clasts in southern British Columbia shed light on Cordilleran hinterland crust
2.5 b.y. of punctuated Earth history as recorded in a single rock
Deep burial of the footwall of the northern Snake Range decollement, Nevada
Paleomagnetism of Eocambrian Long Range dykes and Double Mer Formation from Labrador, Canada
Pacific margins of Laurentia and East Antarctica-Australia as a conjugate rift pair: Evidence and implications for an Eocambrian supercontinent
Fold and Thrust Propagation in the Western Himalaya Based on a Balanced Cross Section of the Surghar Range and Kohat Plateau, Pakistan
Interpretation of Crustal Structure from Regional Gravity Anomalies, Ouachita Mountains Area and Adjacent Gulf Coastal Plain
Overview of the Central North American Basins and Their Relation to Deep Crustal Structure: ABSTRACT
Regional Facies Distribution and Tectonic Evolution of Appalachian and Ouachita Thrust Belts: ABSTRACT
Upper Precambrian (Eocambrian) Mineral Fork Tillite of Utah: A continental glacial and glaciomarine sequence: Discussion and reply: Discussion
Age and emplacement of the Flat River complex, an Eocambrian sub-volcanic pluton near Durham, North Carolina
This study documents an eruptive center, the instrusive Flat River complex and associated Carolina slate belt volcanic rocks near Durham, North Carolina. The zircon Pb/U age of the granite, granodiorite, quartz diorite, gabbro Flat River complex is 650 ± 30 m.y. Local vent breccias, chilled and protoclastically deformed margins, and petrographic comparisons with the experimental results in the qz-ab-or system confirm that the Flat River complex was emplaced at a depth of less than 1 km and was locally surface breaking. Thus, the Flat River can be viewed as a very shallow fossil volcanic magma chamber and may be typical of many granitoid plutons in the Carolina slate belt. The Flat River was intruded into a pile of coarse, near-vent pyroclastic deposits and lavas of felsic to intermediate composition. Intercalated in these is an exhalative unit of thinly layered to laminated metachert and iron oxide. Shallow to deep (or quiet) probably marine conditions prevailed. Some subaerial pyroclastic rocks may be present in the older parts of this >650-m.y. to 620-m.y.-old sequence of volcanic rocks.