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Ooid
Active Ooid Growth Driven by Sediment Transport in a High-Energy Shoal, Little Ambergris Cay, Turks and Caicos Islands
19. Diagenesis of a Seamount Oolite from the West Pacific, Leg 20, Dsdp
Transgressive Oversized Radial Ooid Facies in the Late Jurassic Adriatic Platform Interior: Low-Energy Precipitates from Highly Supersaturated Hypersaline Waters
Deep Sea Drilling Project Initial Reports Volume 89
Paleolatitude Distribution of Phanerozoic Marine Ooids and Cements
Bridging the Gap Between Biological And
Stratigraphy, Paleoceanography, and Evolution of Cretaceous Pacific Guyots: Relics from a Greenhouse Earth Hugh C
Deep Sea Drilling Project Initial Reports Volume 89
Facies Analysis and Sequence Stratigraphy of an Upper Jurassic Carbonate Ramp in the Eastern Alborz Range and Binalud Mountains, NE Iran
Stratigraphy, Micropaleontology, Petrography, Carbonate
Sedimentary Rocks and the Rock Cycle
Experimental Evidence That Ooid Size Reflects a Dynamic Equilibrium
Calcite-Aragonite Seas) and Its Effects on Marine Biological Calcification
Diagenesis in Oolitic Limestones of Morrow (Early Pennsylvanian) Age in Northwestern Arkansas and Adjacent Oklahoma
View of Bahamas Geology 5 1
Sedimentary Geology 395 (2020) 105537
Numerical Modeling of Ooid Size and the Problem of Neoproterozoic Giant Ooids
GENESIS of the UPPER ORDOVICIAN NEDA FORMATION in EASTERN WISCONSIN 1 2 Richard A
Top View
Submarine Hydrothermal Weathering, Global Eustasy, and Carbonate Polymorphism in Phanerozoic Marine Oolites 1
30 Petrisor2003.Pdf
Iron Ooid Beds of the Carolinefjellet Formation, Spitsbergen, Norway Jeremy Mutrux, Harmon Maher, Robert Shuster & Troy Hays
Contribution of Benthic Processes to the Growth of Ooids on a Low-Energy Shore in Cat Island, the Bahamas
Bacterial Community of Oolitic Carbonate Sediments of the Bahamas Archipelago
Non-Skeletal Grains 0 1 Cm Non-Skeletal Grains