Geology Reference
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Jaeger JM, Nittrouer CA (1995) Tidal controls on the formation
of fine-scale sedimentary strata near the Amazon river
mouth. Mar Geol 125:259-281
Kamo SL, Davis DW (1994) Reassessment of Archean crustal
development in the Barberton Mountain Land, South Africa,
based on U-Pb dating. Tectonics 13:167-192
Klein GD (1977) Clastic tidal facies. Continuing Education
Publication Company, Champaign IL, 149 p
Knoll AH, Walter M et al. (2004) The Ediacaran Period: a
new addition to the Geologic Time Scale. Terminal
Proterozoic Subcommission of the International Commission
on Stratigraphy
Kocurek G, Fielder G (1982) Adhesion structures. J Sediment
Petrol 52:1229-1241
Kreisa R, Moiola RJ (1986) Sigmoidal tidal bundles and
other tide-generated sedimentary structures of the Curtis
Formation, Utah. Geol Soc Am Bull 97:381-387
Kvale EP, Archer AW (1991) Characteristics of two,
Pennsylvanian-age, semi-diurnal tidal deposits in the Illinois
Basin, USA. Can Soc Petrol Geol Mem 16:179-188
Kvale EP, Johnson HW et al (1999) Calculating lunar retreat
rates using tidal rhythmites. J Sediment Res 69:1154-1168
Lambeck K (1980) The earth's variable rotation: geophysical
causes and consequences. Cambridge University Press,
Cambridge, 449 p
Lemon NM, Gostin VA (1990) Glacigenic sediments of the
late Proterozoic Elatina Formation and equivalents,
Adeliade Geosyncline, South Australia. In: Evolution of a
Late Precambrian-Early Palaeozoic Rift complex: the
Adelaide Geosyncline. Geol Soc Aust Spec Publ 16:149-163
Noffke N, Krumbein WE (1999) A quantitative approach to
sedimentary surface structures contoured by the interplay of
microbial colonization and physical dynamics. Sedimentology
46:417-426
Noffke N, Gerdes G et al (2001) Microbially induced sedimen-
tary structures indicating climatological, hydrological and
depositional conditions within recent and Pleistocene coastal
facies zones, southern Tunisia. Facies 44:23-30
Noffke N, Knoll AH, Grotzinger JP (2002) Sedimentary
controls on the formation and preservation of microbial
mats in siliciclastic deposits: a case study from the upper
Neoproterozoic Nama Group, Namibia. Palaios 17:1-14
Noffke N, Gerdes G, Klenke Th (2003a) Benthic cyanobacteria
and their influence on the sedimentary dynamics of peritidal
depositional systems (siliciclastic, evaporate salty and
evaporitic carbonatic). Earth Sci Rev 12:1-14
Noffke N, Hazen R, Nhleko N (2003b) Earth's earliest microbial
mats in a siliciclastic marine environment (Mozaan Group,
2.9 Ga, South Africa). Geology 31:673-676
Noffke N, Eriksson KA, Hazen RE, Simpson EL (2006) A new
window into early life: microbial mats in Earth's oldest
siliciclastic tidal flats (3.2 Ga Moodies Group, South Africa).
Geology 34:253-256
Noffke N, Beukes N et al (2008) An actualistic perspective into
Archean worlds - (cyano) bacterially induced sedimentary
structures in the siliciclastic Nhlazatse Section, 2.9 Ga
Pongola Supergroup, South Africa. Geobiology 6:5-20
Ojakangas RW (1983) Tidal deposits in the early Proterozoic
basin of the Lake Superior region-the Palms and the
Pokegema Formations: evidence for subtidal-shelf depo-
sition of Superior-type banded iron-formations. Early
Proterozoic Geology of the Great Lakes Region. Geol Soc
Am Mem 160:49-66
Ojakangas GW (1996) Cyclic tidal laminations in the Early
Proterozoic Pokegama Formation: digital image analysis and
computer modeling (abstrat). In: 42nd Institute of Lake
Superior geology, pp 44-45
Page RW (1983a) Timing of superposed volcanism in the
Proterozoic Mount Isa Inlier, Australia. Precamb Res
21:223-245
Page RW (1983b) Chronology of magmatism, skarn formation
and uranium mineralization, Mary Kathleen, Queensland,
Australia. Econ Geol 85:838-853
Pidgeon RT, Horwitz RC (1991) The origin of olistoliths in
Proterozoic rocks of the Ashburton Trough, Western
Australia, using zircon U-Pb isotopic characteristics. Austr
J Earth Sci 38:55-63
Preiss WV (1987) The Adelaide Geosyncline. South Aust Dept
Mines Energy Bull 53, 438 p
Rinehart JS (1972a) Fluctuations in geyser activity caused by
variations in earth tidal forces, barometric pressure, and
tectonic stresses. J Geophys Res 77:342-350
Rinehart JS (1972b) 18.6-year earth tide regulates geyser
activity. Science 177:346-347
Rinehart JS (1974) Geysers. Am Geophys Union Trans
56:1052-1062
Schmidt PW, Williams GE (1995) The Neoproterozoic climatic
paradox: equatorial palaeolatitude for Marinoan glaciation
near sea level in South Australia. Earth Planet Sci Lett
134:107-124
Simonson BM (1985) Sedimentological constraints on the
origins of Precambrian iron-formations. Geol Soc Am Bull
96:244-252
Simpson EL, Eriksson KA (1991) Depositional facies and
controls on parasequence development in siliciclastic tidal
deposits from the early Proterozoic, upper Mount Guide
Quartzite, Mount Isa Inlier, Australia. Can Soc Petrol Geol
Mem 16:371-387
Soegaard K, Eriksson KA (1985) Evidence for tidal, wave and
storm interaction on a Precambrian shelf: the 1.7 Ga Ortega
Group, New Mexico. J Sediment Petrol 55:672-684
Sonett CP, Kvale EP et al (1996) Late proterozoic and Paleozoic
tides, retreat of the moon and rotation of the earth. Science
273:100-104
Tankard AJ, Jackson MPA et al (1982) Crustal evolution of
Southern Africa. Springer, New York, 523 p
Tessier B (1993) Upper intertidal rhythmites in the Mont-Saint-
Michel Bay (NW France): perspectives for paleoreconstruc-
tion. Mar Geol 110:355-367
Trendall AF (1973) Varve cycles in the Weeli Wolli Formation
of the Precambrian Hamersley Group, Western Australia.
Econ Geol 68:1089-1097
Trendall AF (1983) The Hamersley Basin. Iron-formation: facts
and problems. Elsevier, Amsterdam, pp 69-129
Trendall AF, Blockley JG (1970) The iron formations of the
Precambrian Hamersley Group, Western Australia. Geol
Surv West Aust Bull 119:366p
Trendall AF et al (1990) Percise zircon U-Pb chronological
comparison of the volcano-sedimentary sequences of
the Kaapvaal and Pilbara Cratons between about 3.1 and
2.4 Ga. In: 3rd International Archean Symposium, Perth,
pp 81-83
 
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