References


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Ague, J. J., and G.H. Brimhall (1988) Magmatic arc assymetry and distribution of anomalous plutonic bets in the batholiths of California: Effects of assimilation, crustal thickness, and depth of crystallization. Geological Society of America Bulletin, v.100, p. 912-927.

Bateman, P.C. (1983) A summary of the critical relations in the central part of the Sierra Nevada Batholith, California, U.S.A. Geological Society of America Memoir No. 159, p. 241 – 252.

Bateman, P.C. (1988) Constitution and Genesis of the Central Sierra Nevada Batholith, California. U.S. Geological Survey Open File Reports: 88-382, 284p.

Bateman, P.C. and F.C.W. Dodge (1970) Variations of major chemical constituents across the Central Sierra Nevada Batholith. Geological Society of America Bulletin, vol. 81, p. 409-420.

Bateman, P.C. and J. P. Eaton (1967) Sierra Nevada Batholith, California. Science, vol. 158, no. 3807, p. 1407-1417.

Bateman, P.C., L.K. Clark, N.K. Huber, J.G. Moore and C.D. Rinehart (1963) The Sierra Nevada batholith – A synthesis of recent work across the central part. U.S. Geological Survey Professional Paper 414-D. 46p.

Chen, J. H., and G.R. Tilton (1982) Applications of lead and strontium isotopic relationships to the petrogenesis of granitoid rocks, central Sierra Nevada batholith, California. Geological Society of America Bulletin, v.103, p.439-447.

Chen, J. H., and J. G. Moore (1991) Uranium-Lead ages from the Sierra Nevada batholith, California. Journal of Geophysical Research, v.87, no. B6, p. 4761-4784.

Crough, S.T., and G.A. Thompson (1977) Upper mantle origin of the Sierra Nevada uplift. Geology, v. 5, p. 396-399.

DeFant, M.J., and M.S. Drummond (1990) Derivation of some modern arc magmas by melting of young subducted lithosphere. Nature, v. 347, p. 662-665.

DePaolo, D. J. (1980) Sources of continental crust: Neodymium isotope evidence from the Sierra Nevada and Peninsular Ranges. Science, v. 209, no. 8, p. 684-687.

DePaolo, D. J. (1980) A neodymium and strontium isotopic study of the Mesozoic calc-alkaline granitic batholithis of the Sierra Nevada and Peninsular Ranges, California. Journal of Geophysical Research, v. 86, no.B11, p. 10470-10488.

deSaint Blanquat, M., and B. Tikoff (1997) in Bouchez, J.L., at al., Granite: From segregation of melt to emplacement fabrics. Kluwer Acedemic Publishers, p. 231-252.

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Dodge, F.C.W., and R.E. Mays (1972) Rare-Earth Element Fractionation in Accessory Minerals, Central Sierra Nevada Batholith, California. U.S. Geological Survey Professional Paper 800-D, p. 165-168.

Dodge, F.C.W. (1972) Trace-element contents of someplutonic rocks of the Sierra Nevada Batholith. U.S. Geological Survey Bulletin 1314-F, 13p.

Dodge, F.C.W., H.T. Millard, Jr., and H.N.Elsheimer (1982) Compositional Variations and Abundances of selected elements in granitoid rocks and constituent minerals, Central Sierra Nevada Batholith, California. U.S. Geological Survey Professional Paper 1248, 24p.

Dodge, F.C.W., and P.C. Bateman (1988) Nature and origin of the root of the Sierra Nevada. American Journal of Science, v. 288-A, p. 341-357.

Domenick, M.A., R.W. Kistler, F.C.W. Dodge, and M. Tatsumoto (1983) Nd and Sr isotopic study of crustal and mantle inclusions from the Sierra Nevada and implications for batholith petrogenesis. Geological Society of America Bulletin, v. 94, p. 713-719.

duBray, E. A., ahd D. A. Dellinger (1988) Potassium-Argon ages for plutons in the eastern and southern Sierra Nevada Batholith, California. U.S. Geological Survey Bulletin 1799, 10p.

Ducea, M.N., and J.B. Saleeby (1998) The age and origin of a thick mafic-ultramafic keel from beneath the Sierra Nevada batholith. Contrib Mineral Petrol, v. 133, p. 169-185.

Evernden, J.F., and R.W. Kistler (1970) Chronology and Emplacement of Mesozoic Batholithic complexes in California and Western Nevada. U.S. Geological Survey Professional Paper 623, 42p.

Farmer, G.L., and D.J. DePaolo (1983) Origin of Mesozoic and Tertialry granite in the Western United States and implications fro pre-Mesozoic Crustal Structure 1. Nd and Sr isotopic studies in the geocline of the northern Great Basin. Journal of Geophysical Research, v. 88, no. B4, p. 3379- 3401.

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Hurley, P.M., P.C. Bateman, H.W. Fairbairn, and W.H. Pinson, Jr. (1965) Investigation of Initial 87Sr/86Sr Ratios in the Sierra Nevada Plutonic Province. Geological Society of America Bulletin, v. 76, p. 165-174.

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Moore, J. G., and F. C.W. Dodge (1980) Late Cenozoic volcanic rocks of the southern Sierra Nevada, California: I. Geology and petrology: Summary. Geological Society of America Bulletin, Part I, v. 91, p. 515-518.

Pickett, D.A., and J.B. Saleeby (1993) Thermobarometric contraints on the depth of exposure and conditions of plutonism and metamorphism at deep levels of the Sierra Nevada batholith, Tehachapi Mountains, California. Journal of Geophysical Research, v. 98, no. B1, p. 609-629.

Pickett, D.A., and J.B. Saleeby (1994) Nd, Sr, and Pb isotopic characteristics of Cretaceous intrusive rocks from deep levels of the Sierra Nevada batholith, Tehachapi Mountains, California. Contrib Mineral Petrol, v. 118, p. 198-215.

Ramo, O. T., and J. P. Calzia (1998) Nd isotopic composition of cratonic rocks in the southern Death Valley region; evidence for a substantial Archean source component in Mojavia. Geology, 26, (10), 891-894.

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Stern, T.W., P.C. Bateman, B.A. Morgan, M.F. Newell, and D.L. Peck (1981) Isotopic U-Pb ages of zircon from the granitoids of the central Sierra Nevada, California. U.S. Geological Survey Professional Paper 1185, 17p.

Stevens, C. H., P. Stone, G. C. Dunne, D. C. Greene, J. D. Walker, and B. J. Swanson, (1998) Paleozoic and Mesozoic evolution of East-central California, in Integrated Earth and Environmental Evolution of the Southwestern United States, edited by W.G. Ernst and C. A. Nelson, pp. 119-160, Bellweather Publ., Columbia Maryland.

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Van Kooten, G. K. (1980) Mineralogy, petrology, and geochemistry of an ultrapotassic basaltic suite, Central Sierra Nevada, California, U.S.A. Journal of Petrology, 21, (4), 651-684.


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