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R.A. Hildreth

Publications and source records attributed to R.A. Hildreth.

3 recordsLinked to original sources

87Sr/86Sr ratios in basalts from islands in the Indian Ocean

87 Sr/ 86 Sr ratios of basalts from islands in the Indian Ocean (0.7040) are higher than those of basalts dredged from the Mid-Indian Ocean Ridge (0.7034). The sources of the island basalts have apparently not been in equilibrium with the source of the ridge basalts for roughly 10 9 years. Both ridge and island basalts in the Indian Ocean are higher in 87 Sr/ 86 Sr than are rocks from similar settings in the eastern Pacific.

Earth and Planetary Science Letters

Strontium isotopes in some Cenozoic lavas from Oregon and Washington

The 87 Sr/ 86 Sr ratios have been determined in 22 volcanic rocks from Oregon and Washington. The emphasis of the study was on andesites and dacites, but several basalts were included. Most of the samples have a very limited range in strontium isotopic composition and all fall within variations previously defined for oceanic basalts. There are no systematic differences between lavas erupted through the pre-Cenozoic basement and those erupted in the Columbia River Embayment. It is concluded that the role played by crustal rocks in the generation of these andesites and dacites is minor or nonexistent, but assimiliation of crustal material may have been a factor for some of the basalts of the Columbia River Group.

Oregon, Washington

A Rubidium-Strontium study of the Twilight Gneiss, West Needle Mountains, Colorado

The Precambrian trondhjemitic Twilight Gneiss (Twilight Granite of CROSS and HOWE , 1905b) of the West Needle Mountains, southwestern Colorado, and its interlayered amphibolite and metarhyodacite yield a Rb-Sr isochron of 1,805±35 m.y. A low initial Sr 87 /Sr 86 ratio of 0.7015 implies that metamorphism of these rocks to amphibolite facies took place soon after their emplacement. The mild metamorphism of Uncompahgran age, prior to 1,460 m.y. ago, and Laramide volcanism did not affect the Rb-Sr system in the Twilight. Rb contents of 26.5 to 108 ppm, Sr contents of 114 to 251 ppm, and K 2 O percentages of 1.23 to 3.64 in the Twilight Gneiss, in conjunction with high K/Rb ratios and the low initial ratio of Sr 87 /Sr 86 , lend support to geologic data that suggest the Twilight originated as volcanic or hypabyssal igneous rocks in a basaltic volcanic pile.

Colorado