SP-300 Mount Givens Granodiorite
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Fact sheet

SP-300 Mount Givens Granodiorite

Mount Givens Granodiorite: an equigranular biotite-hornblende granodiorite that is conspicuous in the greater size of biotite than hornblende which often exhibits euhedral grain forms. USGS Geologist N. King Huber collected SP-300 was during mapping of the Shuteye Peak (“SP” prefix) quadrangle between 1962–1966. Huber (1968) reports sample SP-300 is “from roadcut at Chiquito Creek, Sec. 20, T. 6 S., R. 24 E”. At this location, the Minarets Road traverses the northern “bulbous” protrusion of the Mount Givens pluton where it undergoes cycles of equigranular to porphyritic textural change and is older than areas domains to the south (see BCc-12). Frazer et al. (2014) obtained a CA-ID-TIMS U-Pb zircon age of 94.8–93.6 million years for a sample they collected at the Chiquito Creek roadcut. The sample was not widely used in Sierra Nevada reference set, and Bateman and Nokleberg (1978) opted to only use samples from their Kaiser Pass quadrangle mapping to frame their study “Solidification of the Mount Givens Granodiorite, Sierra Nevada, California”. Petrographic data, major element analyses, and normative analyses were reported by Huber (1968) quadrangle report and later in the Bateman et al. (1984) analytic data compilation.

Based on the primary composition of plagioclase feldspar, quartz, biotite and hornblende, this rock is best classified as a granodiorite. It also has notable components of titanite (formerly known as sphene) and chlorite. The titanite crystallised from the melt but the chlorite derives from secondary aqueous alteration of the original biotite. The chlorite can be seen as patches of green discolouration in brown biotite crystals.

View 1 shows a good example of the mineral titanite, a calcium-titanium silicate, an accessory mineral which is very abundant in this unit. The view shows the primary identifying features of titanite. These are a lozenge habit and very high birefringence which creates a speckled, rainbow-hued effect under crossed polars. A similar degree of birefringence can be seen in calcite. Another identifying feature of this birefringence is that, halfway between extinction angles, the crystal colours in plain- and cross-polarised light appear to be the same.

View 2 shows oscillatory zoning in feldspar crystals. This indicates that the chemical composition of the crystallising plagioclase was changing over time, with separate 'bands' of the mineral having slightly different chemical compositions within the solid solution of plagioclase feldspar, showing up as different grey interference colours under crossed polars. The solid solution lies between the two end-members anorthite and albite:

Anorthite ---- Albite     

CaAl2Si2O8 ---- NaAlSi3O8

For more information on chlorite replacement, follow this link to another sample from the Sierra Nevada, MT-2.

Go to Sierra Nevada - MT-2

For more information on titanite and plagioclase feldspar, follow this link to the Manual of Minerals.

Go to Manual of Minerals

For more information on monotonic zoning, follow this link to the mineral features page in the Manual of Minerals

Go to Manual of Minerals - Features

Reference

  1. Huber, N.K., 1968. Geologic map of the Shuteye Peak quadrangle, Sierra Nevada, California. USGS Report 728.
  2. Bateman, P. C., and Nokleberg, W. J., 1978, Solidification of the Mount Givens Granodiorite, Sierra Nevada, California: Journal of Geology, v. 86, no. 5, p. 563-579.
  3. Bateman, P. C., Dodge, F. C. W., and Bruggman, P. E., 1984, Major oxide analyses, CIPW norms, modes, and bulk specific gravities of plutonic rocks from the Mariposa 1 degrees by 2 degrees sheet, central Sierra Nevada, California: U. S. Geological Survey Open-File Report, v. 84-162, 59 pp.
  4. Frazer, R. E., Coleman, D. S., and Mills, R. D., 2014, Zircon U-Pb geochronology of the Mount Givens Granodiorite: implications for the genesis of large volumes of eruptible magma: Journal of Geophysical Research: Solid Earth, v. 119, no. 4, p. 2907-2924.
Map
37.390238, -119.367526
Precision:
Good
About this collection

This collection features legacy samples from some of the earliest eras of geologic mapping of Sierra Nevada batholith, California, by United States Geological Survey mappers including Paul C. Bateman, James G. Moore, Donald C. Ross and Franklin C.W. Dodge.

These samples, among others assembled over 30 years, formed a reference collection of compositions, textures and ages of rock units across the batholith.

This Collection is the result of a partnership between the Virtual Microscope and a trio of researchers from the United States: Jade Star Lackey (Pomona College), Emily Cooperdock (Brown University), Jaime Barnes (University of Texas, Austin), who are supported in this endeavour by United States National Science Foundation Grants EAR-2211241, -42, and -43.

For a more detailed description of the history and geological context of the Collection, with references, please expand the 'About this collection' section below.
 
Banner image: Photo by Jon Sullivan (PD Photo.org), via Wikimedia Commons; filename: Yosemite 20 bg 090404.jpg

Sample details

Collection: Sierra Nevada
Type
igneous
Rock-forming mineral
plagioclase
quartz
hornblende
biotite
alkali feldspar
Accessory minerals
titanite
chlorite
Category guide  
Category Guide
Title
Refers to any word or phrase that appears in the individual rock names. Names are generally descriptive; they allow users to search for broad terms like ‘granite’ as well as more specific names such as ‘breccia’. However, the adjacent descriptions of the specimens captures a wider range of general words and phrases and is a more powerful search tool.
Description
Refers to any word or phrase that appears anywhere in the descriptions of the specimens
Accessory minerals
Minerals that occur in very low abundance in a rock. They are usually not visible with the naked eye and contribute perhapssver, they often dominate the rare elements such as platinum group metals.
Rock-forming minerals
Minerals that make up the bulk of all rock samples and are also the ones used in rock classi?cation.
Timescale
Selecting one or more period, for example 'Jurassic'.
Theme
A term used to group together related samples that are not already gathered into a single Collection. For instance, there is a ‘SW England granites’ theme that includes such rock types as granite, hydrothermal breccia, skarn and vein samples.
Category
A general term used to label a rock sample. It is a useful way of grouping similar samples throughout a collection. Category names are often, but not exclusively, common rock names (e.g. granite, basalt, dolerite, gabbro, greisen, skarn, gneiss, amphibolite, limestone, sandstone).
Owner
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We would like to thank the following for the use of this sample: