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(2014) Preferential eruption of andesitic magmas: Implications for volcanic magma fluxes at convergent margins. Special Publication, 385. Geological Society of London. 257-280 doi:10.1144/sp385.10

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Reference TypeReport (chapter)
TitlePreferential eruption of andesitic magmas: Implications for volcanic magma fluxes at convergent margins
ReportSpecial Publication
Year2014Volume385
Page(s)257-280
PublisherGeological Society of London
DOIdoi:10.1144/sp385.10Search in ResearchGate
Mindat Ref. ID439131Long-form Identifiermindat:1:5:439131:3
GUIDeb87ed96-42ee-4b0b-85a7-b40f0433ddba
Full Reference(2014) Preferential eruption of andesitic magmas: Implications for volcanic magma fluxes at convergent margins. Special Publication, 385. Geological Society of London. 257-280 doi:10.1144/sp385.10
Plain Text(2014) Preferential eruption of andesitic magmas: Implications for volcanic magma fluxes at convergent margins. Special Publication, 385. Geological Society of London. 257-280 doi:10.1144/sp385.10
In(2014) Special Publication Vol. 385. Geological Society of London

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Clynne M. A. Calvert A. T. Wolfe E. W. Evarts R. C. Fleck R. J. Lanphere M. A. (2008) in A Volcano Rekindled
the Renewed Eruption of Mount St. Helens, 2004-2006, The pleistocene eruptive history of Mount St. Helens, Washington - from 300 000 to 12 800 years ago, eds Sherrod D. R. Scott W. E. Stauffer P. H. (United Stated Geological Survey, Virginia, Professional Paper), p 1750.
Darr C. M. (2006) Magma Chamber Processes Over the Past 475 000 years at Mount Hood, Oregon: Insights from Crystal Zoning and Crystal Size Distribution Studies. MS thesis (Oregon State University).
Hildreth (2007) Quaternary magmatism in the Cascades – geologic perspectives 1744, 14
Not Yet Imported: Minerals, Inclusions And Volcanic Processes - book-chapter : 10.1515/9781501508486-009

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Koleszar A. (2011) Controls on Eruption style and Magma Compositions at Mount Hood, Oregon. PhD thesis (Oregon State University).
()
Mori J. Eberhart-Phillips D. Harlow D. H. (1996) in Fire and Mud: Eruptions and Lahars of Mount Pinatubo, Philippines, Three-dimensional velocity structure at Mount Pinatubo: Resolving magma bodies and earthquake hypocenters, eds Newhall C. G. Punongbayan R. S. (University of Washington Press, Seattle), pp 371–382.
Pallister J. S. Hoblitt R. P. Meeker G. P. Knight R. J. Siems D. F. (1996) in Fire and Mud: Eruptions and Lahars of Mount Pinatubo, Phhillipines, Magma Mixing at Mount Pinatubo: petrographic and chemical evidence from the 1991 deposits, eds Newhall C. G. Punongbayan R. S. (University of Washington Press, Seattle), pp 687–732.
Patia H. (2004) Petrology and Geochemistry of the Recent Eruption History at Rabaul Caldera, Papua New Guinea: Implications for Magmatic Processes and Recurring Volcanic Activity (Australian National University, Canberra, Australia).
Rollinson H. (1993) Using Geochemical Data: Evaluation, Presentation, Interpretation (Longman, Essex).
Woods M. M. (2004) Compositional and Mineralogical Relationships between Mafic Inclusions and Host Lavas as key to andesite petrogenesis at Mount Hood Volcano, Oregon. MSc thesis (Portland State University).


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