Reference Type | Journal (article/letter/editorial) |
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Title | Trace inheritance—Clarifying the zircon O-Hf isotopic fingerprint of I-type granite sources: Implications for the restite model |
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Journal | Chemical Geology |
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Authors | Jeon, Heejin | Author |
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Williams, Ian S. | Author |
Year | 2018 (January) | Volume | 476 |
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Page(s) | 456-468 |
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Publisher | Elsevier BV |
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DOI | doi:10.1016/j.chemgeo.2017.11.041Search in ResearchGate |
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Mindat Ref. ID | 299506 | Long-form Identifier | mindat:1:5:299506:3 |
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GUID | 5497c834-e46a-4e00-88d8-fdd8c9927c5d |
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Full Reference | Jeon, Heejin, Williams, Ian S. (2018) Trace inheritance—Clarifying the zircon O-Hf isotopic fingerprint of I-type granite sources: Implications for the restite model. Chemical Geology, 476. 456-468 doi:10.1016/j.chemgeo.2017.11.041 |
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Plain Text | Jeon, Heejin, Williams, Ian S. (2018) Trace inheritance—Clarifying the zircon O-Hf isotopic fingerprint of I-type granite sources: Implications for the restite model. Chemical Geology, 476. 456-468 doi:10.1016/j.chemgeo.2017.11.041 |
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In | (2018) Chemical Geology Vol. 476. Elsevier BV |
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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.
| Barron (1999) Carboniferous , 256 |
| Black, L. P., Everard, J. L., McClenaghan, M. P., Korsch, R. J., Calver, C. R., Fioretti, A. M., Brown, A. V., Foudoulis, C. (2010) Controls on Devonian–Carboniferous magmatism in Tasmania, based on inherited zircon age patterns, Sr, Nd and Pb isotopes, and major and trace element geochemistry. Australian Journal of Earth Sciences, 57 (7) 933-968 doi:10.1080/08120099.2010.509407 |
| Boehnke, Patrick, Watson, E. Bruce, Trail, Dustin, Harrison, T. Mark, Schmitt, Axel K. (2013) Zircon saturation re-revisited. Chemical Geology, 351. 324-334 doi:10.1016/j.chemgeo.2013.05.028 |
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| Chappell (1994) J. Proc. R. Soc. NSW Lachlan and New England: fold belts of contrasting magmatic and tectonic development 127, 47 |
| Chappell (1974) Pac. Geol. Two contrasting granite types 8, 173 |
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| Chappell (1991) |
| Chappell, B. W., White, A. J. R., Williams, I. S., Wyborn, D., Hergt, J. M., Woodhead, J. D., Collins, W. J. (1999) Discussion and Reply: Evaluation of petrogenetic models for Lachlan Fold Belt granitoids: Implications for crustal architecture and tectonic models. Australian Journal of Earth Sciences, 46 (5) 827-836 doi:10.1046/j.1440-0952.1999.00742.x |
| Chappell, B. W., White, A. J. R., Williams, I. S., Wyborn, D., Wyborn, L. A. I. (2000) Lachlan Fold Belt granites revisited: High‐ and low‐temperature granites and their implications. Australian Journal of Earth Sciences, 47 (1) 123-138 doi:10.1046/j.1440-0952.2000.00766.x |
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| Geoscience Australia () |
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| Hanchar (2003) Zircon saturation thermometry , 89 |
| Ickert (2010) 236 |
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| Lackey, Jade Star, Valley, John W., Chen, James H., Stockli, Daniel F. (2008) Dynamic Magma Systems, Crustal Recycling, and Alteration in the Central Sierra Nevada Batholith: the Oxygen Isotope Record. Journal of Petrology, 49 (7) 1397-1426 doi:10.1093/petrology/egn030 |
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| Shaw (1993) Carboniferous magmatic activity in the Lachlan and New England Fold Belts , 113 |
| Valley (2003) Oxygen isotopes in zircon 53, 343 |
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| Williams (1992) Trans. R. Soc. Edinb. Earth Sci. Some observations on the use of zircon U-Pb geochronology in the study of granitic rocks 83, 447 |
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