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Preface

Published online by Cambridge University Press:  05 July 2018

A. Müller
Affiliation:
Geological Survey of Norway, N-7491, Trondheim, Norway
M. D. Welch*
Affiliation:
Department of Mineralogy, The Natural History Museum, Cromwell Road, London SW7 5BD, UK
*
* E-mail: mdw@nhm.ac.uk

Abstract

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Type
Frontiers in Quartz Research
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 2009

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References

Botis, S.M. and Pan, Y. (2009) Theoretical calculations of [AlO4/M+]° defects in quartz and crystal-chemical controls on the uptake of Al. Mineralogical Magazine, 73, 537—550.CrossRefGoogle Scholar
Chakroun, A., Miskovsky, J-C. and Zaghbib-Turki, D. (2009) Quartz grain surface features in environ mental determination of aeolian Quaternary deposits in northeastern Tunisia. Mineralogical Magazine, 73, 607—614.CrossRefGoogle Scholar
Götze, J. (2009) Chemistry, textures and physical properties of quartz — geological interpretation and technical application. Mineralogical Magazine, 73, 645—671.CrossRefGoogle Scholar
Götze, J., Mockel, R., Kempe, U., Kapitonov, I. and Venneman, T. (2009) Characteristics and origin of agates in sedimentary rocks from the Dryhead area, Montana, USA. Mineralogical Magazine, 73, 673—690.CrossRefGoogle Scholar
Jourdan, A-L., Vennemann, T.W., Mullis, J. and Ramseyer, K. (2009) Oxygen isotope sector zoning in natural hydrothermal quartz. Mineralogical Magazine, 73, 615—632.CrossRefGoogle Scholar
Larsen, R.B., Jacamon, F. and Krontz, A. (2009) Trace element chemistry and textures of quartz during the magmatic-hydrothermal transition of Oslo Rift granites. Mineralogical Magazine, 73, 691—707.CrossRefGoogle Scholar
Lehmann, K., Berger, A., Gotte, T., Ramseyer, K. and Wiedenbeck, M. (2009) Growth related zonations in authigenic and hydrothermal quartz characterized by SIMS-, EPMA-, SEM-CL- and SEM-CC-imaging. Mineralogical Magazine, 73, 633 —643..CrossRefGoogle Scholar
Moxon, T. and Carpenter, M.A. (2009) Crystallite growth kinetics in nanocrystalline quartz (agate and chalcedony). Mineralogical Magazine, 73, 551—568.CrossRefGoogle Scholar
Müller, A. and Koch-Müller, M. (2009) Hydrogen speciation and trace element contents of igneous, hydrothermal and metamorphic quartz from Norway. Mineralogical Magazine, 73, 569—583.CrossRefGoogle Scholar
Pan, Y., Nilges, M.J. and Mashkovtsev, R.I. (2009) Radiation-induced defects in quartz: a multifrequency EPR study and DFT modelling of new peroxy radicals. Mineralogical Magazine, 73, 519—535.CrossRefGoogle Scholar
Stevens-Kalceff, M.A. (2009) Cathodoluminescence microcharacterization of point defects in α-quartz. Mineralogical Magazine, 73, 585—605.Google Scholar