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L. Karlman, A. Fries, O. Martinsson and J. Westin

sylvestris in northern Sweden. Stud. For. Suec., nr 156. E riksson , G., I. E kberg and D. C lapham (2006): An introducton to forest genetics. (2 nd ed.). Swed. Univ. of Agric. Sci. ISBN 91-576-7190-7. E ysteinsson , T. and B. S kúlason (1995): Adaptation of Siberian and Russian larch provenances to spring frost and cold summers Búvísindi. Icel. Agr. Sci. 9 , 1995: 91–97. E ysteinsson , T. (2002): Progeny trials of Larix sukaczewii in Iceland – 3 year results. In: Improvement of larch ( Larix sp.) for better growth, stem form and wood quality

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Jozef Madzin, Dušan Plašienka and Štefan Méres

–178. Árgyelán B.G. 1996: Geochemical investigations of detrital chrome spinels as a tool to detect an ophiolitic source area (Gerecse Mts. Hungary). Acta Geol. Hung. 39, 341–368. Aubrecht R. 1994: Heavy mineral analyses from „Tatric“ units of the Malé Karpaty Mountains (Slovakia) and their consequences for Mesozoic palaeogeography and tectonics. Mitt. Österr. Geol. Gesell. 86, 121–132. Aubrecht R. 2001: Jurassic heavy mineral distribution provinces in the Western Carpathians. Mineralia Slovaca 33, 473–486. Aubrecht R. & Krištín J. 1995: Provenance of

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Vanja Biševac, Erwin Krenn, Fritz Finger, Borna Lužar-Oberiter and Dražen Balen

References Augustsson C. & Bahlburg H. 2008: Provenance of late Palaeozoic metasediments of the Patagonian proto-Pacific margin (southernmost Chile and Argentina). Int. J. Earth Sci. (Geol. Rundsch.) 97, 71-88. Balen D., Horváth P., Tomljenović B., Finger F., Humer B., Pamić J. & Árkai P. 2006: A record of pre-Variscian Barrovian regional metamorphism in the eastern part of Slavonian Mountains (NE Croatia). Miner. Petrology 87, 143-162. Bathia M.R. 1985: Rare element geochemistry of Australian

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Asghar Etesampour, Asadollah Mahboubi, Reza Moussavi-Harami, Nasser Arzani and Mohammad Ali Salehi

References Adhikari, B.R. and Wagreich, M., 2011. Provenance evolution of collapse graben fill in the Himalaya - The Miocene to Quaternary Thakkhola-Mustang graben (Nepal). Sedimentary Geology, 233, 1–14. https://doi.org/10.1016/j.sedgeo.2010.09.021 Aghanabati, S.A., 2004. Geology of Iran. Geological Survey of Iran, Tehran. 587 pp. (in Persian) Armstrong-Altrin, J. S., Lee, Y., Verma, S. and Ramasamy, S., 2004. Geochemistry of sandstones from the Upper Miocene Kudanul Formation, southern India. Implications for provenance, weathering and

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Slavomír Nehyba, Reinhard Roetzel and Lubomír Maštera

References Adhikari B.R. & Wagreich M. 2011: Provenance evolution of collapse graben fill in the Himalaya - The Miocene to Quaternary Thakkola-Mustang Graben (Nepal). Sed. Geol. 233, 1-14. Alexander J., Bridge J.S., Leeder M.R., Collier R.E. & Gawthorpe R.I. 1994: Holocene meander-belt evolution in an active extensional basin, SW Montana, USA. J. Sed. Res . B64, 542-559. Bachmayer F. & Vasicek W. 1967: Insektenreste aus dem Perm von Zöbing bei Krems in Niederösterreich. Ann. Naturhist. Mus. Wien , 71

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Roman Aubrecht, Štefan Méres, Milan Sýkora and Tomáš Mikuš

. Geol. Carpathica 44, 105-111. Aubrecht R. 2001: Jurassic heavy mineral distribution provinces of the Western Carpathians. Miner. Slovaca 33, 473-486. Aubrecht R. & Méres Š. 1999: Possible Moldanubic provenance of the Pieniny Klippen Belt crystalline basement deduced from detrital garnets. Geol. Carpathica, Spec. Issue 50, 13-14. Aubrecht R. & Méres Š. 2000: Exotic detrital almandine-pyrope garnets in the Jurassic sediments of the Pieniny Klippen Belt and Tatric Zone: where did they

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Jacek Banach

-59. Barzdajn W. 2009. Wzrost dębu szypułkowego ( Quercus robur L.) i dębu bezszypułkowego [ Q. petraea (Matt.) Liebl.] w doświadczeniu proweniencyjnym z 1994 r. w Nadleśnictwie Milicz. Leśne Prace Badawcze , 70(3): 241-252. Bodgan S., Katičić-Trupčević I., Kajba D. 2004. Genetic variation in growth traits in a Quercus robur L. open-pollinated progeny test of the Slavonian provenance. Silvae Genetica , 53: 5-6. Fober H. 1998. Provenance experiment with pedunculate ( Quercus robur L.) and sessile ( Q. petraea (Matt

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Jagmahender Singh Sehrawat and Jaspreet Kaur

References Bartelink E, Berry R, Chesson L. 2014. Stable isotopes and human provenancing. In: X Mallett, T Blythe and R Berry, editors. Advances in Forensic Human Identification. CRC Press 165–92. Bartelink EJ, Berg GE, Beasley MM, Chesson LA. 2014. Application of stable isotope forensics for predicting region of origin of human remains from past wars and conflicts. Ann Anthropol Pract 38(1):124–36. Bastos MQ, Santos RV, de Souza SM, Rodrigues-Carvalho C, Tykot RH et al. 2016. Isotopic study of geographic origins and diet of enslaved Africans

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Henryk Szeligowski, Tadeusz Andrzejczyk and Jarosław Szkup

Zmiana wielkości krzywizn u modrzewi różnych pochodzeń na powierzchni doświadczalnej w Rogowie

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Shin Toyoda

T and Inoue K, 1988. Oxygen isotope composition of eolian quartz in soils and sediments — its significance as a tracer of eolian components. Nengo Kagaku 28: 38–54 (in Japanese with English abstract). [16] Mizota C, Faure K and Yamamoto M, 1996. Provenance of quartz in sedimentary mantles and laterites overlying bedrock in West Africa: evidence from oxygen isotopes. Geoderma 72(1–2): 65–74, DOI 10.1016/0016-7061(96)00014-6. http://dx.doi.org/10.1016/0016-7061(96)00014-6 [17] Nagashima K, Tada R, Tani A, Toyoda S