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Douglas-fir provenance phenology observations

, C., Lipa, W. & Menzel A. (1992). Guidelines for plant phenological observations. Lavadinović, V., Koprivica, M. & Isajev V. (2004). Phenological characters of Douglas-fir provenances in Serbia. Silva Balcanica, 4(1), 89-94. Lavadinović, V. Isajev, V. & Miletić Z. (2010). Significance of genetic potential of Douglas-fir introduced provenances in Serbia for the ranking of their adaptation to climate changes. In IUFRO and EFI International scientific conference “Forest ecosystems and climate changes” (pp. 71-80). Belgrade, 9-10th March

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Dependence of douglas-fir mean height on geographic origin of canadian provenances in seedling nursery conditions

, 40-41, 137-145. Lavadinović, V., Isajev, V. & Koprivica M. (1996a). Efect of seed germination on survival and height of two-year old Douglas-fir of different provenances. Genetica, 28, 2, 103-114. Lavadinović, V. & Koprivica M. (1996b). Dependence of Young Douglas-fir stands of different provenances on beech sites in Serbia. Proceedings from the IUFRO Conference (pp. 390-400). Copenhagen. Lavadinović, V., Koprivica, M. & Marković N. (1996c). Comparison of diameter and height of twenty Douglas fir (Pseudotsuga

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Study of Archeometric Characteristics of a Panel Painted Icon Form XIXth Century

. ATR-FT-IR spectroscopy in the region of 550-230cm−1 for identification of inorganic pigments. Spectrochim. Acta Part A. 2010 , 75, 1061-1072. 12. Favaro, M.; Guastoni, A.; Marini, F.; Bianchin, S.; Gambirasi, A. Characterization of lapis lazuli and corresponding purified pigments for a provenance study of ultramarine pigments used in works of art. Anal. Bioanal. Chem. 2012 , 402, 2195-2208. 13. Van der Weerd J.; Van Loon A.;. Boon J.J. FTIR Studies of the Effects of Pigments on the Aging of Oil. Stud. Conserv. 2005 , 1, 3

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Morphological characteristics and variation of wood, cone and seed productions in the reforestation of Aleppo pine in Northeastern Tunisia using terrestrial and spatial index approaches

. (2000). Variabilité mophométrique chez le pin d’Alep ( Pinus halepensis Mill.) et perspectives d’amélioration génétique. Les Annales l’INRGREF (pp. 78–118). Khouja, M.L., Boughecha, K. & Zid E. (2006). Germination des provenances de pin d’Alep ( Pinus halepensis Mill.) en conditions de stress osmotique. Les Annales de l’INRGREF , Numéro spécial, 201‒218. Malcolm, D.C., Mason, W.L. & Clarke G.C. (2001) The transformation of conifer forests in Britain regeneration, gap size and silvicultural systems. For. Ecol. Manag ., 151, 7–23. DOI: 10.1016/S0378

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The origin and chronology of medieval silver coins based on the analysis of chemical composition

podstawie składu chemicznego, źródeł surowców i technologii wytworzenia. (in preparation). 17. Stos-Gale, Z. A., & Gale, N. H. (2009). Metal provenancing using isotopes and the Oxford archeological lead isotope database (OXALID). Archeol. Anthropol. Sci., 1, 195-213. DOI: 10.1007/s12520-009-0011-6.

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Multifrequency EPR study on radiation induced centers in calcium carbonates labeled with 13C

References 1. Ikeya, M. (Ed.) (1993). Application of electron spin resonance – dating, dosimetry and microscopy (Chapter 5). Singapore: World Scientific. 2. Weihe, H., Piligkos, S., Barra, A. L., Laursen, I., & Johnsen, O. (2009). EPR of Mn 2+ impurities in calcite: a detailed study pertinent to marble provenance determination. Archaeometry , 51 , 43–48. 3. Callens, F., Vanhaelewyn, G., Matthys, P., & Boesman, E. (1998). EPR of carbonate derived radicals: Applications in dosimetry, dating and detection of irradiated food. Appl. Magn

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Soil Heterogeneity Reflected in Biogeography of Beech Forests in the Borderland Between the Bohemian Massif and the Outer Western Carpathians

, 84, 505-573. Knollová, I. & Chytrý M. (2004). Oak-hornbeam forests of the Czech Republic: geographical and ecological ap- proaches to vegetation classification. Preslia, 76, 291-311. KuČera, A., RejŠek, K., Dundek, P., Marosz, K., Samec, P. & Sýkora J. (2011). Specification of the beechwood soil environment based on chosen soil properties, aiming at the Faseta paupera habitat. J. For. Sci., 57, 185-191. Lisá, L. & Uher P. (2006). Provenance of Würmian loess and loess-like sediments of Moravia and Silesia (Czech Republic): a study of zircon typology and

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The Development of Freshwater Deltas and their Environmental and Economic Significance / Rozwój I Znaczenie Środowiskowo-Użytkowe Delt W Zbiornikach Śródlądowych

0169-555X(01)00118-0. [12] Liu S, Zhang W, He Q, Li D, Liu H, Yu L. Magnetic properties of East China Sea shelf sediments off the Yangtze Estuary: Influence of provenance and particle size. Geomorphology 2010;119:212-220. DOI: 10.1016/j.geomorph.2010.03.027. [13] Day JW, Barras J, Clairain E, Johnston J, Justic D, Kemp GP, et al. Implications of global climatic change and energy cost and availability for the restoration of the Mississippi delta. Ecol Eng. 2005;24:253-265. DOI: 10.1016/j.ecoleng.2004.11.015. [14] Stanica

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Nutritional composition, total phenolic compounds and antioxidant activity of quinoa (Chenopodium quinoa Willd.) of different colours

of alfalfa saponins in cynomolgus macaques. J. Med. Primatol. 11: 106-118. Medina W, Skurtys O, Aguilera JM (2010) Study on image analysis application for identification quinoa seeds ( Chenopodium quinoa Willd) geographical provenance. LWT - Food Sci. Technol. 43: 238-246. Miranda M, Vega-Gálvez A, Quispe-Fuentes I, Rodríguez, MJ, Maureira H, Martínez EA (2012) Nutritional aspects of six quinoa ( Chenopodium quinoa Willd.) ecotypes from three geographical areas of Chile. Chil. J. Agr. Res. 72: 175-181. Mota C, Nascimento AC, Santos M, Delgado I

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