Paint It Black: The Rise of Metallurgy in the Balkans
暂无分享,去创建一个
[1] Dragoslav Srejović. Europe's first monumental sculpture: new discoveries at Lepenski Vir , 1972 .
[2] B. Jovanović,et al. Copper mining and metallurgy in the Vinča group , 1976, Antiquity.
[3] M. S. Tite,et al. Strength, Toughness and Thermal Shock Resistance of Ancient Ceramics, and Their Influence on Technological Choice , 2001 .
[4] P. Schmidt. Tropes, Materiality, and Ritual Embodiment of African Iron Smelting Furnaces as Human Figures , 2009 .
[5] Thilo Rehren,et al. On the origins of extractive metallurgy: new evidence from Europe , 2010 .
[6] Donald W. Crowe,et al. Symmetry comes of age : the role of pattern in culture , 2004 .
[7] N. D. Meeks,et al. IRON IN ANCIENT COPPER , 1987 .
[8] Asit K. Biswas,et al. Extractive metallurgy of copper , 1976 .
[9] S. Shennan,et al. Explaining the evolution of ironmaking recipes – An example from northwest Wales , 2010 .
[10] B. W. Roberts,et al. Development of metallurgy in Eurasia , 2009, Antiquity.
[11] Arturo Casadevall,et al. (A)Historical Science , 2015, Infection and Immunity.
[12] Miljana Radivojević,et al. Inventing Metallurgy in Western Eurasia: a Look Through the Microscope Lens , 2015, Cambridge Archaeological Journal.
[13] T. L. Kienlin. Traditions and Transformations: Approaches to Eneolithic (Copper Age) and Bronze Age Metalworking and Society in Eastern Central Europe and the Carpathian Basin , 2011 .
[14] M. Murillo-Barroso,et al. Copper Ornaments in the Iberian Chalcolithic: Technology versus Social Demand , 2012 .
[15] F. Rubio,et al. Study of arsenopyrite weathering products in mine wastes from abandoned tungsten and tin exploitations. , 2011, Journal of hazardous materials.
[16] Miljana Radivojević,et al. Copper minerals and archaeometallurgical materials from the Vinča culture sites of Belovode and Pločnik: Overview of the evidence and new data , 2014 .
[17] Adam Powell,et al. Late Pleistocene Demography and the Appearance of Modern Human Behavior , 2009, Science.
[18] H. Waterbolk,et al. Groningen Radiocarbon Dates V , 1964, Radiocarbon: An International Journal of Cosmogenic Isotope Research.
[19] M. Martinón-Torres,et al. Metals, microanalysis and meaning: a study of metal objects excavated from the indigenous cemetery of El Chorro de Maíta, Cuba , 2007 .
[20] M. Martinón-Torres,et al. POST-MEDIEVAL CRUCIBLE PRODUCTION AND DISTRIBUTION: A STUDY OF MATERIALS AND MATERIALITIES , 2008 .
[21] E. Dana. A Text-Book of Mineralogy: With an Extended Treatise on Crystallography and Physical Mineralogy , 2009 .
[22] A. Jones,et al. Archaeometry and materiality: materials-based analysis in theory and practice* , 2004 .
[23] N. Boivin. Material Cultures, Material Minds: The Impact of Things on Human Thought, Society, and Evolution , 2008 .
[24] Marija Jovanović,et al. Tainted ores and the rise of tin bronzes in Eurasia, c. 6500 years ago , 2013, Antiquity.
[25] Stephen Shennan,et al. Cultural learning in hominids: a behavioural ecological approach , 1999 .
[26] V. Milojčić,et al. Chronologie der jungeren Steinzeit Mittel- und Sudosteuropa , 1951 .
[27] Thilo Rehren,et al. Decisions set in slag: the human factor in African iron smelting , 2007 .
[28] C. Renfrew. The Autonomy of the South-East European Copper Age , 1970, Proceedings of the Prehistoric Society.
[29] J. Rehder. Blowpipes versus Bellows in Ancient Metallurgy , 1994 .
[30] Aleksandar Ilić,et al. Late Cretaceous and Tertiary geodynamics and ore deposit evolution of the Alpine-Balkan-Carpathian-Dinaride orogen , 2003 .
[31] Thomas R. Fenn,et al. Archaeometallurgy: The study of preindustrial mining and metallurgy , 2012 .
[32] S. Shennan. Demography and Cultural Innovation: a Model and its Implications for the Emergence of Modern Human Culture , 2001, Cambridge Archaeological Journal.
[33] J. Henrich. Demography and Cultural Evolution: How Adaptive Cultural Processes Can Produce Maladaptive Losses—The Tasmanian Case , 2004, American Antiquity.
[34] Ernst Pernicka,et al. Eneolithic and Early Bronze Age copper artefacts from the Balkans and their relation to Serbian copper ores , 1993 .
[35] Natalja Ryndina,et al. Copper Production from Polymetallic Sulphide Ores in the Northeastern Balkan Eneolithic Culture , 1999 .
[36] Natalia Ryndina. The potential of metallography in investigations of early objects made of copper and copper-based alloys , 2009 .
[37] B. Ottaway. Innovation, production and specialization in early prehistoric copper metallurgy , 2001, European Journal of Archaeology.
[38] P. Craddock. From hearth to furnace: Evidences for the earliest metal smelting technologies in the Eastern Mediterranean , 2000 .
[39] R. Sillitoe. Enargite-bearing massive sulfide deposits high in porphyry copper systems , 1983 .
[40] T. Rehren,et al. Early copper smelting at Itziparátzico, Mexico , 2009 .
[41] V. Roux. Evolutionary Trajectories of Technological Traits and Cultural Transmission: A Qualitative Approach to the Emergence and Disappearance of the Ceramic Wheel-fashioning Technique in the Southern Levant during the Fifth to Third Millennia BC , 2007 .
[42] Ivelin Kuleff,et al. Prehistoric copper in Bulgaria: Its composition and provenance , 1997 .
[43] C. Thornton. The Emergence of Complex Metallurgy on the Iranian Plateau: Escaping the Levantine Paradigm , 2009 .
[44] R. Lyman,et al. Immanence and Configuration in Analogical Reasoning , 2000 .
[45] R. Heimann,et al. Mineralogical And Chemical Investigations Of Bloomery Slags From Prehistoric (8th Century Bc To 4th Century Ad) Iron Production Sites In Upper And Lower Lusatia, Germany , 2001 .
[46] Walter G. Vincenti,et al. Real-world variation-selection in the evolution of technological form: historical examples , 2000 .
[47] S. Jankovic. Types of copper deposits related to volcanic environment in the Bor district, Yugoslavia , 1990 .
[48] J. Chapman. The Vinca culture of South-east Europe: studies in chronology, economy and society , 1981 .
[49] M. S. Tite,et al. THE CHALLENGE OF ‘TECHNOLOGICAL CHOICES’FOR MATERIALS SCIENCE APPROACHES IN ARCHAEOLOGY* , 2000 .
[50] B. Voytek,et al. Sedentism and economic change in the Balkan Neolithic , 1983 .
[51] H. Bachmann. The Identification of Slags from Archaeological Sites , 1982 .
[52] Ronald-Frank Tylecote,et al. Experiments on copper smelting based on early furnaces found at Timna , 1978 .
[53] Valentine Roux,et al. Technological Innovations and Developmental Trajectories: Social Factors as Evolutionary Forces , 2009 .
[54] A. Hauptmann. The archaeometallurgy of copper : evidence from Faynan, Jordan , 2010 .
[55] Miljana Radivojević. On the Origins of Metallurgy in Europe: Metal Production in the Vinca Culture , 2012 .
[56] Dusan Boric,et al. Absolute dating of metallurgical innovations in the Vinča Culture of the Balkans , 2009 .
[57] D. Hosler. The Sounds and Colors of Power: The Sacred Metallurgical Technology of Ancient West Mexico , 1997 .
[58] R. F. Tylecote,et al. Partitioning of trace elements between the ores, fluxes, slags and metal during the smelting of copper , 1977 .
[59] C. Jackson,et al. Medieval and post-medieval glass technology: melting characteristics of some glasses melted from vegetable ash and sand mixtures , 2004 .