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Palaeontological analysis of Middle Miocene siltstones at Wiślica (Carpathian Foredeep, Poland)

-Miocene foraminifera of the Central Parathetys. Abhandlungen der Senckenbergischen Naturforschenden Gesellschaft 549, 325 pp. Jasionowski, M., 1997. Zarys litostratygrafii osadów mioceńskich wschodniej części zapadliska przedkarpackiego [Sketch of Miocene deposits lithostratigraphy in eastern part of the Carpathian Foredeep in Poland]. Biuletyn Państwowego Instytutu Geologicznego 375, 43–60. Kaiho, K., 1994. Benthic foraminiferal dissolved-oxygen index and dissolved oxygen levels in the modern ocean. Geology 22, 719–722. Kondracki, J., 2002. Geografia

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Glacial Terminations II and I as recorded in NE Iceland

., Cabero, A., Ghaleb, B., Silva, P. G. & Lario, J., 2009. Sea level and climate changes during OIS 5e in the Western Mediterranean. Geomorphology 104, 22-37. Baumann, K.-H., Lackschewitz, K. S., Mangerud, J., Spielhagen, R. F., Wolf-Welling, T. C. W., Henrich, R. & Kassens, H., 1995. Reflection of Scandinavian Ice Sheet fluctuations in Norwegian Sea sediments during the last 150,000 years. Quaternary Research 43, 185-197. Björnsson, H., 1992. Jökulhlaup in Iceland: prediction, characteristics and simulation. Annals

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Middle Jurassic–Early Cretaceous foraminiferal biozonation of the Amran Group, eastern Sana’a Basin, Yemen

-Ganad, I.N., Baraba, R.S., Nani, A.O. & Al-Aawah, M.H., 1998. International lexicon of stratigraphy, Republic of Yemen: v. III, Asia, fascicule, 10b2. IUGS Publication 34, 245 pp. Doi: 10.1017/S001675689922290X. Bhalla, S.N. & Abbas, S.M., 1978. Jurassic foraminifera from Kutch, India. Micropaleontology 24, 160-209. Bielecka, W. & Pożaryski, W., 1954. Micropaleontological stratigraphy of the Upper Malm in Central Poland: Prace Instytutu Geologicznego 12, 143-206. Botez, G., 1912. Rapport d elinitif sur les etudes

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Interaction between turbidity currents and a contour current – A rare example from the Ordovician of Shaanxi province, China

. & Faugères, J. C., 2001. Inversely graded turbidite sequences in the deep Mediterranean: a record of deposits from flood-generated turbidity currents? Geo-Marine Letters 21, 86–93. Mulder, T., Lecroart, P., Hanquiez, V., Marches, E., Gonthier, E., Guedes, J.-C., Thiébot, E., Jaaidi, B., Kenyon, N., Voisset, M., Perez, C., Sayago, M., Fuchey, Y. & Bujan, S., 2006. The western part of the Gulf of Cadiz: contour currents and turbidity currents interactions. Geo-Marine Letters 26, 31–41. Mutti, E., Bernoulli, D., Ricci, F. & Tinterri, R., 2009. Turbidites and

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First report on the occurrence of CO2-bearing fluid inclusions in the Meiduk porphyry copper deposit, Iran: implications for mineralisation processes in a continental collision setting

References Ahmadian, J., Haschke, M., McDonald, I., Regelous, M., Ghorbani, M., Emami, M. & Murata, M., 2009. High magmatic flux during Alpine-Himalayan collision: Constraints from the Kal-e-Kafi complex, central Iran. Geological Society of America Bulletin 121, 857-868. Alavi, M., 2007. Structure of the the Zagros fold-thrust belt in Iran. American Journal of Science 307, 1064-1095. Asadi, S., 2013. Selective geochemistry of barren and productive porphyry copper deposits in Urumiyeh- Dokhtar volcano

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New data on Callovian (Middle Jurassic) belemnites and palynomorphs from the Northern Caucasus, southwest Russia

Kimmeridgian belemnite fauna from the Mediterranean Tethys (Monte Nerone, Central Apennines, Italy). Geobios 36, 603–623. Mariotti, N., Weis R., Falahatgar, M., Parent, H. & Javidan, M., 2013. Oxfordian belemnites and ammonites from Rostam Kola, Northern East Alborz, North Iran. Boletín del Instituto de Fisiografía y Geología 83, 15–26. Mayer, K., 1866. Diagnoses de bélemnites nouvelles. Journal de Conchylogie 3, 358–369. Mitchell, S., 2015. A reassessment of the validity and affinities of Belemnites sulcatus Miller, 1826, Belemnopsis Edwards in

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The origin of upper Precambrian diamictites, northern Norway: a case study applicable to diamictites in general

References Abd-Alla, M.A.A., 1991. Surface textures of quartz grains from recent sedimentary environments along the Mediterranean Coast, Egypt. Journal of African Earth Sciences 13, 367-375. Allen, J.R.L., 1984. Sedimentary structures: their character and physical basis. Developments in Sedimentology 30. Elsevier, Amsterdam, vol. 2, 509-521. Arnaud, E., 2008. Deformation in the Neoproterozoic Smalfjord Formation, northern Norway: an indicator of glacial depositional conditions? Sedimentology 55, 335

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Cenozoic synthem stratigraphic architecture of the SE Brazilian shelf and its global eustatic context: evidence from the Pelotas Basin (offshore Brazil)

Grande do Sul. Antunes, R.L., 1989. Cenozoic erosive events in central- northern portion of the Santos Basin-Brazil: a biochronoestratigraphical study based on calcareous nannofossils. Anais do XXI Congresso Brasileiro de Paleontologia, 1043-1058. Arai, M., 2006. A grande elevação eustática do Mioceno e sua influência na origem do Grupo Barreiras. [The large eustatic rise of the Miocene and its influence on the origin of the Barreiras Group]. Revista do Instituto de Geociências-USP 6, 1-6. Asmus, H.E. & Baisch, P.R., 1983

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