INFORMAZIONI SU QUESTO ARTICOLO

Cita

Adamiec G, Herr A and Bluszcz A, 2012. Statistics of count numbers from a photomultiplier tube and its implication for error estimation. Radiation Measurements 47: 746–751. AdamiecG HerrA BluszczA 2012 Statistics of count numbers from a photomultiplier tube and its implication for error estimation Radiation Measurements 47 746 751 10.1016/j.radmeas.2011.12.009 Search in Google Scholar

Agatova A, Nepop R, Carling A, Bohorquez P, Khazin B, Zhdanova N and Moska P, 2020. Last ice-dammed lake in the Kuray Basin, Russian Altai: new results from multidisciplinary research. Earth Science Review 200, DOI: 10.1016/j.earscirev.2020.103183. AgatovaA NepopR CarlingA BohorquezP KhazinB ZhdanovaN MoskaP 2020 Last ice-dammed lake in the Kuray Basin, Russian Altai: new results from multidisciplinary research Earth Science Review 200 10.1016/j.earscirev.2020.103183 Open DOISearch in Google Scholar

Aitken MJ and Xie J, 1990. Moisture correction for annual gamma dose. Ancient TL, 6–9. AitkenMJ XieJ 1990 Moisture correction for annual gamma dose Ancient TL 6 9 Search in Google Scholar

Aitken MJ, 1985. Thermoluminescence Dating. Academic Press, London, 359pp. AitkenMJ 1985 Thermoluminescence Dating Academic Press London 359pp. Search in Google Scholar

Aitken MJ, 1998. An Introduction to Optical Dating. Oxford University Press, Oxford. AitkenMJ 1998 An Introduction to Optical Dating Oxford University Press Oxford Search in Google Scholar

Anechitei-Decu V, Timar-Gabor A, Constantin D, Trandafir-Antohi O, Del Valle L, Fornos J, Gomez-Pujol L and Wintle A, 2018. Assessing the maximum limit of SAR-OSL dating using quartz of different grain sizes. Geochronometria 45: 146–159. Anechitei-DecuV Timar-GaborA ConstantinD Trandafir-AntohiO Del ValleL FornosJ Gomez-PujolL WintleA 2018 Assessing the maximum limit of SAR-OSL dating using quartz of different grain sizes Geochronometria 45 146 159 10.1515/geochr-2015-0092 Search in Google Scholar

Arnold LJ, Bailey RM, Tucker GE, 2007. Statistical treatment of fluvial dose distributions from southern Colorado arroyo deposits. Quaternary Geochronology 2: 162–167. ArnoldLJ BaileyRM TuckerGE 2007 Statistical treatment of fluvial dose distributions from southern Colorado arroyo deposits Quaternary Geochronology 2 162 167 10.1016/j.quageo.2006.05.003 Search in Google Scholar

Arnold LJ and Roberts RG, 2009. Stochastic modelling of multi-grain equivalent dose (De) distributions: implications for OSL dating of sediment mixtures. Quaternary Geochronology 4: 204–230. ArnoldLJ RobertsRG 2009 Stochastic modelling of multi-grain equivalent dose (De) distributions: implications for OSL dating of sediment mixtures Quaternary Geochronology 4 204 230 10.1016/j.quageo.2008.12.001 Search in Google Scholar

Bell WT, 1979. Attenuation factors for the absorbed radiation dose in quartz inclusions for thermoluminescence dating. Ancient TL 8: 2–13. BellWT 1979 Attenuation factors for the absorbed radiation dose in quartz inclusions for thermoluminescence dating Ancient TL 8 2 13 Search in Google Scholar

Berger GW, 2010. An alternate form of probability-distribution plot for De values. Ancient TL 28: 11–22. BergerGW 2010 An alternate form of probability-distribution plot for De values Ancient TL 28 11 22 Search in Google Scholar

Bluszcz A, 1986a. Basis for dating of sediments using thermoluminescence method. Geochronometria 1: 109–124 (in Polish). BluszczA 1986a Basis for dating of sediments using thermoluminescence method Geochronometria 1 109 124 (in Polish). Search in Google Scholar

Bluszcz A, 1986b. The research facilities and method of measurements in Gliwice TL laboratory. Geochronometria 1: 147–157 (in Polish). BluszczA 1986b The research facilities and method of measurements in Gliwice TL laboratory Geochronometria 1 147 157 (in Polish). Search in Google Scholar

Bøtter-Jensen L and Mejdahl V, 1988. Assessment of beta dose-rate using a GM multicounter system. International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 14(1–2): 187–191, DOI: 10.1016/1359-0189(88)90062-3. Bøtter-JensenL MejdahlV 1988 Assessment of beta dose-rate using a GM multicounter system International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 14 1–2 187 191 10.1016/1359-0189(88)90062-3 Open DOISearch in Google Scholar

Brennan BJ, Lyons RG and Phillips SW, 1991. Attenuation of alpha particle track dose for spherical grains. International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 18(1–2): 249–253, DOI: 10.1016/1359-0189(91)90119-3. BrennanBJ LyonsRG PhillipsSW 1991 Attenuation of alpha particle track dose for spherical grains International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 18 1–2 249 253 10.1016/1359-0189(91)90119-3 Open DOISearch in Google Scholar

Chruścińska A, Cicha A, Kijek N, Palczewski P, Przegiętka K and Sulkowska-Tuszyńska K, 2014. Luminescence dating of bricks from the gothic Saint James Church in Toruń. Geochronometria 41(4): 352–360, DOI: 10.2478/s13386-013-0165-y. ChruścińskaA CichaA KijekN PalczewskiP PrzegiętkaK Sulkowska-TuszyńskaK 2014 Luminescence dating of bricks from the gothic Saint James Church in Toruń Geochronometria 41 4 352 360 10.2478/s13386-013-0165-y Open DOISearch in Google Scholar

Cresswell AJ, Carter J and Sanderson DCW, 2018. Dose rate conversion parameters: assessment of nuclear data. Radiation Measurements 120: 195–201. DOI: 10.1016/J.RADMEAS.2018.02.007. CresswellAJ CarterJ SandersonDCW 2018 Dose rate conversion parameters: assessment of nuclear data Radiation Measurements 120 195 201 10.1016/J.RADMEAS.2018.02.007 Open DOISearch in Google Scholar

Cunningham AC, Murray AS, Armitage SJ and Autzen M, 2018. High-precision natural dose rate estimates through beta counting. Radiation Measurements 120(March): 209–214, DOI: 10.1016/j.radmeas.2018.04.008. CunninghamAC MurrayAS ArmitageSJ AutzenM 2018 High-precision natural dose rate estimates through beta counting Radiation Measurements 120 March 209 214 10.1016/j.radmeas.2018.04.008 Open DOISearch in Google Scholar

Cutshall N, Larsen IL and Olsen CR, 1983. Direct analysis of Pb-210 in sediment samples: a self-absorption corrections. Nuclear Instruments and Methods in Physics Research 206: 309–312. CutshallN LarsenIL OlsenCR 1983 Direct analysis of Pb-210 in sediment samples: a self-absorption corrections Nuclear Instruments and Methods in Physics Research 206 309 312 10.1016/0167-5087(83)91273-5 Search in Google Scholar

Duller GAT, 2008. Single-grain optical dating of Quaternary sediments: why aliquot size matters in luminescence dating. Boreas 37: 589–612. DullerGAT 2008 Single-grain optical dating of Quaternary sediments: why aliquot size matters in luminescence dating Boreas 37 589 612 10.1111/j.1502-3885.2008.00051.x Search in Google Scholar

Durcan JA, King GE and Duller GAT, 2015. DRAC: dose rate and age calculator for trapped charge dating. Quaternary Geochronology 28: 54–61, DOI: 10.1016/J.QUAGEO.2015.03.012. DurcanJA KingGE DullerGAT 2015 DRAC: dose rate and age calculator for trapped charge dating Quaternary Geochronology 28 54 61 10.1016/J.QUAGEO.2015.03.012 Open DOISearch in Google Scholar

Fedorowicz S and Olszak I, 1985. TL studies of quaternary sediments at the University of Gdańsk. Ancient TL 3: 10–14. FedorowiczS OlszakI 1985 TL studies of quaternary sediments at the University of Gdańsk Ancient TL 3 10 14 Search in Google Scholar

Fedorowicz S, Łanczont M, Bogucki A, Kusiak J, Mroczek P, Adamiec G, Bluszcz A, Moska P and Tracz M, 2013. Loess-paleosol sequence at Korshiv (Ukraine): chronology based on complementary and parallel dating (TL, OSL), and litho-pedosedimentary analyses. Quaternary International 296: 117–130. FedorowiczS ŁanczontM BoguckiA KusiakJ MroczekP AdamiecG BluszczA MoskaP TraczM 2013 Loess-paleosol sequence at Korshiv (Ukraine): chronology based on complementary and parallel dating (TL, OSL), and litho-pedosedimentary analyses Quaternary International 296 117 130 10.1016/j.quaint.2012.06.001 Search in Google Scholar

Fedorowicz S, Łanczont M, Mroczek P, Bogucki A, Standzikowski K, Moska P, Kusiak J and Bluszcz A, 2018. Luminescence dating of the Volochysk section – a key Podolian loess site (Ukraine). Geological Quaterly 62: 729–744. FedorowiczS ŁanczontM MroczekP BoguckiA StandzikowskiK MoskaP KusiakJ BluszczA 2018 Luminescence dating of the Volochysk section – a key Podolian loess site (Ukraine) Geological Quaterly 62 729 744 10.7306/gq.1436 Search in Google Scholar

Galbraith RF, Roberts RG and Yoshida H, 2005. Error variation in OSL palaeodose estimates from single aliquots of quartz: a factorial experiment. Radiation Measurements 39: 289–307. GalbraithRF RobertsRG YoshidaH 2005 Error variation in OSL palaeodose estimates from single aliquots of quartz: a factorial experiment Radiation Measurements 39 289 307 10.1016/j.radmeas.2004.03.023 Search in Google Scholar

Galbraith RF, Roberts RG, Laslett GM, Yoshida H and Olley JM, 1999. Optical dating of single and multiple grains of quartz from Jinminum Rock Shelter, Northern 12 Australia. Part I, experimental design and statistical models. Archaeometry 41: 1835–1857. GalbraithRF RobertsRG LaslettGM YoshidaH OlleyJM 1999 Optical dating of single and multiple grains of quartz from Jinminum Rock Shelter, Northern 12 Australia. Part I, experimental design and statistical models Archaeometry 41 1835 1857 10.1111/j.1475-4754.1999.tb00987.x Search in Google Scholar

Guérin G, Mercier N, Nathan R, Adamiec G and Lefrais Y, 2012. On the use of the infinite matrix assumption and associated concepts: a critical review. Radiation Measurements 47(9): 778–785, DOI: 10.1016/J.RADMEAS.2012.04.004. GuérinG MercierN NathanR AdamiecG LefraisY 2012 On the use of the infinite matrix assumption and associated concepts: a critical review Radiation Measurements 47 9 778 785 10.1016/J.RADMEAS.2012.04.004 Open DOISearch in Google Scholar

Hansen V, Murray A, Buylaert JP, Yeo EY and Thomsen K, 2015. A new irradiated quartz for beta source calibration. Radiation Measurement 81: 123–127. HansenV MurrayA BuylaertJP YeoEY ThomsenK 2015 A new irradiated quartz for beta source calibration Radiation Measurement 81 123 127 10.1016/j.radmeas.2015.02.017 Search in Google Scholar

Jacobs Z, 2004. Development of luminescence techniques for dating Middle Stone Age sites in South Africa. Unpublished Ph.D. thesis, University of Wales, Aberystwyth. JacobsZ 2004 Development of luminescence techniques for dating Middle Stone Age sites in South Africa Unpublished Ph.D. thesis, University of Wales Aberystwyth Search in Google Scholar

Jacobs Z, Duller GAT, Wintle A, Henshilwood Ch, 2006. Extending the chronology of deposits at Blombos Cave, South Africa, back to 140 ka using optical dating of single and multiple grains of quartz. Journal of Human Evolution 51: 255–273. JacobsZ DullerGAT WintleA HenshilwoodCh 2006 Extending the chronology of deposits at Blombos Cave, South Africa, back to 140 ka using optical dating of single and multiple grains of quartz Journal of Human Evolution 51 255 273 10.1016/j.jhevol.2006.03.00716765421 Search in Google Scholar

Kessler P, Behnke B, Dabrowski R, Dombrowski H, Röttger A and Neumaier S, 2018. Novel spectrometers for environmental dose rate monitoring. Journal of Environmental Radioactivity 187: 115–121. KesslerP BehnkeB DabrowskiR DombrowskiH RöttgerA NeumaierS 2018 Novel spectrometers for environmental dose rate monitoring Journal of Environmental Radioactivity 187 115 121 10.1016/j.jenvrad.2018.01.02029455914 Search in Google Scholar

Liritzis I, Singhvi A, Feathers J, Wagner G, Kaderit A, Zacharias N and Li S-H, 2013. Luminescence dating of archaeological materials. In: Luminescence Dating in Archaeology, Anthropology, and Geoarchaeology. SpringerBriefs in Earth System Sciences. Springer, Heidelberg. DOI: 10.1007/978-3-319-00170-8_4 LiritzisI SinghviA FeathersJ WagnerG KaderitA ZachariasN LiS-H 2013 Luminescence dating of archaeological materials In: Luminescence Dating in Archaeology, Anthropology, and Geoarchaeology SpringerBriefs in Earth System Sciences. Springer Heidelberg 10.1007/978-3-319-00170-8_4 Open DOISearch in Google Scholar

Markovic SB, Bokhorst MP, Vandenberghe J, McCoy WD, Oches EA and Hambach U, 2008. Late Pleistocene loess-paleosol sequences in the Vojvodina region, north Serbia. Journal of Quaternary Science 23: 73–84. MarkovicSB BokhorstMP VandenbergheJ McCoyWD OchesEA HambachU 2008 Late Pleistocene loess-paleosol sequences in the Vojvodina region, north Serbia Journal of Quaternary Science 23 73 84 10.1002/jqs.1124 Search in Google Scholar

Miłosz S, Tudyka K, Walencik-Łata A, Barwinek S, Bluszcz A and Adamiec G, 2017. Pulse height, pulse shape, and time interval analyser for delayed α/β coincidence counting. IEEE Transactions on Nuclear Science 64(9): 2536–2542, DOI: 10.1109/TNS.2017.2731852. MiłoszS TudykaK Walencik-ŁataA BarwinekS BluszczA AdamiecG 2017 Pulse height, pulse shape, and time interval analyser for delayed α/β coincidence counting IEEE Transactions on Nuclear Science 64 9 2536 2542 10.1109/TNS.2017.2731852 Open DOISearch in Google Scholar

Moska P and Bluszcz A, 2013. Luminescence dating of loess profiles in Poland. Quaternary International 10: 51–60. MoskaP BluszczA 2013 Luminescence dating of loess profiles in Poland Quaternary International 10 51 60 10.1016/j.quaint.2012.09.004 Search in Google Scholar

Moska P, 2019. Luminescence dating of quaternary sediments – some practical aspects. Studia Quaternaria 36: 161–169. MoskaP 2019 Luminescence dating of quaternary sediments – some practical aspects Studia Quaternaria 36 161 169 Search in Google Scholar

Moska P, Adamiec G, Jary Z and Bluszcz A, 2017. OSL chronostratigraphy for loess deposits from Tyszowce – Poland. Geochronometria 44: 307–318. MoskaP AdamiecG JaryZ BluszczA 2017 OSL chronostratigraphy for loess deposits from Tyszowce – Poland Geochronometria 44 307 318 10.1515/geochr-2015-0074 Search in Google Scholar

Moska P, Adamiec G, Jary Z, Bluszcz A, Poręba G, Piotrowska N, Krawczyk M and Skurzyński J, 2018a. Luminescence chronostratigraphy for the loess deposits in Złota, Poland. Geochronometria 45: 44–55. MoskaP AdamiecG JaryZ BluszczA PorębaG PiotrowskaN KrawczykM SkurzyńskiJ 2018a Luminescence chronostratigraphy for the loess deposits in Złota, Poland Geochronometria 45 44 55 10.1515/geochr-2015-0073 Search in Google Scholar

Moska P, Stankowski W and Poręba G, 2018b. Optically stimulated luminescence techniques applied to the dating of the fall of meteorites in Morasko. Geochronometria 45(1): 74–81, DOI: 10.1515/geochr-2015-0088. MoskaP StankowskiW PorębaG 2018b Optically stimulated luminescence techniques applied to the dating of the fall of meteorites in Morasko Geochronometria 45 1 74 81 10.1515/geochr-2015-0088 Open DOISearch in Google Scholar

Moska P, Admiec G and Jary Z, 2011. OSL dating and lithological characteristics of loess deposits from Biały Kościół. Geochronometria 38: 162–171. MoskaP AdmiecG JaryZ 2011 OSL dating and lithological characteristics of loess deposits from Biały Kościół Geochronometria 38 162 171 10.2478/s13386-011-0013-x Search in Google Scholar

Moska P, Admiec G and Jary Z, 2012. High resolution dating of loess profile from Biały Kościół, south–west Poland. Quaternary Geochronology 10: 87–93. MoskaP AdmiecG JaryZ 2012 High resolution dating of loess profile from Biały Kościół, south–west Poland Quaternary Geochronology 10 87 93 10.1016/j.quageo.2012.04.003 Search in Google Scholar

Moska P, Jary Z, Adamiec G and Bluszcz A, 2015. OSL chronostratigraphy of a loess-palaeosol sequence in Złota using quartz and polymineral fine grains. Radiation Measurements 81: 23–31. MoskaP JaryZ AdamiecG BluszczA 2015 OSL chronostratigraphy of a loess-palaeosol sequence in Złota using quartz and polymineral fine grains Radiation Measurements 81 23 31 10.1016/j.radmeas.2015.04.012 Search in Google Scholar

Moska P, Jary Z, Adamiec G and Bluszcz A, 2019a. High resolution dating of loess profile from Strzyżów (Horodło Plateau-Ridge, Volhynia Upland). Quaternary International 502(Part A): 18–29. MoskaP JaryZ AdamiecG BluszczA 2019a High resolution dating of loess profile from Strzyżów (Horodło Plateau-Ridge, Volhynia Upland) Quaternary International 502 Part A 18 29 10.1016/j.quaint.2018.02.016 Search in Google Scholar

Moska P, Bluszcz A, 2013. Luminescence dating of loess profiles in Poland. Quaternary International 10: 51–60. MoskaP BluszczA 2013 Luminescence dating of loess profiles in Poland Quaternary International 10 51 60 10.1016/j.quaint.2012.09.004 Search in Google Scholar

Moska P, Adamiec G, Jary Z and Bluszcz A, 2019b. Chronostratigraphy of a loess-palaeosol sequence in Biały Kościół, Poland using OSL and radiocarbon dating. Quaternary International 502(Part A): 4–17. MoskaP AdamiecG JaryZ BluszczA 2019b Chronostratigraphy of a loess-palaeosol sequence in Biały Kościół, Poland using OSL and radiocarbon dating Quaternary International 502 Part A 4 17 10.1016/j.quaint.2018.05.024 Search in Google Scholar

Moska P, Jary Z, Sokołowski J, Poręba G, Raczyk J, Krawczyk M, Skurzyński J, Zieliński P, Michczyński A, Tudyka K, Adamiec G, Piotrowska N, Pawełczyk F, Łopuch M, Szymak A and Ryzner K, 2020. Chronostratigraphy of Late Glacial aeolian activity in SW Poland – a case study from the Niemodlin Plateau. Geochronometria 47: 124–137, DOI: 10.2478/geochr-2020-0015. MoskaP JaryZ SokołowskiJ PorębaG RaczykJ KrawczykM SkurzyńskiJ ZielińskiP MichczyńskiA TudykaK AdamiecG PiotrowskaN PawełczykF ŁopuchM SzymakA RyznerK 2020 Chronostratigraphy of Late Glacial aeolian activity in SW Poland – a case study from the Niemodlin Plateau Geochronometria 47 124 137 10.2478/geochr-2020-0015 Open DOISearch in Google Scholar

Moska P, Poręba G, Bluszcz A and Wiszniowska A, 2008. Combined IRSL/OSL dating of fine grains from Lake Baikal sediments. Geochronometria 31: 39–43. MoskaP PorębaG BluszczA WiszniowskaA 2008 Combined IRSL/OSL dating of fine grains from Lake Baikal sediments Geochronometria 31 39 43 10.2478/v10003-008-0018-5 Search in Google Scholar

Murray A, Buylaert JP and Thiel Ch, 2015. A luminescence dating intercomparison based on Danish beach-ridge sand. Radiation Measurement 81: 32–38. MurrayA BuylaertJP ThielCh 2015 A luminescence dating intercomparison based on Danish beach-ridge sand Radiation Measurement 81 32 38 10.1016/j.radmeas.2015.02.012 Search in Google Scholar

Murray AS and Olley JM, 2002. Precision and accuracy in the optically stimulated luminescence dating of sedimentary quartz: a status review. Geochronometria 21: 1–16. MurrayAS OlleyJM 2002 Precision and accuracy in the optically stimulated luminescence dating of sedimentary quartz: a status review Geochronometria 21 1 16 Search in Google Scholar

Murray AS and Wintle AG, 2000. Luminescence dating of quartz using an improved single aliquot regenerative-dose protocol. Radiation Measurements 32: 57–73. MurrayAS WintleAG 2000 Luminescence dating of quartz using an improved single aliquot regenerative-dose protocol Radiation Measurements 32 57 73 10.1016/S1350-4487(99)00253-X Search in Google Scholar

Murray AS, Marten R, Johnston A, Martin P, 1987. Analysis for naturally occuring radionuclides at environmental concentrations by gamma spectrometry. Journal of Radioanalytical and Nuclear Chemistry 115: 263–288. MurrayAS MartenR JohnstonA MartinP 1987 Analysis for naturally occuring radionuclides at environmental concentrations by gamma spectrometry Journal of Radioanalytical and Nuclear Chemistry 115 263 288 10.1007/BF02037443 Search in Google Scholar

Pazdur MF and Bluszcz A, 1987a. Application of thermoluminescence chronometry in chronostratigraphy of Quaternary, Part I. Przegląd Geologiczny 35(11): 566–570 (in Polish). PazdurMF BluszczA 1987a Application of thermoluminescence chronometry in chronostratigraphy of Quaternary, Part I Przegląd Geologiczny 35 11 566 570 (in Polish). Search in Google Scholar

Pazdur MF and Bluszcz A, 1987b. Application of thermoluminescence chronometry in chronostratigraphy of Quaternary, Part II. Przegląd Geologiczny 35(12): 624–628 (in Polish). PazdurMF BluszczA 1987b Application of thermoluminescence chronometry in chronostratigraphy of Quaternary, Part II Przegląd Geologiczny 35 12 624 628 (in Polish). Search in Google Scholar

Poręba G and Bluszcz A, 2007. Determination of the initial 137Cs fallout on the areas contaminated by Chernobyl fallout. Geochronometria 26: 35–38. PorębaG BluszczA 2007 Determination of the initial 137Cs fallout on the areas contaminated by Chernobyl fallout Geochronometria 26 35 38 10.2478/v10003-007-0009-y Search in Google Scholar

Poręba G, Śnieszko Z and Moska P, 2013. Influence of pedon history and washing nature on luminescence dating of Holocene colluvium on the example of research on the Polish loess areas. Quaternary International 296: 61–67. PorębaG ŚnieszkoZ MoskaP 2013 Influence of pedon history and washing nature on luminescence dating of Holocene colluvium on the example of research on the Polish loess areas Quaternary International 296 61 67 10.1016/j.quaint.2012.05.032 Search in Google Scholar

Poręba G, Śnieszko Z and Moska P, 2015. Application of OSL dating and 137Cs measurements to reconstruct the history of water erosion: a case study of a Holocene colluvium in Świerklany, South Poland. Quaternary International 374: 189–197. PorębaG ŚnieszkoZ MoskaP 2015 Application of OSL dating and 137Cs measurements to reconstruct the history of water erosion: a case study of a Holocene colluvium in Świerklany, South Poland Quaternary International 374 189 197 10.1016/j.quaint.2015.04.004 Search in Google Scholar

Poręba G, Śnieszko Z, Moska P and Mroczek P, 2019a. Deposits of Neolithic water soil erosion in the loess region of the Małopolska Upland (S Poland) – a case study of the settlement micro-region in Bronocice. Quaternary International 502: 45–59. PorębaG ŚnieszkoZ MoskaP MroczekP 2019a Deposits of Neolithic water soil erosion in the loess region of the Małopolska Upland (S Poland) – a case study of the settlement micro-region in Bronocice Quaternary International 502 45 59 10.1016/j.quaint.2018.09.018 Search in Google Scholar

Poręba G, Śnieszko Z, Moska P, Mroczek P and Malik I, 2019b. Interpretation of soil erosion in a Polish loess area using OSL, 137Cs, 210Pbex, dendrochronology and micromorphology – case study: Biedrzykowice site (S Poland). Geochronometria 46: 57–78. PorębaG ŚnieszkoZ MoskaP MroczekP MalikI 2019b Interpretation of soil erosion in a Polish loess area using OSL, 137Cs, 210Pbex, dendrochronology and micromorphology – case study: Biedrzykowice site (S Poland) Geochronometria 46 57 78 10.1515/geochr-2015-0109 Search in Google Scholar

Poręba G, Tudyka K, Walencik-Łata A and Kolarczyk A, 2020. Bias in 238U decay chain members measured by γ-ray spectrometry due to 222Rn leakage. Applied Radiation and Isotopes 156: 108945, DOI: 10.1016/j.apradiso.2019.108945. PorębaG TudykaK Walencik-ŁataA KolarczykA 2020 Bias in 238U decay chain members measured by γ-ray spectrometry due to 222Rn leakage Applied Radiation and Isotopes 156 108945 10.1016/j.apradiso.2019.108945 Open DOISearch in Google Scholar

Prescott JR and Hutton JT, 1994. Cosmic ray contributions to dose rates for luminescence and ESR dating: large depths and long-term time variations. Radiation Measurements 23: 497–500. PrescottJR HuttonJT 1994 Cosmic ray contributions to dose rates for luminescence and ESR dating: large depths and long-term time variations Radiation Measurements 23 497 500 10.1016/1350-4487(94)90086-8 Search in Google Scholar

Rees-Jones J, 1995. Optical dating of young sediments using fine-grain quartz. Ancient TL 13: 9–14. Rees-JonesJ 1995 Optical dating of young sediments using fine-grain quartz Ancient TL 13 9 14 Search in Google Scholar

Rhodes EJ and Schwenninger J-L, 2007. Dose rates and radioisotope concentrations in the concrete calibration blocks at Oxford. Ancient TL 25: 5–8. RhodesEJ SchwenningerJ-L 2007 Dose rates and radioisotope concentrations in the concrete calibration blocks at Oxford Ancient TL 25 5 8 Search in Google Scholar

Sanderson DCW, 1988. Thick source beta counting (TSBC): a rapid method for measuring beta dose-rates. International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 14(1–2): 203–207, DOI: 10.1016/1359-0189(88)90065-9. SandersonDCW 1988 Thick source beta counting (TSBC): a rapid method for measuring beta dose-rates International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 14 1–2 203 207 10.1016/1359-0189(88)90065-9 Open DOISearch in Google Scholar

Sjostrand H and Prescott JR, 2002. Thick source alpha counting: the measurement of thorium. Ancient TL 20(1): 7–10. SjostrandH PrescottJR 2002 Thick source alpha counting: the measurement of thorium Ancient TL 20 1 7 10 Search in Google Scholar

Sobczyk A, Borówka R, Badura J, Stachowicz-Rybka R, Tomkowiak J, Hrynowiecka A, Sławińska J, Tomczak M, Pitura M, Lamentowicz M, Kołaczek P, Karpińska-Kołaczek M, Tarnowski D, Kadej M, Moska P, Krąpiec M, Stachowicz K, Bieniek B, Siedlik K, Bąk M, Van der Made J, Kotowski A and Stefaniak K, 2020. Geology, stratigraphy and palaeoenvironmental evolution of the Stephanorhinus kirchbergensis-bearing Quaternary palaeolake(s) of Gorzow Wielkopolski (NW Poland, Central Europe). Journal of Quaternary Science 35(4): 539–558, DOI: 10.1002/jqs.3198. SobczykA BorówkaR BaduraJ Stachowicz-RybkaR TomkowiakJ HrynowieckaA SławińskaJ TomczakM PituraM LamentowiczM KołaczekP Karpińska-KołaczekM TarnowskiD KadejM MoskaP KrąpiecM StachowiczK BieniekB SiedlikK BąkM Van der MadeJ KotowskiA StefaniakK 2020 Geology, stratigraphy and palaeoenvironmental evolution of the Stephanorhinus kirchbergensis-bearing Quaternary palaeolake(s) of Gorzow Wielkopolski (NW Poland, Central Europe) Journal of Quaternary Science 35 4 539 558 10.1002/jqs.3198 Open DOISearch in Google Scholar

Thomsen KJ, Murray AS, Buylaert JP, Jain M, Hansen JH and Aubry T, 2016. Testing single-grain quartz OSL methods using sediment samples with independent age control from the Bordes-Fitte rockshelter (Roches d’Abilly site, Central France). Quaternary Geochronology 31: 77–96. ThomsenKJ MurrayAS BuylaertJP JainM HansenJH AubryT 2016 Testing single-grain quartz OSL methods using sediment samples with independent age control from the Bordes-Fitte rockshelter (Roches d’Abilly site, Central France) Quaternary Geochronology 31 77 96 10.1016/j.quageo.2015.11.002 Search in Google Scholar

Tudyka K, Bluszcz A, Poręba G, Miłosz S, Adamiec G, Kolarczyk A, Kolb T, Lomax J and Fuchs M, 2020. Increased dose rate precision in combined α and β counting in the μDose system – a probabilistic approach to data analysis. Radiation Measurements 134: 106310, DOI: 10.1016/j.radmeas.2020.106310. TudykaK BluszczA PorębaG MiłoszS AdamiecG KolarczykA KolbT LomaxJ FuchsM 2020 Increased dose rate precision in combined α and β counting in the μDose system – a probabilistic approach to data analysis Radiation Measurements 134 106310, 10.1016/j.radmeas.2020.106310 Open DOISearch in Google Scholar

Tudyka K, Miłosz S, Adamiec G, Bluszcz A, Poręba G, Paszkowski Ł and Kolarczyk A, 2018. μDose: a compact system for environmental radioactivity and dose rate measurement. Radiation Measurements 118: 8–13, DOI: 10.1016/j.radmeas.2018.07.016. TudykaK MiłoszS AdamiecG BluszczA PorębaG PaszkowskiŁ KolarczykA 2018 μDose: a compact system for environmental radioactivity and dose rate measurement Radiation Measurements 118 8 13 10.1016/j.radmeas.2018.07.016 Open DOISearch in Google Scholar

Tylmann W, Enters D, Kinder M, Moska P, Ohlendorf C, Poręba G and Zolitschka B, 2013. Multiple dating of varved sediments from Lake Łazduny, northern Poland: toward an improved chronology for the last 150 years. Quaternary Geochronology 15: 98–107. TylmannW EntersD KinderM MoskaP OhlendorfC PorębaG ZolitschkaB 2013 Multiple dating of varved sediments from Lake Łazduny, northern Poland: toward an improved chronology for the last 150 years Quaternary Geochronology 15 98 107 10.1016/j.quageo.2012.10.001 Search in Google Scholar

Uścinowicz S, Adamiec G, Bluszcz A, Jegliński W, Jurys L, Miotr-Szpiganowicz G, Moska P, Pączek K, Piotrowska N, Poręba G, Przezdziecki P and Uścinowicz G, 2019. Chronology of the last ice sheet de cay on the south ern Baltic area based on dating of glaciofluvial and ice-dammed lake deposits. Geological Quaterly 63: 193–208. UścinowiczS AdamiecG BluszczA JeglińskiW JurysL Miotr-SzpiganowiczG MoskaP PączekK PiotrowskaN PorębaG PrzezdzieckiP UścinowiczG 2019 Chronology of the last ice sheet de cay on the south ern Baltic area based on dating of glaciofluvial and ice-dammed lake deposits Geological Quaterly 63 193 208 Search in Google Scholar

Wallinga J, Murray AS and Duller GAT, 2000. Underestimation of equivalent dose in single-aliquot optical dating of feldspars caused by preheating. Radiation Measurements 32: 691–695. WallingaJ MurrayAS DullerGAT 2000 Underestimation of equivalent dose in single-aliquot optical dating of feldspars caused by preheating Radiation Measurements 32 691 695 10.1016/S1350-4487(00)00127-X Search in Google Scholar

Wiśniewski A, Połtowicz-Bobak M, Bobak D, Jary Z and Moska P, 2017. The Epigravetian and the Magdalenian in Poland: new chronological data and old problem. Geochronometria 44: 16–29. WiśniewskiA Połtowicz-BobakM BobakD JaryZ MoskaP 2017 The Epigravetian and the Magdalenian in Poland: new chronological data and old problem Geochronometria 44 16 29 10.1515/geochr-2015-0052 Search in Google Scholar

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