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Tomáš Hlásny, Dušan Kočický, Martin Maretta, Zuzana Sitková, Ivan Barka, Milan Konôpka and Helena Hlavatá

on Floods in Margecany- Hornad Watershed, Slovakia. Water Resources Management, 21:1373-1391. Bara, M., Kohnová, S., Gaál, L., Szolgay, J., Hlavčová, K., 2009: Estimation of IDF curves of extreme rainfall by simple scaling in Slovakia. Contributions to Geophysics and Geodesy, 39:187-206. Calanca, P., Roesch, A., Jasper, K., Wild, M., 2006: Global warming and the summertime evapotranspiration regime of the Alpine region. Climatic Change, 79:65-78. Calder, I. R., 2007: Forests and water - ensuring forest benefits

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Michal Mikloš, Ilja Vyskot, Tomáš Šatala, Katarína Korísteková, Martin Jančo and Jaroslav Škvarenina

forest in West Tatra Mts. Biologia , 69, 1492–1501. DOI: 10.2478/s11756-014-0461-x. Balk, B. & Elder K. (2000). Combining binary decision tree and geostatistical methods to estimate snow distribution in a mountain watershed. Water Resources Research , 36, 13–26. DOI: 10.1029/1999wr900251. Bavay, M., Grünewald, T. & Lehning M. (2013). Response of snow cover and runoff to climate change in high Alpine catchments of Eastern Switzerland. Advances in Water Resources , 55, 4–16. DOI: 10.1016/j.advwatres.2012.12.009. Beniston, M. (1997). Variations of

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Dwi Priyantoro and Lily Montarcih Limantara

REFERENCES BPPT 2013. Badan Pengkajian dan Penerapan Teknologi Indonesia (Department of Technological and Application, Indonesia) [online]. [Access 05.01.2017]. Available at: wxmod.bppt.go.id/ C ordery I. 1991. The unit hydrograph method of flood estimation. Chapt. 8. In: Australian rainfall and runoff. Ed. D. Pilgrim. Canberra, Australia. The Institute of Engineers p. 151–173. D utta S., M ishra A., K ar S., P anigrahy S. 2006. Estimating spatial curve number for hydrologic response analysis of a small watershed. Journal of Spatial

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Zuzanna Oleksińska

watershed: phytotechnology and ecohydrology: UNEP/Earthprint. Zalewski, M. 2011. Ecohydrology for implementation of the EU water framework directive. Proceedings of the ICE-Water Management, 164(8): 375-385. Zalewski, M & Wagner-Lotkowska, I. 2004. Integrated watershed mangement: ecohydrology & phytotechnology. Manual. Integrated watershed mangement: ecohydrology & phytotechnology Manual: UNESCO.

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Mohammad Bisri, Lily Montarcih Limantara, Linda Prasetyorini and Dwi Chasanawati

REFERENCES AGWA 2000. Tools guide. The automated geospatial watershed assessment tool [online]. [Access 02.01.2012]. Available at: https://www.tucson.ars.ag.gov/agwa/.../agwa_3.x_user_guid A rsyad S. 2000. Konservasi tanah dan air [Soil and water conservation]. Bogor. IPB Press. ISBN 9794930032 pp. 466. A sdak C. 2001. Hidrologi dan pengelolaan daerah aliran sungai [Hydrology and watershed management]. Yogyakarta. Gajah Mada University Press. ISBN 979-420-737-3 pp. 646. Bakosurtanal undated. Topography map of Bakosurtanal and

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Abdessamed Derdour, Abderrazak Bouanani and Kamila Babahamed

REFERENCES A mbrsoise B. 1998. La dynamique du cycle de l’eau dans un bassin versant. Processus, Facteur, Modèles [The dynamics of the water cycle in a watershed. Process, factor, models]. Bucarest. H.G.A. ISBN 973-98954-2-5 pp. 206. AQUAVEO 2012. WMS 9.1 Tutorial. Watershed modeling – Time of concentration calculations and computing a composite CN. Provo. Utah pp. 14. B ensaid A. 2007. SIG et télédétection pour l’étude de l’ensablement dans une zone aride: le cas de la Wilaya de Naama (Algérie) [GIS and remote sensing for the study of silting

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Prawit Uang-Aree and Sununtha Kingpaiboon

.K. 2013. Rainfall-runoff modeling using conceptual, data driven, and wavelet based computing approach. Journal of Hydrology. Vol. 493 p. 57–67. N oor H., V afakhah M., T aheriyoun M., M oghadasi M. 2014. Hydrology modelling in Taleghan mountainous watershed using SWAT. Journal of Water and Land Development. No. 20 p. 11–18. P atro S., C hatterjee C., M ohanty S., S ingh R., R aghuwanshi N.S. 2009. Flood inundation modeling using MIKE FLOOD and remote sensing data. Journal of the Indian Society of Remote Sensing. Vol. 37 p. 107–118. S atomura

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Jan Adamowski and Shiv O. Prasher

References ADAMOWSKI J., CHAN H.F. 2011. A wavelet neural network conjunction model for groundwater level forecasting. Journal of Hydrology. No 407 p. 28-40. ADAMOWSKI J., CHAN H.F., PRASHER S.O., SHARDA V.N. 2011. Comparison of multivariate adaptive regression splines with coupled wavelet transform artificial neural networks for rainfall-runoff forecasting in Himalayan micro watersheds with limited data. Journal of Hydroinformatics. No 3 p. 731-744. ADAMOWSKI J., KARAPATAKI C. 2010. Comparison of

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Elga Apsīte, Ansis Zīverts and Anda Bakute

different physiographic regions of Switzerland. Hydrol. Sci. J. , 37(3), 217-231. Crawford, N. H., Linsley R. K. (1966) Digital simulation in hydrology: Stanford Watershed Model IV. Technical Report No. 39, Department of Civil Engineering, Stanford University, CA. Fleming, G. (1975). Computer Simulation Techniques in Hydrology. New York: Elsevier. 333 pp. Golubovskis, Ē. (1993). Noteku un upju regulēto gultņu hidraulikas un noturības problēmas [Problems of Hydraulics and Stability on Small

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Wondwosen Abera and Mohammed Assen

.23027 Adugna, A. & Abegaz A. (2016). Effects of land use changes on the dynamics of selected soil properties in north-east Wellega, Ethiopia. Soil , 2, 63–70. DOI: 10.5194/soil-2-63-2016. Aghasi, B., Jalalian, A. & Honarjoo N. (2011). Decline in soil quality as a result of land use change in Ghareh Aghaj watershed of Semirom, Isfahan, Iran. African Journal of Agricultural Research , 6(4), 992–997. DOI: 10.5897/AJAR10.681. Andrews, S.S., Karlen, D.L. & Mitchell J.P. (2002). A comparison of soil quality indexing methods for vegetable production systems in