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Syarifuddin Kadir, Badaruddin, Nurlina and Eka Farma

References Arsyad, S. 2010. Soil and Water Conservation, the First Edition. IPB Press. Bogor. Asdak. 2010. Hydrology and Watershed Management. Prints Fifth (revised) Gadjah Mada University Press. Yogyakarta. Baja,S. 2012. Analytical methods of evaluation of land resources. GIS applications, fuzzy set, dan MCDM, Identity Hasanuddin University, Makassar.. Center for Barito Watershed Management. 2013. Updating of Spatial Data of Degraded Land in the Working Area of the Office of Barito Watershed

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Črtomir Rozman, Karmen Pažek, Jernej Prišenk, Andrej Škraba and Miroljub Kljajić

References Bockermann, A., Meyer, B., Omannc, I. & Spangenberg J.H. (2005). Modelling sustainability: comparing an econometric (PANTA RHEI) and a system dynamics model (SuE). Journal of Policy Modeling, 27(2), 189-210, <>. 2004.11.002 Elshorbagy, A., Jutla, A. & Barbour L. (2005). System dynamics approach to assess the sustainability of reclamation of disturbed watersheds. Canadian Journal of Civil Engineering, 32 (1),144-158,

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Tomasz Orczykowski and Andrzej Tiukało

-old controversies. WATER RESOURCES RESEARCH,. 45, 2009, Vol. W08416. 15. Seibert, J. and McDonnell, J. Land-cover impacts on streamflow: a changedetection modelling approach that incorporates parameter uncertainty. Hydrological Science Journal. 55, 2010, Vol. 3, 316-332. 16. Beven, K. Uniqueness of place and process representations in hydrological modelling. Hydrology and Earth System Sciences. 4, 2000, 203-213. 17. McDonnell, J., et al. Moving beyond heterogeneity and process complexity: A new vision for watershed hydrology. Water

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Rosario Cano Garcia

), “ Top reasons for small business failure: Study ”, Retrieved from: . Watershed and Water Resources Research Center (n. d.) Ecosystems Research and Development Bureau . WWRRC-REGION 1 Ecosystems Research Station. San Fernando City, La Union, Philippines. Retrieved from: . “What is impact assessment?” (2014) Retrieved from: www

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Zdeněk Opršal, Bořivoj Šarapatka and Petr Kladivo

-Saint-Laurent (Quebec, Canada) and their relation to landscape physical attributes. Landscape Ecology, Vol. 14, No. 1, p. 35-52. SCHNEIDER, L. C., PONTIUS, R. G. (2001): Modeling land-use change in the Ipswich watershed, Massachusetts, USA. Agriculture, Ecosystems and Environment, Vol. 85, No. 1, p. 83-94. SIMPSON, J. W., BOERNER, R. E. J., DEMERS, M. N., BERNS, L. A., ARTIGAS, F. J., SILVA, A. (1994): Forty-eight years of landscape change on two contiguous Ohio landscapes. Landscape Ecology, Vol. 9, No. 4, p. 261-270. ŠARAPATKA, B

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Linda Kauškale and Ineta Geipele

:// Meneses, B. M., Reis, R., Vale, M. J., &Saraiva, R. (2015). Land use and land cover changes in Zêzere watershed (Portugal) - Water quality implications. Science of the Total Environment, 527-528, 439-447. Ministry of Environmental Protection and Regional Development of the Republic of Latvia. (2015). Land Policy. Retrieved May 27, 2015, from

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Axel Wolz, Jana Fritzsch, Gertrud Buchenrieder and Andriy Nedoborovskyy

: A social capital perspective. Dissertation. Halle (Saale): Martin-Luther-University Halle-Wittenberg. Krishna, A. and, N. Uphoff 2002. Mapping and measuring social capital through assessment and collective action to conserve and develop watersheds in Rajasthan, India. In: The Role of Social Capital in Development. An Empirical Assessment, edited by C. Grootaert and T. van Bastelaer, 85-124. Cambridge: Cambridge University Press. Lee, J., Arnason, A., Nightingale, A. and Shucksmith, M. 2005. Networking: Social

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Giedrius Kaveckis

uniform changes in a Portuguese watershed illustrated by CORINE maps: An Intensity Analysis approach. Ecological Indicators, 66, 382-390. The World Bank. (2016). Indicators of the World Bank. Retrieved September 9, 2016, from UN. (2015). RES/70/1. Transforming our world: the 2030 agenda for sustainable development. United Nations. United Nations. (2017). United Nations Demographic Yearbook 2015, 66 Blg edition. ed. United Nations

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Hana Středová, Bronislava Spáčilová, Jana Podhrázská and Filip Chuchma

, Rome, Italy. KEMPER, W. D., ROSENAU, R. C. (1986): Aggregate stability and size distribution. In: Methods of Soil Analysis, Part 1. Physical and Mineralogical Methods (pp. 425–444). American Society of Agronomy, Madison, USA. KONG, B., YU, H. (2013): Estimation model of soil freeze-thaw erosion in Silingco Watershed Wetland of Northern Tibet. The Scientific World Journal, ID 636521. KVÆRNØ, S. H., ØYGARDEN, L. (2006): The influence of freeze–thaw cycles and soil moisture on aggregate stability of three soils in Norway. Catena, 67(3): 175

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Burghard Christian Meyer, Gábor Mezősi and Ferenc Kovács

. (2013): Assessment of regional climate change impacts on Hungarian landscapes. Regional Environmental Change 13(4): 797–811. MIKA, J., HORVÁTH, S. Z., MAKRA, L. (2001): Impact of documented land use changes on the surface albedo and evapotranspiration in a plain watershed. Physics and Chemistry of the Earth Part B: Hydrology Oceans and Atmosphere 26(7): 601–606. NASSAUER, J. I., OPDAM, P. (2008): Design in science: extending the landscape ecology paradigm. Landscape Ecology 23: 633–644. NEEF, E. (1967): Die theoretischen Grundlagen der