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Morphometric analysis and sub-watersheds prioritization of Nagmati River watershed, Kutch District, Gujarat using GIS based approach

REFERENCES A run P.S., J ana R., N athawat M.S. 2005. A rule based physiographic characterization of a drought prone watershed applying remote sensing and GIS. Journal of Indian Society of Remote Sensing. Vol. 33. Iss. 2 p. 189–201. A wasthi K.D., S itaula B.K., S ingh R.B.R., B ajacharaya M. 2002. Land-use change in two Nepalese watersheds: GIS and geomorphometric analysis. Land Degradation and Development. Vol. 13 p. 495–513. B ishop M.P., S hroder J.F., B onk R., O lsenholler J. 2002. Geomorphic change in high mountains: A Western

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Multicriteria approach for selecting the most vulnerable watershed for developing a management plan/ Użycie wielu kryteriów do wyboru najbardziej wrażliwej zlewni w projektowaniu planu zarządzania

References ARNETTE A., ZOBEL C., BOSCH D., PEASE J., METCALFE T. 2010. Stakeholder ranking of watershed goals with the vector analytic hierarchy process: Effects of participant grouping scenarios. Environmental Modelling and Software. Vol. 25 p. 1459-1469. BALOCH M.A., TANEK A.E. 2008. development of an integrated watershed management strategy for resource conservation in Balochistan Province of Pakistan. Desalination. Vol. 226 p. 38-46. BELTON V., STEWART T.J. 2001. Multiple criteria decision analysis: an

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Land Use/Cover Change at Infraz Watershed, Northwestren Ethiopia

Dynamics in Gilgel Abbay Watershed by Using GIS and Remote Sensing Techniques, Northwestern Ethiopia, International Journal of Geosciences, 4 (7): 1003-1008. Retrieved August 6, 2014, from http://dx.doi.org/10.4236/ijg.2013.47093. Amare, S. (2013). Population and Environment Interaction: The Case of Gilgel Abbay Catchment, Northwestern Ethiopia. E3 Journal of Environmental Research and Management, 4(1):153-162. Retrieved August 6, 2014, from http://www.e3journals.org. Berhanu, N, Adenew, B. and Gebre Selassie (2002). Current Land Policy

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Modelling of the rain–flow by hydrological modelling software system HEC-HMS – watershed’s case of wadi Cheliff-Ghrib, Algeria

REFERENCES A li M., K han S.J., A slam I., K han Z. 2011. Simulation of the impacts of landuse change on surface runoff of Lai Nullah Basin in Islamabad, Pakistan. Landscape and Urban Planning. Vol. 102 p. 271–279. A mbroise B. 1998. The dynamics of the water cycle in a process watershed factors model. Bucarest. HGA pp. 200. A rekhi S. 2012. Runoff modeling by HEC-HMS model (Case study: Kan watershed, Iran). International Journal of Agriculture and Crop Sciences. Vol. 4. Iss. 23 p. 1807–1811. A rekhi S., R ostamizad G., R ostami N

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Stochastic ARIMA model for annual rainfall and maximum temperature forecasting over Tordzie watershed in Ghana

. International Journal of Geosciences. Vol. 5. Iss. 7 p. 673–683. N obre S.J., S inger M.J. 2007. Residual analysis for linear mixed models. Biometrical Journal. Vol. 49. Iss. 6 p. 863–875. N yatuame M., A godzo S. 2017. Analysis of extreme rainfall events (drought and flood) over Tordzie Watershed in the Volta Region of Ghana. Journal of Geoscience and Environment Protection. Vol. 05. No. 09 p. 275–295. N yatuame M., O wusu -G yimah V., A mpiaw F. 2014. Statistical analysis of rainfall trend for Volta Region in Ghana. International Journal of

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Impact of urbanization on the sediment yield in tropical watershed using temporal land-use changes and a GIS-based model

. 2016. Sediment transport modelling in wadi Chemora during flood flow events. Journal of Water and Land Development. No. 31 p. 23-31. DOI 10.1515/jwld-2016-0033. BORAH D.K., KRUG E.C., YODER D. 2008. Watershed sediment yield. In: Sedimentation engineering: processes, measurement, modeling, and practice. Ed. M. Garcia. MOP 110 ASCE p. 827-858. BORAH D.K., XIA R., BERA M. 2001. Hydrologic and sediment transport modeling of agricultural watersheds. In: Proceedings of the World Water and Environmental Resources Congress. May 20-24 2001

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Regional modelling with flood-duration-frequency approach in the middle Cheliff watershed

hydrologique QdF au bassin versant du Saf Saf (Algérie) [Application of the Convergent Model of the QdF Hydrological Method to the Saf Saf Watershed (Algeria)]. Larhyss Journal. No 05 p. 133–137. B essenasse M., P aquier A., M oulla A.S. 2012. A contribution to the numerical modelling of dam reservoir siltation cycles. International Water Technology Journal. Vol. 2. No. 3 p. 236–249. B essenasse M., K ettab A., P aquier A. 2004. Modélisation bidimensionnelle du dépôt de sédiments dans un barrage en Algérie [Two-dimensional modeling of sediment deposition in

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Fourier Landscape Pattern Indices for Predicting South Carolina Watershed Fecal Coliform

-benefits of greenhouse gas reduction incentives in agriculture and forestry . Contract 68-01-001, EPA, 2001. Dorn, T., (2011, August). Nitrogen sources , Retrieved August 2011, from: URL http://lancaster.unl.edu/ag/factsheets/288.pdf . The Camdus Group, (1998). Watershed assessment: Reading, Pennsylvania . Contract 68-C5-0061, U.S. Environmental Protection Agency, 1998. Yetunde Jeje, (2006). Export Coefficients for Total Phosphorus, Total Nitrogen and Total Suspended Solids in the Southern Ablerta Region: A Literature Review. Regional Environmental

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Assessing soil loss using GIS based RUSLE methodology. Case of the Bou Namoussa watershed – North-East of Algeria

REFERENCES B ouguerra H., B ouanani A., K hanchoul K., D erdous O., T achi S.E. 2017. Mapping erosion prone areas in the Bouhamdane watershed (Algeria) using the Revised Universal Soil Loss Equation through GIS. Journal of Water and Land Development. Vol. 32. Iss. 1 p. 13–23. B oukheir R., C erdo O., A bdallah C. 2006. Regional soil erosion risk mapping in Lebanon. The Journal of Geo-morphology. Vol. 82. Iss. 3 p. 347–359. B rown R.B. 2003. Soil texture, soil science fact sheet SL29. Gainesville, Florida. Univ. of Florida, Institute of

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Mapping erosion prone areas in the Bouhamdane watershed (Algeria) using the Revised Universal Soil Loss Equation through GIS

. Utilisation des données de télédétection dans un système d'information géographique pour l'étude de l'érosion hydrique du bassin versant de l'Oued Aricha (Settat - Maroc) [Use of remote sensing data in a geographic information system for the study of water erosion of the watershed of Aricha river (Settat - Maroc)]. Mémoire de Maîtrise, Département de géographie et télédétection. Université de Sherbrooke, Québec, Canada pp. 83. ANYS H., BONN F., MERZOUK A. 1994. Remote sensing and GIS based mapping and modeling of water erosion and sediment yield in a semi

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