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Numerical Model of Fish Exploitation – structure and application

na vnutriennykh vodoemakh. Ed. V – Izuchenie i racionalnoe ispolzovanie zapasov ryb vo vnutriennykh vodoemakh. GosNiorkh, NPO PromRybVod, Leningrad, Sbornik Nauchnykh Trudov, vypusk 244: 4-37 (in Russian). Beverton R.J., Holt S.J. 1957 – On the dynamics of exploited fish populations – Fishery Investigations Series II Vol. XIX London. Bieniarz K., Epler P., Sych R. 1990. Recreational catches in Rożnowskie Reservoir – Rocz. Nauk. PZW 3: 15-31 (in Polish). Biró P. 1978 – Yield–per–recruit estimates for bream ( Abramis brama L.) in Lake Balaton

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Impact of evapotranspiration on discharge in small catchments

., Zeman, J., 2012. Implementation of conceptual linear storage model of runoff with diurnal fluctuation in rainless periods. J. Hydrol. Hydromech, 60, 217-226. Fenicia, F., Savenije, H.H.G., Matgen, P., Pfister, L., 2006. Is the groundwater reservoir linear? Learning from data in hydrological modelling. Hydrol. Earth Syst. Sci., 10, 139-150. Kirchner, J.W., 2009. Catchment as simple dynamical systems: Catchment characterization, rainfall-runoff modelling and doing hydrology backward. Water Resour. Res., 45, WO02429, 34 p

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Hydrological and erosional response of a small catchment in Sicily

., Asensio, C., Puigdefábregas, J., 2011. A review of runoff generation and soil erosion across scales in semiarid south-eastern Spain. Journal of Arid Environments, 75, 12, 1254–1261. Cuomo, A., Guida, D., 2016. Using hydro-chemograph analyses to reveal runoff generation processes in a Mediterranean catchment. Hydrol. Process., 30, 4462–4476. Dunne, T., 1978. Field studies of hillslope flow processes. Hillslope Hydrology, 227–293. Duvert, C., Nord, G., Gratiot, N., Navratil, O., Nadal-Romero, E., Mathys, N., Némery, J., Regüés, D., García-Ruiz, J

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Land Degradation Within the Bahluieţ Catchment

in the Bahluiet catchment, Lucrările Seminarului Geografic D. Cantemir, nr. 35, Iaşi. Ştefan P., (1989), Geologia regiunii Dealului Mare-Hîrlău şi perspectivele în resurse minerale utile, Editura Univ. Al. I. Cuza, Iaşi. Ungureanu Al., (1993), Geografia podişurilor şi câmpiilor României, Univ. ”Al. I. Cuza”, Iaşi. *** 1979. Planurile topografice în scara 1:5.000, Editate de Institutul de Geodezie, Fotogrammetrie, Cartografie şi Organizarea Teritoriului, Iaşi. *** Studii pedologice în scara 1

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Applying profile- and catchment-based mathematical models for evaluating the run-off from a Nordic catchment

. A general description of the Skuterud catchment. Jordforsk Rep. 61/05. Deelstra, J., Eggestad, H.O., Iital, A., Jansons, V., 2007. A hydrological characterization of catchments. Bioforsk Report, Vol. 2, No. 53. Deelstra, J., Kværnø, S.H., Granlund, K., Sileika, A.S, Gaigalis K., Kyllmar, K., Vagstad, N., 2009. Runoff and nutrient losses during winter periods in cold climates - requirements to nutrient simulation models. J. Environ. Monit., 11; 602-609. Galdino, S., Sano, E.E., Andrade, R.G., Grego, C.R., Nogueira, S

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Episodic runoff generation at Central European headwater catchments studied using water isotope concentration signals

piedmont catchment. Ground Water, 41, 7, 913–925. DOI: 10.1111/j.1745-6584.2003.tb02434.x. Camacho Suarez, V.V., Saraiva Okello, A.M.L., Wenninger, J. W., Uhlenbrook, S., 2015. Understanding runoff processes in a semi-arid environment through isotope and hydrochemical hydrograph separations. Hydrol. Earth Syst. Sci., 19, 4183–4199. Cislerova, M., Sanda, M., Blazkova, S., Mazac, O., Grünwald, A., Zeithammerova, J., Tacheci, P., 1998. Ecological aspects of the water resources protection: Transport processes in a watershed affected by abrupt changes of runoff

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Regionalizing time of concentration using landscape structural patterns of catchments

., Adamowski, J., 2016. Regionalization of tank model using landscape metrics of catchments. Water Resources Management, 30, 14, 5065–5085. Amiri, B.J., 2014. Environmental Impacts Assessment. Tehran University Press, University of Tehran, 174 p. Amiri, B.J., Nanake, K., 2009. Modeling the linkage between river water quality and landscape metrics in the Chugoku district of Japan. Journal of Water Resources Management, 23, 931–956. Baker, W.L., Cai, Y., 1992. The programs for multiscale analysis of landscape structure using the GRASS geographical information

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Annual runoff coefficient in the Cerhovický Stream catchment

References Budík R., Budíková M., 2001. Statistically processed monthly and yearly precipitation and runoff characteristics within Morava River Watershed. Works and Studies, folder 28. Prague, Czech Hydrometeorol. Inst.: 118. Berankiene L., 2002. The perennial change of precipitation and annual runoff in the Susve river basin. Transactions of the Water Management Institute of Lithuanian University of Agriculture, 20 (42). Doležal F., 2002. Experimental agro-forest catchment VÚMOP

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Effect of weather conditions on light-trap catches of Trichoptera in Hungary (Central Europe)

References BACSÓ N. 1964. Agrometeorological bases of plant protection. Gödöllő Agrártudományi Egyetem, Gödöllő. (in Hungarian) BUCZYŃSKA E., SHAPOVAL A., BUCZYŃSKI P. 2014. The northermost European record of Parasetodes respersellus (Trichoptera: Leptoceridae) from the Courish Spit (Russia) with notes on its distribution and imaginal morphology. Turkish Journal of Zoology 38(5): 631-636. BUSZKO J., NOWACKI J. 1990. Catch activity of noctuid moths (Lepidoptera, Noctuidae) on light and sugar attractant in

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Defining the threshold level of hydrological drought in lake catchments

, Amsterdam: 139-198. Jokiel P., Tomaszewski E., 2009, Fazy i formy odpływu w zlewni Dzierżąznej (Phases and forms of runoff from the Dzierżążna River catchment), [in:] Bogdanowicz R., Fac-Beneda J. (eds), Zasoby i ochrona wód. Obieg wody i materii w zlewniach rzecznych (Water resources and water protection. Water and matter cycling in river basins), FRUG, Gdańsk: 141-158 (in Polish, English summary). Kasprzyk A., 2009, Zróżnicowanie niżówek na obszarze Międzyrzecza Pilicy i Wisły (Differential low flows in the Pilica

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