I. Tamubula, J. A. Sinden: Sustainability and economic efficiency of agroforestry systems in Embu District, Kenya: An application of environmental modelling. 13-21
V. R. Reddy, Ya. A. Pachepsky: Predicting crop yields under climate change conditions from monthly GCM weather projection. 79-86
Igor v. Florinsky: Relationships between topographically expressed zones of flow accumulation and sites of fault intersection: analysis by means of digital terrain modelling. 87-100
Holger R. Maier, Graeme C. Dandy: Neural networks for the prediction and forecasting of water resource variables: a review of modelling issues and applications. 101-124
Knut Alfredsen, Bjørn Sæther: An object-oriented application framework for building water resource information and planning tools applied to the design of a flood analysis system. 215-224
J. A. Foster, A. T. McDonald: Assessing pollution risks to water supply intakes using geographical information systems (GIS). 225-234
F. Goor, J.-M. Jossart, J. F. Ledent: ECOP: an economic model to assess the willow short rotation coppice global profitability in a case of small scale gasification pathway in Belgium. 279-292
Jian J. Dai, David M. Rocke: A GIS-based approach to spatial allocation of area source solvent emissions. 293-302
Christos Babajimopoulos: Revisiting the Douglas-Jones method for modelling unsaturated flow in a cultivated soil. 303-312
Benedict F. Voit, Eberhard O. Voit: A 7th-grade science project casts doubt on the standard explanation of the Gaussian plume model for seepage through soil. 497-499
Anda Ionescu, Yves Candau, Eric Mayer, Iolanda Colda: Analytical determination and classification of pollutant concentration fields using air pollution monitoring network data: Methodology and application in the Paris area, during episodes with peak nitrogen dioxide levels. 565-573
Anne Jaecker-Voirol, Philippe Pelt: PM10 emission inventory in Ile de France for transport and industrial sources: PM10 re-suspension, a key factor for air quality. 575-581
Konstantin Rubinstein, Dmitry Kiktev: Comparison of the atmospheric lower-layer diagnostic system (SDA) for pollution transfer modelling at MSC-East (Moscow) and MSC-West (Oslo). 589-596