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Results: 1-15 |
Results: 15

Authors: Rohrig, M Stutzel, H
Citation: M. Rohrig et H. Stutzel, A model for light competition between vegetable crops and weeds, EUR J AGRON, 14(1), 2001, pp. 13-29

Authors: Kage, H Alt, C Stutzel, H
Citation: H. Kage et al., Predicting dry matter production of cauliflower (Brassica oleracea L. botrytis) under unstressed conditions - I. Photosynthetic parameters of cauliflower leaves and their implications for calculations of dry matter production, SCI HORT A, 87(3), 2001, pp. 155-170

Authors: Kage, H Stutzel, H Alt, C
Citation: H. Kage et al., Predicting dry matter production of cauliflower (Brassica oleracea L. botrytis) under unstressed conditions - Part II. Comparison of light use efficiency and photosynthesis-respiration based modules, SCI HORT A, 87(3), 2001, pp. 171-190

Authors: Manschadi, AM Sauerborn, J Stutzel, H
Citation: Am. Manschadi et al., Quantitative aspects of Orobanche crenata infestation in faba beans as affected by abiotic factors and parasite soil seedbank, WEED RES, 41(4), 2001, pp. 311-324

Authors: Rohrig, M Stutzel, H
Citation: M. Rohrig et H. Stutzel, Canopy development of Chenopodium album in pure and mixed stands, WEED RES, 41(2), 2001, pp. 111-128

Authors: Rohrig, M Stutzel, H
Citation: M. Rohrig et H. Stutzel, Dry matter production and partitioning of Chenopodium album in contrastingcompetitive environments, WEED RES, 41(2), 2001, pp. 129-142

Authors: Alt, C Kage, H Stutzel, H
Citation: C. Alt et al., Nitrogen status and light environment influence dry matter partitioning incauliflower, J AM S HORT, 126(6), 2001, pp. 750-756

Authors: Laber, H Stutzel, H
Citation: H. Laber et H. Stutzel, Side effects of mechanical weed control in vegetable production, Z PFLANZENK, 2000, pp. 653-660

Authors: Alt, C Kage, H Stutzel, H
Citation: C. Alt et al., Modelling nitrogen content and distribution in cauliflower (Brassica oleracea L. botrytis), ANN BOTANY, 86(5), 2000, pp. 963-973

Authors: Alt, C Stutzel, H Kage, H
Citation: C. Alt et al., Optimal nitrogen content and photosynthesis in cauliflower (Brassica oleracea L. botrytis). Scaling up from a leaf to the whole plant, ANN BOTANY, 85(6), 2000, pp. 779-787

Authors: Kage, H Kochler, M Stutzel, H
Citation: H. Kage et al., Root growth of cauliflower (Brassica oleracea L. botrytis) under unstressed conditions: Measurement and modelling, PLANT SOIL, 223(1-2), 2000, pp. 131-145

Authors: Kage, H Stutzel, H
Citation: H. Kage et H. Stutzel, A simple empirical model for predicting development and dry matter partitioning in cauliflower (Brassica oleracea L. botrytis), SCI HORT A, 80(1-2), 1999, pp. 19-38

Authors: Rohrig, M Stutzel, H Alt, C
Citation: M. Rohrig et al., A three-dimensional approach to modeling light interception in heterogeneous canopies, AGRON J, 91(6), 1999, pp. 1024-1032

Authors: Manschadi, AM Sauerborn, J Stutzel, H Gobel, W Saxena, MC
Citation: Am. Manschadi et al., Simulation of faba bean (Vicia faba L.) root system development under Mediterranean conditions, EUR J AGRON, 9(4), 1998, pp. 259-272

Authors: Manschadi, AM Sauerborn, J Stutzel, H Gobel, W Saxena, MC
Citation: Am. Manschadi et al., Simulation of faba bean (Vicia faba L.) growth and development under Mediterranean conditions: Model adaptation and evaluation, EUR J AGRON, 9(4), 1998, pp. 273-293
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