Ullmann, I.; Lange, O. L.; Ziegler, H.; Ehleringer, J. R.; Schulze, E. D.; Cowan, I. R.: Diurnal courses of leaf conductance and transpiration of mistletoes and their hosts in Central Australia. Oecologia 67 (4), pp. 577 - 587 (1985)
Beck, E.; Schlüter, I.; Scheibe, R.; Schulze, E. D.: Growth rates and population rejuvenation of East African giant groundsels (Dendrosenecia keniodendron). Flora 175 (4), pp. 243 - 248 (1984)
Beck, E.; Schulze, E. D.; Senser, M.; Scheibe, R.: Equilibrium freezing of leaf water and extracellular ice formation in afroalpine "giant rosette" plants. Planta 162 (3), pp. 276 - 282 (1984)
Brinckmann, E.; Tyerman, S. D.; Steudle, E.; Schulze, E. D.: The effect of different growing conditions on water relations parameters of leaf epidermal cells of Tradescantia virginiana L. Oecologia 62 (1), pp. 110 - 117 (1984)
Schulze, E. D.; Bloom, A.: Relationship between mineral nitrogen influx and transpiration in radish and tomato. Plant Physiology 76 (3), pp. 827 - 828 (1984)
Schulze, E. D.; Ehleringer, J. R.: The effect of nitrogen supply on growth and water-use efficiency of sylem tapping mistletoes. Planta 162 (3), pp. 268 - 275 (1984)
Schulze, E. D.; Reif, A.; Küppers, M.: Die pflanzenökologische Bedeutung und Bewertung von Hecken. Berichte der ANL / Hrsg.: Bayerische Akademie für Naturschutz und Landschaftspflege (ANL) Beiheft 3 (Teil 1), pp. 1 - 102 (1984)
Schulze, E. D.; Turner, N. C.; Glatzel, G.: Carbon, water and nutrient relations of two mistletoes and their hosts: A hypothesis. Plant, Cell and Environment 7 (5), pp. 293 - 299 (1984)
Turner, N. C.; Schulze, E. D.; Gollan, T.: Responses of stomata and leaf gas exchange to vapour pressure deficits and soil water content I. Species comparisons at high soil water contents. Oecologia 63 (3), pp. 338 - 342 (1984)
Turner, N. C.; Spurway, R. A.; Schulze, E. D.: Comparison of water potentials measured by in situ psychrometry and pressure chamber in morphologically different species. Plant Physiology 74 (2), pp. 316 - 319 (1984)
Nagarajah, S.; Schulze, E. D.: Responses of Vigna unguiculata (L.) Walp. to atmospheric and soil drought. Australian Journal of Plant Physiology 10 (5), pp. 385 - 394 (1983)
Schulze, E. D.: Photosynthetic CO2 uptake and whole plant growth as related to plant water relations. Berichte der Deutschen Botanischen Gesellschaft 96 (1), pp. 391 - 402 (1983)
Schulze, E. D.; Hall, A. E.; Lange, O. L.; Walz, H.: A portable steady-state porometer for measuring the carbon dioxide and water vapour exchanges of leaves under natural conditions. Oecologia 53 (2), pp. 141 - 145 (1983)
Schulze, E. D.; Schilling, K.; Nagarajah, S.: Carbohydrate partitioning in relation to whole plant production and water use of Vigna unguiculata (L.) Walp. Oecologia 58 (2), pp. 169 - 177 (1983)
Küppers, M.; Hall, A. E.; Schulze, E. D.: Effects of day-to-day changes in root temperature on leaf conductance to water vapour and CO2 assimilation rates of Vigna unguiculata L. Walp. Oecologia 52 (1), pp. 116 - 120 (1982)
Benecke, U.; Schulze, E. D.; Matyssek, R.; Havranek, W. M.: Environmental control of CO2-assimilation and leaf conductance in Larix decidua Mill. I. A comparison of contrasting natural environments. Oecologia 50, pp. 54 - 61 (1981)
Tomos, A. D.; Steudle, E.; Zimmermann, U.; Schulze, E. D.: Water relations of leaf epidermal cells of Tradescantia virginiana. Plant Physiology 68 (5), pp. 1135 - 1143 (1981)
Farquhar, G. D.; Schulze, E. D.; Küppers, M.: Responses to humidity by stomata of Nicotiana glauca L. and Corylus avellana L. are consistent with the optimization of carbon dioxide uptake with respect to water loss. Australian Journal of Plant Physiology 7 (3), pp. 315 - 327 (1980)
Hall, A. E.; Schulze, E. D.: Drought effects on transpiration and leaf water status of cowpea in controlled environments. Australian Journal of Plant Physiology 7 (2), pp. 141 - 147 (1980)
Thanks to FLUXCOM-X, the next generation of data driven, AI-based earth system models, scientists can now see the Earth’s metabolism at unprecedented detail – assessed everywhere on land and every hour of the day.
David Hafezi Rachti was awarded twice: for his EGU poster with this year’s “Outstanding Student and PhD candidate Presentation” (OSPP) and for his Bachelor thesis, he received the 1st prize of the “Young Climate Scientist Award 2024”.
A recent study by scientists from the Max Planck Institute for Biogeochemistry and the University of Leipzig suggests that increasing droughts in the tropics and changing carbon cycle responses due to climate change are not primarily responsible for the strong tropical response to rising temperatures. Instead, a few particularly strong El Niño events could be the cause.
A study by Leipzig University, the German Centre for Integrative Biodiversity Research Halle-Jena-Leipzig (iDiv) and the MPI for Biogeochemistry shows that gaps in the canopy of a mixed floodplain forest have a direct influence on the temperature and moisture in the forest soil, but only a minor effect on soil activity.
EU funds the international research project AI4PEX to further improve Earth system models and thus scientific predictions of climate change. Participating scientists from 9 countries met at the end of May 2024 to launch the project at the MPI for Biogeochemistry in Jena, which is leading the project.
The 73rd Lindau Nobel Laureate Meeting was dedicated to physics and was held from June 30 to July 5, 2024. It brought together around 40 Nobel Laureates and 635 young scientists from more than 90 nations.
A research team led by the German Centre for Integrative Biodiversity Research (iDiv) and Leipzig University has developed an algorithm that analyses observational data from the Flora Incognita app. The novel can be used to derive ecological patterns that could provide valuable information about the effects of climate change on plants.
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If rivers overflow their banks, the consequences can be devastating. Using methods of explainable machine learning, researchers at the Helmholtz Centre for Environmental Research (UFZ) have shown that floods are more extreme when several factors are involved in their development.
Europe is the fastest warming continent in the world. According to the European Environment Agency’s assessment, many of these risks have already reached critical levels and could become catastrophic without urgent and decisive action.