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tomrevillas nutrient [48 articles]

Artikler nylig sendt til tomrevillas bibliotek klassifisert med nøkkelordet nutrient. You can also see everyone's nutrient.
  • Nutrient Stoichiometry In \Pinguicula vulgaris: Nutrient Availability, Plant Size, and Reproductive Status
    Ecology, Vol. 86 (2005), pp. 982-991.
    by M Mendez, PS Karlsson
  • Plant allometry, stoichiometry and the temperature-dependence of primary productivity
    Global Ecology and Biogeography, Vol. 14 (2005), pp. 585-598.
    by AJ Kerkhoff, BJ Enquist, JJ Elser, WF Fagan
  • Phytoplankton growth rate as a function of cell size: an experimental test in Lake Biwa
    Limnology, Vol. 2 (2001), pp. 111-117.
    by M Kagami, J Urabe
  • Linking consumer­resource theory and digestive physiology: Application to diet shifts
    Evolutionary Ecology Research, Vol. 2 (2000), pp. 911-934.
    by CJ Whelan, JS Brown, KA Schmidt, BB Steele, MF Wilsson
  • A Model of Phytoplankton Competition for Limiting and Nonlimiting Nutrients: Implications for Development of Estuarine and Nearshore Management Schemes
    Estuaries and Coasts, Vol. 22 (1999), pp. 92-104.
    by DL Roelke, PM Eldridge, LA Cifuentes
  • The coupling of biogeochemical cycles of nutrients
    Biogeochemistry, Vol. 4 (1987), pp. 61-75.
    by GR Williams
  • The Metabolic Theory of Ecology
    Ecology, Vol. 85 (2004), pp. 1790-1791.
    by AA Agrawal
  • Pulsed nutrient supply as a factor inducing phytoplankton diversity
    Ecological Modelling, Vol. 171, No. 3. (15 January 2004), pp. 247-270.
    by T Yamamoto, G Hatta
    posted to articles diversity nutrient phytoplankton supply by tomrevilla on 2008-03-24 18:09:24 as **
  • Silicate as regulating nutrient in phytoplankton competition
    Marine Ecology Progress Series, Vol. 83 (1992), pp. 281-289.
    by JK Egge, DL Aksnes
    posted to articles competition nutrient phytoplankton silicate by tomrevilla on 2008-03-24 17:14:22 as **
  • Dual nutrient limited growth: models, experimental observations, and applications
    Journal of Biotechnology, Vol. 113 (2004), pp. 263-279.
    by M Zinn, B Witholt, T Egli
  • notes Contrasting effects of a cladoceran (\Daphnia galeata) and a calanoid copepod (\Eodiaptomus japonicus) on algal and microbial plankton in a Japanese lake, Lake Biwa
    Oecologia, Vol. 129 (2001), pp. 602-610.
    by T Yoshida, TB Gurung, M Kagami, J Urabe
  • Dependence of the Maximum Temperature for Growth of \Saccharomyces cerevisiae on Nutrient Concentration
    Arch. Microbiol., Vol. 104 (1975), pp. 23-28.
    by N Van Uden, Madeira A Lopes
  • Phytoplankton Community Ecology: the Role of Limiting Nutrients
    Ann.Rev.Ecol.Syst., Vol. 13 (1982), pp. 349-372.
    by D Tilman, SS Kilham, P Kilham
  • Control of phytoplankton growth in nutrient recycling ecosystems. Theory and terminology
    Marine Ecology Progress Series, Vol. 63 (1990), pp. 261-272.
  • All wet or dried up? Real differences between aquatic and terrestrial food webs
    Proceedings of the Royal Society of London B, Vol. 273 (2006), pp. 1-9.
    by JB Shurin, DS Gruner, H Hillebrand
  • Multiple Nutrient Limitations in Ecological Models
    Ecological Modelling, Vol. 46 (1989), pp. 147-163.
    posted to response nutrient model limitation functional additive articles by tomrevilla on 2008-03-16 21:33:00 as **
  • A Mathematical Model for Microbial Growth under Limitation by Conservative Substrates
    Biotechnology and Bioengineering, Vol. 18 (1976), pp. 1043-1056.
    by N Nyholm
  • Temperature effects on stocks and stability of a phytoplankton-zooplankton model and the dependence on light and nutrients
    Ecological Modelling, Vol. 95 (1997), pp. 75-86.
  • General Allometric Equations for Rates of Nutrient Uptake, Ingestion, and Respiration in Plankton Organisms
    Oecologia, Vol. 34 (1989), pp. 1290-1299.
    by CL Moloney, JG Field
    posted to nutrient ingestion articles allometry plankton respiration by tomrevilla on 2008-03-16 21:32:52 as **
  • Nutrient enrichment and food chains: can evolution buffer top-down control?
    Theoretical Population Biology, Vol. 65 (2004), pp. 285-298.
  • Phytoplankton nutrient competition under dynamic light regimes
    Limnology and Oceanography, Vol. 49, No. 4. (2004), pp. 1457-1462.
  • The assumptions and rationales of a computer model of phytoplankton population dynamics
    Limnology and Oceanography, Vol. 20 (1975), pp. 343-364.
    by JT Lehman, DB Botkin, GE Likens
  • Omnivory and food web dynamics
    Ecological Modelling, Vol. 163 (2003), pp. 19-32.
    by LDJ Kuijper, BW Kooi, C Zonneveld, SALM Kooijman
  • Light-Limited Growth and Competition for Light in Weel-Mixed Aquatic Environments: An Elementary Model
    Ecology, Vol. 75, No. 2. (March 1994), pp. 507-520.
    by J Huisman, FJ Weissing
  • notes Biological Conditions for Oscillations and Chaos Generated by Multispecies Competition
    Ecology, Vol. 82 (2001), pp. 2682-2695.
    by J Huisman, FJ Weissing
  • Global stability in chemostat-type plankton models with delayed nutrient recycling
    Journal of Mathematical Biology, Vol. 37 (1998), pp. 253-271.
    by XZ He, S Ruan
  • Modeling phytoplankton growth rates
    Journal of Plankton Research, Vol. 18 (1996), pp. 63-85.
    by JD Haney, GA Jackson
  • The Impact of Variable Stoichiometry on Predator-Prey Interactions: A Multinutrient Approach
    American Naturalist, Vol. 162, No. 1. (July 2003)
    by JP Grover
  • A Dynamic Regulatory Model of Phytoplanktonic Acclimation to Light, Nutrients, and Temperature
    Limnology and Oceanography, Vol. 43 (1998), pp. 679-694.
    by RJ Geider, HL Macintyre, TM Kana
  • A mechanistic model for describing dynamic multi-nutrient, light, temperature interactions in phytoplankton
    Journal of Plankton Research, Vol. 23, No. 9. (2001), pp. 977-997.
    by KJ Flynn
  • How critical is the critical N:P ratio?
    Journal of Phycology, Vol. 38, No. 5. (October 2002), pp. 961-970.
    by KJ Flynn
  • Modelling multi-nutrient interactions in phytoplankton; balancing simplicity and realism
    Progress in Oceanography, Vol. 56 (2003), pp. 249-279.
    by KJ Flynn
  • Resource limitation alters the 3/4 size scaling of metabolic rates in phytoplankton
    Marine Ecology Progress Series, Vol. 273 (June 2004), pp. 269-279.
    by ZV Finkel, AJ Irwin, O Schofield
  • Nitrogen in Insects: Implications for Trophic Complexity and Species Diversification
    American Naturalist, Vol. 160, No. 6. (December 2002), pp. 784-802.
    by WF Fagan, E Siemann, C Mitter, RF Denno, AF Huberty, HA Woods, JJ Elser
  • The Stoichiometry of Consumer-Driven Nutrient Recycling: Theory, Observations, and Consequences
    Ecology, Vol. 80, No. 3. (April 1999), pp. 735-751.
    by JJ Elser, J Urabe
  • Nutrient Dynamics and Food-Web Stability
    Annual Review of Ecology and Systematics, Vol. 20 (1989), pp. 71-95.
    by DL Deangelis, PJ Mulholland, AV Palumbo, AD Steinman, MA Huston, JW Elwood
  • Energy Flow, Nutrient Cycling, and Ecosystem Resilience
    Ecology, Vol. 61, No. 4. (August 1980), pp. 764-771.
    by DL Deangelis
  • Ecological Stoichiometry, Primary Producer-Decomposer Interactions, and Ecosystem Persistence
    Ecology, Vol. 82, No. 11. (November 2001), pp. 3096-3082.
  • Plant-herbivore interactions and ecological stoichiometry: when do herbivores determine plant nutrient limitation?
    Ecology Letters, Vol. 4 (2001), pp. 196-206.
    posted to nutrient limitation cycling articles herbivory stoichiometry by tomrevilla on 2008-03-16 21:31:27 as **
  • Plant coexistence depends on ecosystem nutrient cycles: Extension of the resourceratio theory
    Proceedings of the National Academy of Sciences of the USA, Vol. 102, No. 26. (June 2005), pp. 9212-9217.
    by T Daufresne, LO Hedin
  • Ecosystem adaptation: do ecosystems maximize resilience?
    Ecology, Vol. 83 (2002), pp. 2019-2026.
    by R Cropp, A Gabric
  • Kinetics of nutrient-limited transport and microbial growth
    Microbiol Reviews, Vol. 49, No. 3. (September 1985), pp. 270-297.
    by DK Button
  • Multiple nutrient limitation in unicellulars: reconstructing Liebig's law
    Mathematical Biosciences, Vol. 149 (1998), pp. 1-22.
    by Hugo A van den Berg
    posted to the nutrient multiple minimum limiting limitation liebigs law articles by tomrevilla on 2008-03-16 21:31:17 as **
  • Modelling the interacting effects of nutrient uptake, light capture and temperature on phytoplankton growth
    Journal of Plankton Research, Vol. 23, No. 8. (2001), pp. 829-840.
    by ME Baird, SE Emsley, JM Mcglade
  • Prey Species Replacement along a Gradient of Nutrient Enrichment: A Graphical Approach
    Ecology, Vol. 60 (1979), pp. 76-84.
    by Robert A Armstrong
  • Considerations on Yield, Nutrient Uptake, Cellular Growth, and Competition in Chemostat Models
    Cannadian Applied Mathematics Quarterly, Vol. 11, No. 2. (2003), pp. 107-142.
    by J Arino, SS Pilyugin, GSK Wolkowicz
  • Metabolic Stoichiometry and the Fate of Excess Carbon and Nutrients in Consumers
    American Naturalist, Vol. 165, No. 1. (January 2005), pp. 1-15.
    by TR Anderson, DO Hessen, JJ Elser, J Urabe
  • Phosphorus as growth-regulating factor relative to other environmental factors in cultured algae
    Hydrobiologia, Vol. 170 (1988), pp. 191-210.
    by G Ahlgren
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