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P Van Der Knaap

Dados Biográficos

ID4783405
NOMEP Van Der Knaap
PRENOMESP
SOBRENOMEVan Der Knaap
ASSINATURAVAN DER KNAAP P
AFILIAÇÕESInstitute of Plant Sciences University of Bern Altenbergrain 21 CH‐3013 Bern Switzerland
VERIFICADONão
TOTAL DE OBRAS2
TOTAL DE CITAÇÕES0
TOTAL COMO AUTOR2
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2008
ANO MAIS RECENTE DE PUBLICAÇÃO2015
ÍNDICE H0
  • Pollen‐based quantitative reconstructions of Holocene regional vegetation cover (plant‐functional types and land‐cover types) in Europe suitable for climate modelling

    Open Access•Anna‐Kari Trondman, A-K Trondman et al.•ARTICLE•Global Change Biology•2015

    We present quantitative reconstructions of regional vegetation cover in north‐western Europe, western Europe north of the Alps, and eastern Europe for five time windows in the Holocene [around 6k, 3k, 0.5k, 0.2k, and 0.05k calendar years before present ( bp )] at a 1° × 1° spatial scale with the objective of producing vegetation descriptions suitable for climate modelling. The REVEALS model was applied on 636 pollen records from lakes and bogs to…

  • Biotic response to rapid climatic changes during the Late Glacial

    Open Access•Brigitta Ammann, U Eicher et al.•ARTICLE•Geographica Helvetica•2008•Referências: 1

    Organisms can respond to rapid climatic changes in three ways: 1) adaptation by evolution, affecting physiology and morphology), 2) migration and population dynamics including biogeographical changes) and 3) extinction local or global). Here, the focus is on examples of the second type. Organisms, whether algae, trees, or animals, find their ecological niches in a multi- dimensional space of gradients such as temperature winter, summer, means or …

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  • Biotic response to rapid climatic changes during the Late Glacial

    Open Access•Brigitta Ammann, U Eicher et al.•ARTICLE•Geographica Helvetica•2008•Referências: 1

    Organisms can respond to rapid climatic changes in three ways: 1) adaptation by evolution, affecting physiology and morphology), 2) migration and population dynamics including biogeographical changes) and 3) extinction local or global). Here, the focus is on examples of the second type. Organisms, whether algae, trees, or animals, find their ecological niches in a multi- dimensional space of gradients such as temperature winter, summer, means or …

  • Pollen‐based quantitative reconstructions of Holocene regional vegetation cover (plant‐functional types and land‐cover types) in Europe suitable for climate modelling

    Open Access•Anna‐Kari Trondman, A-K Trondman et al.•ARTICLE•Global Change Biology•2015

    We present quantitative reconstructions of regional vegetation cover in north‐western Europe, western Europe north of the Alps, and eastern Europe for five time windows in the Holocene [around 6k, 3k, 0.5k, 0.2k, and 0.05k calendar years before present ( bp )] at a 1° × 1° spatial scale with the objective of producing vegetation descriptions suitable for climate modelling. The REVEALS model was applied on 636 pollen records from lakes and bogs to…

Biology (2 obras) · Ecology (2 obras) · Geology and Paleoclimatology Research (2 obras) · Pollen (2 obras) · Algae (1 obras) · Climate change (1 obras) · Deciduous (1 obras) · Deforestation (computer science) (1 obras) · Ecological niche (1 obras) · Ecology (1 obras)

Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae