A method of determining rooting depth from a terrestrial biosphere model and its impacts on the global water and carbon cycle

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A method of determining rooting depth from a terrestrial biosphere model and its impacts on the global water and carbon cycle is …
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scholarly articleQ13442814

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P356DOI10.1046/J.1365-2486.1998.00152.X

P50authorMartin HeimannQ42838417
P2093author name stringAxeL. Kleidon
P2860cites workMaximum rooting depth of vegetation types at the global scaleQ38930768
Potential Net Primary Productivity in South America: Application of a Global Model.Q39378914
On the maximum extent of tree rootsQ56093282
A simulation model for the transient effects of climate change on forest landscapesQ57130857
A prognostic phenology scheme for global terrestrial carbon cycle modelsQ57242399
Simulating root carbon storage with a coupled carbon — Water cycle root modelQ57242408
The role of deep roots in the hydrological and carbon cycles of Amazonian forests and pasturesQ59082715
P433issue3
P921main subjectbiosphereQ42762
P1104number of pages12
P304page(s)275-286
P577publication date1998-03-01
P1433published inGlobal Change BiologyQ1531580
P1476titleA method of determining rooting depth from a terrestrial biosphere model and its impacts on the global water and carbon cycle
P478volume4

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cites work (P2860)
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