Filters: Tags: jack pine (X)
21 results (597ms)
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Extensions Types Contacts Categories Tag Schemes |
Categories: Publication;
Types: Citation;
Tags: Black spruce,
Canada,
Climatic changes,
Forests,
Growth,
Categories: Publication;
Types: Citation;
Tags: A 01045 Diseases & treatment,
Black pine,
Canada, Alberta,
Climate,
Disease resistance,
Categories: Publication;
Types: Citation;
Tags: A 01044 General,
Biomass,
Canada,
Jack pine,
Microbiology Abstracts A: Industrial & Applied Microbiology,
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 50 (2045) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Restoration harvest rates and intensities were simulated.
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 50 (2045) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Contemporary harvest rates and intensities were simulated.
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 0 (1995) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Contemporary harvest rates and intensities were simulated.
Categories: Publication;
Types: Citation;
Tags: Abies balsamea,
Abies lasiocarpa,
Balsam fir,
Black pine,
Canada, British Columbia,
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 0 (1995) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Contemporary harvest rates and intensities were simulated.
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 50 (2045) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Restoration harvest rates and intensities were simulated.
Categories: Publication;
Types: Citation;
Tags: Canada, Ontario,
Coleoptera,
Curculionidae,
Entomology Abstracts,
Eucosma gloriola,
Categories: Publication;
Types: Citation;
Tags: Black spruce,
D 04700 Management,
Ecology Abstracts,
Fires,
Forest management,
Categories: Publication;
Types: Citation;
Tags: Canada, Saskatchewan,
D 04125 Temperate forests,
Ecology Abstracts,
Ecosystem dynamics,
Fires,
Categories: Publication;
Types: Citation;
Tags: Biodiversity,
Biological diversity,
Black spruce,
Forest practices,
Forestry,
Categories: Publication;
Types: Citation;
Tags: Aves,
Birds,
Black spruce,
Breeding,
Canada, Saskatchewan,
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 0 (1995) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Restoration harvest rates and intensities were simulated.
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 150 (2145) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Contemporary harvest rates and intensities were simulated.
Categories: Publication;
Types: Citation;
Tags: Black spruce,
D 04125 Temperate forests,
Ecology Abstracts,
Forests,
Jack pine,
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 150 (2145) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Restoration harvest rates and intensities were simulated.
![]() This dataset represents presence of Jack Pine (Pinus banksiana) in Minnesota (USA) at year 100 (2095) from a single model run of LANDIS-II. The simulation assumed Intergovernmental Panel on Climate Change (IPCC) B2 emissions (moderate) and used the Hadley 3 global circulation model. Restoration harvest rates and intensities were simulated.
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