Displaying 1 - 10 of 11
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Lin, Ping; Yang, Lu; Zhao, Shuqing. 2020. Urbanization effects on Chinese mammal and amphibian richness: a multi-scale study using the urban-rural gradient approach. [Environmental Research Communications] . 2(12): 125002 DOI: https://doi.org/10.1088/2515-7620/abd1c5
Uses Remote Sensing: yes
SEDAC Data Collection(s):
species
(Journal Article)
export
Walsh, Michael G.; Sawleshwarkar, Shailendra; Hossain, Shah; Mor, Siobhan M. 2020. Whence the next pandemic? The intersecting global geography of the animal-human interface, poor health systems and air transit centrality reveals conduits for high-impact spillover. [One Health] . 11: 100177 DOI: https://doi.org/10.1016/j.onehlt.2020.100177
SEDAC Data Collection(s):
gpw-v4
povmap
species
(Journal Article)
export
Bogard, Cynthia J. 2015. A “Sensibility of the Commons” and climate change adaptive capacity in Haiti. [Perspectives on Global Development and Technology] . 14(5): 519-543 DOI: https://doi.org/10.1163/15691497-12341359
SEDAC Data Collection(s):
(Journal Article)
export
Ozcan, Ayse; Strauss, Eric. 2015. An overview of the impacts of global climate change on farmland in Turkey. [International Journal of Environmental Science and Development] . 7(6): 458-463 DOI: https://doi.org/10.7763/IJESD.2016.V7.820
SEDAC Data Collection(s):
(Journal Article)
export
Pires, Stephen F. 2015. The heterogeneity of illicit parrot markets: An analysis of seven neo-tropical open-air markets. [European Journal on Criminal Policy and Research] . 21(1): 151-166 DOI: https://doi.org/10.1007/s10610-014-9246-6
SEDAC Data Collection(s):
species
(Journal Article)
export
Pires, Stephen F. 2015. A CRAVED analysis of multiple illicit parrot markets in Peru and Bolivia. [European Journal on Criminal Policy and Research] . 21(3): 321-336 DOI: https://doi.org/10.1007/s10610-014-9264-4
SEDAC Data Collection(s):
species
(Journal Article)
export
Fraser, Evan D. G.; Simelton, Elisabeth; Termansen, Mette; Gosling, Simon N.; South, Andrew. 2013. “Vulnerability hotspots”: Integrating socio-economic and hydrological models to identify where cereal production may decline in the future due to climate change induced drought. [Agricultural and Forest Meteorology] . 170: 195-205 DOI: https://doi.org/10.1016/j.agrformet.2012.04.008
SEDAC Data Collection(s):
(Journal Article)
export
MacCarthy, Dilys S.; Adiku, S. G. K.; Yangyuoro, M. 2013. Assessing the potential impact of climate change on maize production in two farming zones of Ghana using the CERES-Maize model. [Ghana Policy Journal] . 5(Special Edition on Climate Change): 27-39
Related URL(s): http://ghanjol.org.gh/index.php/gpj/article/view/354
SEDAC Data Collection(s):
(Journal Article)
export
Machovina, Brian; Feeley, Kenneth J. 2013. Climate change driven shifts in the extent and location of areas suitable for export banana production. [Ecological Economics] . 95: 83-95 DOI: https://doi.org/10.1016/j.ecolecon.2013.08.004
SEDAC Data Collection(s):
(Journal Article)
export
McLeman, Robert. 2013. Developments in modelling of climate change-related migration. [Climatic Change] . 117(3): 599-611 DOI: https://doi.org/10.1007/s10584-012-0578-2
SEDAC Data Collection(s):
(Journal Article)
export

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