Displaying 51 - 60 of 134
Operations
Nadine, Andrieu; Patrice, Dumas; Emma, Hemmerle; Francesca, Caforio; Falconnier Gatien, N.; Mélanie, Blanchard; Jonathan, Vayssières. 2021. Ex ante mapping of favorable zones for uptake of climate-smart agricultural practices: A case study in West Africa. [Environmental Development] . 37: 100566 DOI: https://doi.org/10.1016/j.envdev.2020.100566
Uses Remote Sensing: yes
SEDAC Data Collection(s):
hanpp
(Journal Article)
export
Nauman, Claire; Anderson, Eric; Coughlan de Perez, Erin; Kruczkiewicz, Andrew; McClain, Shanna; Markert, Amanda; Griffin, Robert; Suarez, Pablo. 2021. Perspectives on flood forecast-based early action and opportunities for Earth observations. [Journal of Applied Remote Sensing] . 15(3): 032002 DOI: https://doi.org/10.1117/1.JRS.15.032002
Uses Remote Sensing: yes
SEDAC Data Collection(s):
gpw-v4
(Journal Article)
export
Nieves, Jeremiah J.; Bondarenko, Maksym; Kerr, David; Ves, Nikolas; Yetman, Gregory; Sinha, Parmanand; Clarke, Donna J.; Sorichetta, Alessandro; Stevens, Forrest R.; Gaughan, Andrea E.; Tatem, Andrew J. 2021. Measuring the contribution of built-settlement data to global population mapping. [Social Sciences & Humanities Open] . 3(1): 100102 DOI: https://doi.org/10.2139/ssrn.3599775
Uses Remote Sensing: yes
SEDAC Data Collection(s):
gpw-v4
(Journal Article)
export
Palacios-Lopez, Daniela; Bachofer, Felix; Esch, Thomas; Marconcini, Mattia; MacManus, Kytt; Sorichetta, Alessandro; Zeidler, Julian; Dech, Stefan; Tatem, Andrew J.; Reinartz, Peter. 2021. High-resolution gridded population datasets: Exploring the capabilities of the World Settlement Footprint 2019 imperviousness layer for the African continent. [Remote Sensing] . 13(6): 1142 DOI: https://doi.org/10.3390/rs13061142
Uses Remote Sensing: yes
SEDAC Data Collection(s):
gpw-v4
grump-v1
(Journal Article)
export
Park, Hayoung; Jeong, Sujong; Park, Hoonyoung; Labzovskii, Lev D.; Bowman, Kevin W. 2021. An assessment of emission characteristics of Northern Hemisphere cities using spaceborne observations of CO2, CO, and NO2. [Remote Sensing of Environment] . 254: 112246 DOI: https://doi.org/10.1016/j.rse.2020.112246
Uses Remote Sensing: yes
SEDAC Data Collection(s):
gpw-v4
(Journal Article)
export
Pasut, Chiara; Tang, Fiona H. M.; Hamilton, David P.; Maggi, Federico. 2021. Carbon, nitrogen, and sulfur elemental fluxes in the soil and exchanges with the atmosphere in Australian tropical, temperate, and arid wetlands. [Atmosphere] . 12(1): 42 DOI: https://doi.org/10.3390/atmos12010042
Uses Remote Sensing: yes
SEDAC Data Collection(s):
ferman-v1
(Journal Article)
export
Peters, Ian Marius; Buonassisi, Tonio. 2021. How changes in worldwide operating conditions affect solar cell performance. [Solar Energy] . 220: 671-679 DOI: https://doi.org/10.1016/j.solener.2021.01.017
Uses Remote Sensing: yes
SEDAC Data Collection(s):
(Journal Article)
export
Pu, Qiang; Yoo, Eun-Hye. 2021. Ground PM2.5 prediction using imputed MAIAC AOD with uncertainty quantification. [Environmental Pollution] . 274: 116574 DOI: https://doi.org/10.1016/j.envpol.2021.116574
Uses Remote Sensing: yes
SEDAC Data Collection(s):
gpw-v4
(Journal Article)
export
Re, Daniele Da; Montecino-Latorre, Diego; Vanwambeke, Sophie O.; Marcantonio, Matteo. 2021. Will the yellow fever mosquito colonize the old world? Assessing the re-introduction of Aedes aegypti in Europe using a process-based population dynamical model. [Ecological Informatics] . 61: 101180 DOI: https://doi.org/10.1016/j.ecoinf.2020.101180
Uses Remote Sensing: yes
SEDAC Data Collection(s):
groads
(Journal Article)
export
Sannigrahi, Srikanta; Kumar, Prashant; Molter, Anna; Zhang, Qi; Basu, Bidroha; Basu, Arunima Sarkar; Pilla, Francesco. 2021. Examining the status of improved air quality in world cities due to COVID-19 led temporary reduction in anthropogenic emissions. [Environmental Research] . 196: 110927 DOI: https://doi.org/10.1016/j.envres.2021.110927
Uses Remote Sensing: yes
SEDAC Data Collection(s):
gpw-v4
(Journal Article)
export

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