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Manoel Cardoso

Biographic Data

ID5887686
NAMEManoel Cardoso
GIVEN NAMESManoel
FAMILY NAMECardoso
SIGNATURECARDOSO M
AFFILIATIONSInstituto Nacional de Pesquisas Espaciais
ORCID0000-0003-2447-6882
VERIFIEDYes
TOTAL WORKS6
TOTAL CITATIONS6
AUTHOR COUNT6
EDITOR COUNT0
FIRST PUBLICATION YEAR1973
LATEST PUBLICATION YEAR2025
H-INDEX2
  • Climate Change in the Brazilian Cerrado: A Looming Threat to Terrestrial Biodiversity

    Open Access•Gabriel S Hofmann, Eliseu J Weber et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2025•References: 2

    Over the past 5000 years, the predictable climate seasonality of the Brazilian Cerrado has played a crucial role in shaping the life history strategies of species and the structure of ecological communities of this global biodiversity hotspot. However, this biome is becoming hotter and drier, with a notable lengthening and intensification of the dry season. Declining rainfall results from three key factors: the expansion of the South Atlantic Sub…

  • Long-term sustainability of the water-agriculture-energy nexus in Brazil’s Matopiba region: A case study using system dynamics

    Open Access•Minella Alves Martins, David Collste et al.•ARTICLE•AMBIO•2024•Cited by: 2•References: 38

  • Can Intensification of Cattle Ranching Reduce Deforestation in the Amazon? Insights From an Agent-based Social-Ecological Model

    Open Access•Finn Müller-Hansen, J Heitzig et al.•ARTICLE•Ecological Economics•2019

  • Simulation of the Holocene climate over South America and impacts on the vegetation

    Open Access•Jelena Maksic, Marília Harumi Shimizu et al.•ARTICLE•The Holocene•2018•Cited by: 4•References: 8

    We provide a comprehensive analysis of the Holocene climate and vegetation changes over South America through numerical simulations. Holocene climate for several periods (8 ka, 6 ka, 4 ka, 2 ka, and present) were simulated by an atmospheric general circulation model, forced with orbital parameters, CO 2 concentrations, and sea surface temperature (SST), while the analysis of the biome distributions was made with a potential vegetation model (PVM)…

  • Land-use and climate change risks in the Amazon and the need of a novel sustainable development paradigm

    Open Access•Carlos A Nobre, Gilvan Sampaio et al.•ARTICLE•Proceedings of the National…•2016

    Significance The Amazonian tropical forests have been disappearing at a fast rate in the last 50 y due to deforestation to open areas for agriculture, posing high risks of irreversible changes to biodiversity and ecosystems. Climate change poses additional risks to the stability of the forests. Studies suggest “tipping points” not to be transgressed: 4° C of global warming or 40% of total deforested area. The regional development debate has focus…

  • Calendar of Meetings

    Open Access•Marietta Shepard, Clara Lida et al.•ARTICLE•Latin American Research Review•1973

    Eight sessions were held

  • Simulation of the Holocene climate over South America and impacts on the vegetation

    Open Access•Jelena Maksic, Marília Harumi Shimizu et al.•ARTICLE•The Holocene•2018•Cited by: 4•References: 8

    We provide a comprehensive analysis of the Holocene climate and vegetation changes over South America through numerical simulations. Holocene climate for several periods (8 ka, 6 ka, 4 ka, 2 ka, and present) were simulated by an atmospheric general circulation model, forced with orbital parameters, CO 2 concentrations, and sea surface temperature (SST), while the analysis of the biome distributions was made with a potential vegetation model (PVM)…

  • Long-term sustainability of the water-agriculture-energy nexus in Brazil’s Matopiba region: A case study using system dynamics

    Open Access•Minella Alves Martins, David Collste et al.•ARTICLE•AMBIO•2024•Cited by: 2•References: 38

  • Calendar of Meetings

    Open Access•Marietta Shepard, Clara Lida et al.•ARTICLE•Latin American Research Review•1973

    Eight sessions were held

  • Land-use and climate change risks in the Amazon and the need of a novel sustainable development paradigm

    Open Access•Carlos A Nobre, Gilvan Sampaio et al.•ARTICLE•Proceedings of the National…•2016

    Significance The Amazonian tropical forests have been disappearing at a fast rate in the last 50 y due to deforestation to open areas for agriculture, posing high risks of irreversible changes to biodiversity and ecosystems. Climate change poses additional risks to the stability of the forests. Studies suggest “tipping points” not to be transgressed: 4° C of global warming or 40% of total deforested area. The regional development debate has focus…

  • Simulation of the Holocene climate over South America and impacts on the vegetation

    Open Access•Jelena Maksic, Marília Harumi Shimizu et al.•ARTICLE•The Holocene•2018•Cited by: 4•References: 8

    We provide a comprehensive analysis of the Holocene climate and vegetation changes over South America through numerical simulations. Holocene climate for several periods (8 ka, 6 ka, 4 ka, 2 ka, and present) were simulated by an atmospheric general circulation model, forced with orbital parameters, CO 2 concentrations, and sea surface temperature (SST), while the analysis of the biome distributions was made with a potential vegetation model (PVM)…

  • Can Intensification of Cattle Ranching Reduce Deforestation in the Amazon? Insights From an Agent-based Social-Ecological Model

    Open Access•Finn Müller-Hansen, J Heitzig et al.•ARTICLE•Ecological Economics•2019

  • Long-term sustainability of the water-agriculture-energy nexus in Brazil’s Matopiba region: A case study using system dynamics

    Open Access•Minella Alves Martins, David Collste et al.•ARTICLE•AMBIO•2024•Cited by: 2•References: 38

  • Climate Change in the Brazilian Cerrado: A Looming Threat to Terrestrial Biodiversity

    Open Access•Gabriel S Hofmann, Eliseu J Weber et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2025•References: 2

    Over the past 5000 years, the predictable climate seasonality of the Brazilian Cerrado has played a crucial role in shaping the life history strategies of species and the structure of ecological communities of this global biodiversity hotspot. However, this biome is becoming hotter and drier, with a notable lengthening and intensification of the dry season. Declining rainfall results from three key factors: the expansion of the South Atlantic Sub…

Environmental Science (4 works) · Amazon rainforest (3 works) · Business (3 works) · Climate change (3 works) · Ecology (3 works) · Economics (3 works) · Ecosystem (3 works) · Geography (3 works) · Land use (3 works) · Natural resource economics (3 works)

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