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SILVA, Sidney T. da et al. Rainfall forecast in Brazil using machine learning. Chaos: An Interdisciplinary Journal of Nonlinear Science, 2025Tradução . . Disponível em: https://doi.org/10.1063/5.0259222. Acesso em: 23 nov. 2025.
APA
Silva, S. T. da, Milani, L. C., Gabrick, E. C., Iarosz, K. C., Viana, R. L., Caldas, I. L., & Batista, A. M. (2025). Rainfall forecast in Brazil using machine learning. Chaos: An Interdisciplinary Journal of Nonlinear Science. doi:https://doi.org/10.1063/5.0259222
NLM
Silva ST da, Milani LC, Gabrick EC, Iarosz KC, Viana RL, Caldas IL, Batista AM. Rainfall forecast in Brazil using machine learning [Internet]. Chaos: An Interdisciplinary Journal of Nonlinear Science. 2025 ;[citado 2025 nov. 23 ] Available from: https://doi.org/10.1063/5.0259222
Vancouver
Silva ST da, Milani LC, Gabrick EC, Iarosz KC, Viana RL, Caldas IL, Batista AM. Rainfall forecast in Brazil using machine learning [Internet]. Chaos: An Interdisciplinary Journal of Nonlinear Science. 2025 ;[citado 2025 nov. 23 ] Available from: https://doi.org/10.1063/5.0259222
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RAMOS, Lucas Cardoso et al. Characterization of the Elemental Composition of Aerosols Emitted in the Dry Season of the Pantanal Wetland, Brazil. Atmosphere, p. 1361, 2024Tradução . . Disponível em: https://doi.org/10.3390/atmos15111361. Acesso em: 23 nov. 2025.
APA
Ramos, L. C., Brunelli, T. C., Vicentin, F. C., Curado, L. F. A., Lima, A. M., Morais, F. G., et al. (2024). Characterization of the Elemental Composition of Aerosols Emitted in the Dry Season of the Pantanal Wetland, Brazil. Atmosphere, 1361. doi:10.3390/atmos15111361
NLM
Ramos LC, Brunelli TC, Vicentin FC, Curado LFA, Lima AM, Morais FG, Palácios R da S, Oliveira NN de, Marques JB. Characterization of the Elemental Composition of Aerosols Emitted in the Dry Season of the Pantanal Wetland, Brazil [Internet]. Atmosphere. 2024 ; 1361.[citado 2025 nov. 23 ] Available from: https://doi.org/10.3390/atmos15111361
Vancouver
Ramos LC, Brunelli TC, Vicentin FC, Curado LFA, Lima AM, Morais FG, Palácios R da S, Oliveira NN de, Marques JB. Characterization of the Elemental Composition of Aerosols Emitted in the Dry Season of the Pantanal Wetland, Brazil [Internet]. Atmosphere. 2024 ; 1361.[citado 2025 nov. 23 ] Available from: https://doi.org/10.3390/atmos15111361
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MACHADO, Luiz A. T. et al. How rainfall events modify trace gas mixing ratios in central Amazonia. Atmospheric Chemistry and Physics, v. 24, n. 15 ACP 24, p. 8893-89108893–8910, 2024Tradução . . Disponível em: https://doi.org/10.5194/acp-24-8893-2024. Acesso em: 23 nov. 2025.
APA
Machado, L. A. T., Araújo, A. C. de, Artaxo Netto, P. E., Ferreira, R. R., Franco, M. A. de M., Dias-Júnior, C. Q., et al. (2024). How rainfall events modify trace gas mixing ratios in central Amazonia. Atmospheric Chemistry and Physics, 24( 15 ACP 24), 8893-89108893–8910. doi:10.5194/acp-24-8893-2024
NLM
Machado LAT, Araújo AC de, Artaxo Netto PE, Ferreira RR, Franco MA de M, Dias-Júnior CQ, Haytzmann GG, Quesada CA. How rainfall events modify trace gas mixing ratios in central Amazonia [Internet]. Atmospheric Chemistry and Physics. 2024 ; 24( 15 ACP 24): 8893-89108893–8910.[citado 2025 nov. 23 ] Available from: https://doi.org/10.5194/acp-24-8893-2024
Vancouver
Machado LAT, Araújo AC de, Artaxo Netto PE, Ferreira RR, Franco MA de M, Dias-Júnior CQ, Haytzmann GG, Quesada CA. How rainfall events modify trace gas mixing ratios in central Amazonia [Internet]. Atmospheric Chemistry and Physics. 2024 ; 24( 15 ACP 24): 8893-89108893–8910.[citado 2025 nov. 23 ] Available from: https://doi.org/10.5194/acp-24-8893-2024
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DE LA CRUZ, Alex Ruben Huaman et al. Chemical characterization and source apportionment of rainwater in Cuieiras Biological Reserve, central Amazon, Brazil. Acta Amazônica, n. 3, p. e54es23131/1- e54es23131/10, 2024Tradução . . Disponível em: https://www.scielo.br/j/aa/a/SFfXdHvgNg3ZgcgXrGkCRtt/?format=html. Acesso em: 23 nov. 2025.
APA
De La Cruz, A. R. H., Pedreira, M. F. de S., Godoy, J. M., Artaxo Netto, P. E., & Gioda, A. (2024). Chemical characterization and source apportionment of rainwater in Cuieiras Biological Reserve, central Amazon, Brazil. Acta Amazônica, ( 3), e54es23131/1- e54es23131/10. doi:10.1590/1809-4392202301313
NLM
De La Cruz ARH, Pedreira MF de S, Godoy JM, Artaxo Netto PE, Gioda A. Chemical characterization and source apportionment of rainwater in Cuieiras Biological Reserve, central Amazon, Brazil [Internet]. Acta Amazônica. 2024 ;( 3): e54es23131/1- e54es23131/10.[citado 2025 nov. 23 ] Available from: https://www.scielo.br/j/aa/a/SFfXdHvgNg3ZgcgXrGkCRtt/?format=html
Vancouver
De La Cruz ARH, Pedreira MF de S, Godoy JM, Artaxo Netto PE, Gioda A. Chemical characterization and source apportionment of rainwater in Cuieiras Biological Reserve, central Amazon, Brazil [Internet]. Acta Amazônica. 2024 ;( 3): e54es23131/1- e54es23131/10.[citado 2025 nov. 23 ] Available from: https://www.scielo.br/j/aa/a/SFfXdHvgNg3ZgcgXrGkCRtt/?format=html
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GIODA, Adriana e MORAIS, Fernando Gonçalves e ARTAXO NETTO, Paulo Eduardo. Assessing over decadal biomass burning influence on particulate matter composition in subequatorial Amazon: literature review, remote sensing, chemical speciation and machine learning application. Anais da Academia Brasileira de Ciencias, v. 95, n. 2, 2023Tradução . . Disponível em: https://www.scielo.br/j/aabc/a/CFymd8KRvPpDXRvRcHVDzXD/?lang=en#. Acesso em: 23 nov. 2025.
APA
Gioda, A., Morais, F. G., & Artaxo Netto, P. E. (2023). Assessing over decadal biomass burning influence on particulate matter composition in subequatorial Amazon: literature review, remote sensing, chemical speciation and machine learning application. Anais da Academia Brasileira de Ciencias, 95( 2). doi:10.1590/0001-3765202320220932
NLM
Gioda A, Morais FG, Artaxo Netto PE. Assessing over decadal biomass burning influence on particulate matter composition in subequatorial Amazon: literature review, remote sensing, chemical speciation and machine learning application [Internet]. Anais da Academia Brasileira de Ciencias. 2023 ; 95( 2):[citado 2025 nov. 23 ] Available from: https://www.scielo.br/j/aabc/a/CFymd8KRvPpDXRvRcHVDzXD/?lang=en#
Vancouver
Gioda A, Morais FG, Artaxo Netto PE. Assessing over decadal biomass burning influence on particulate matter composition in subequatorial Amazon: literature review, remote sensing, chemical speciation and machine learning application [Internet]. Anais da Academia Brasileira de Ciencias. 2023 ; 95( 2):[citado 2025 nov. 23 ] Available from: https://www.scielo.br/j/aabc/a/CFymd8KRvPpDXRvRcHVDzXD/?lang=en#
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ZAVERI, Rahul et al. Rapid growth of anthropogenic organic nanoparticles greatly alters cloud life cycle in the Amazon rainforest. Science Advances, n. 2, p. 17 , 2022Tradução . . Disponível em: https://doi.org/10.1126/sciadv.abj0329. Acesso em: 23 nov. 2025.
APA
Zaveri, R., Wang, J., Fan, J., Zhang, Y., Shilling, J., Zelenyuk, A., et al. (2022). Rapid growth of anthropogenic organic nanoparticles greatly alters cloud life cycle in the Amazon rainforest. Science Advances, ( 2), 17 . doi:10.1126/sciadv.abj0329
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Zaveri R, Wang J, Fan J, Zhang Y, Shilling J, Zelenyuk A, Mei F, Newsom R, Pekour M, Tomlinson J, Comstock JM, Shrivastava M, Fortner E, Machado LAT, Artaxo Netto PE, Martin ST. Rapid growth of anthropogenic organic nanoparticles greatly alters cloud life cycle in the Amazon rainforest [Internet]. Science Advances. 2022 ;( 2): 17 .[citado 2025 nov. 23 ] Available from: https://doi.org/10.1126/sciadv.abj0329
Vancouver
Zaveri R, Wang J, Fan J, Zhang Y, Shilling J, Zelenyuk A, Mei F, Newsom R, Pekour M, Tomlinson J, Comstock JM, Shrivastava M, Fortner E, Machado LAT, Artaxo Netto PE, Martin ST. Rapid growth of anthropogenic organic nanoparticles greatly alters cloud life cycle in the Amazon rainforest [Internet]. Science Advances. 2022 ;( 2): 17 .[citado 2025 nov. 23 ] Available from: https://doi.org/10.1126/sciadv.abj0329
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PONCZEK, Milena et al. Linking the chemical composition and optical properties of biomass burning aerosols in Amazonia. Environmental Science: Atmospheres, v. 2, p. 252-269, 2022Tradução . . Disponível em: https://doi.org/10.1039/D1EA00055A. Acesso em: 23 nov. 2025.
APA
Ponczek, M., Franco, M. A. de M., Carbone, S., Rizzo, L. V., Santos Junior, D. A. M. dos, Morais, F. G., et al. (2022). Linking the chemical composition and optical properties of biomass burning aerosols in Amazonia. Environmental Science: Atmospheres, 2, 252-269. doi:10.1039/D1EA00055A
NLM
Ponczek M, Franco MA de M, Carbone S, Rizzo LV, Santos Junior DAM dos, Morais FG, Duarte A, Barbosa H de MJ, Artaxo Netto PE. Linking the chemical composition and optical properties of biomass burning aerosols in Amazonia [Internet]. Environmental Science: Atmospheres. 2022 ; 2 252-269.[citado 2025 nov. 23 ] Available from: https://doi.org/10.1039/D1EA00055A
Vancouver
Ponczek M, Franco MA de M, Carbone S, Rizzo LV, Santos Junior DAM dos, Morais FG, Duarte A, Barbosa H de MJ, Artaxo Netto PE. Linking the chemical composition and optical properties of biomass burning aerosols in Amazonia [Internet]. Environmental Science: Atmospheres. 2022 ; 2 252-269.[citado 2025 nov. 23 ] Available from: https://doi.org/10.1039/D1EA00055A
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EVANGELISTA, Heitor et al. The 1991 explosive Hudson volcanic eruption as a geochronological marker for the Northern Antarctic Peninsula. Anais da Academia Brasileira de Ciências, v. 94, p. 15 , 2022Tradução . . Disponível em: https://doi.org/10.1590/0001-3765202220210810. Acesso em: 23 nov. 2025.
APA
Evangelista, H., Castagna, A., Correia, A. L., Potocki, M., Aquino, F. E., Alencar, A., et al. (2022). The 1991 explosive Hudson volcanic eruption as a geochronological marker for the Northern Antarctic Peninsula. Anais da Academia Brasileira de Ciências, 94, 15 . doi:10.1590/0001-3765202220210810
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Evangelista H, Castagna A, Correia AL, Potocki M, Aquino FE, Alencar A, Mayewski P, Kurbatov A, Jaña R, Nogueira J, Licínio MV, Santos E, Simoes JC. The 1991 explosive Hudson volcanic eruption as a geochronological marker for the Northern Antarctic Peninsula [Internet]. Anais da Academia Brasileira de Ciências. 2022 ; 94 15 .[citado 2025 nov. 23 ] Available from: https://doi.org/10.1590/0001-3765202220210810
Vancouver
Evangelista H, Castagna A, Correia AL, Potocki M, Aquino FE, Alencar A, Mayewski P, Kurbatov A, Jaña R, Nogueira J, Licínio MV, Santos E, Simoes JC. The 1991 explosive Hudson volcanic eruption as a geochronological marker for the Northern Antarctic Peninsula [Internet]. Anais da Academia Brasileira de Ciências. 2022 ; 94 15 .[citado 2025 nov. 23 ] Available from: https://doi.org/10.1590/0001-3765202220210810
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FRANCO, Marco Aurélio de Menezes et al. Occurrence and growth of sub-50 nm aerosol particles in the Amazonian boundary layer. Atmospheric Chemistry and Physics, v. 22, n. 5, p. 3469-3492, 2022Tradução . . Disponível em: https://doi.org/10.5194/acp-22-3469-2022. Acesso em: 23 nov. 2025.
APA
Franco, M. A. de M., Ditas, F., Kremper, L. A., Machado, L. A. T., Andreae, M., Araujo, A., et al. (2022). Occurrence and growth of sub-50 nm aerosol particles in the Amazonian boundary layer. Atmospheric Chemistry and Physics, 22( 5), 3469-3492. doi:10.5194/acp-22-3469-2022
NLM
Franco MA de M, Ditas F, Kremper LA, Machado LAT, Andreae M, Araujo A, Barbosa H de MJ, Brito JF de, Carbone S, Holanda BA, Morais FG, Nascimento J, Pöhlker ML, Rizzo LV, Sá M, Saturno J, Walter D, Wolff S, Pöschl U, Artaxo Netto PE, Pöhlker C. Occurrence and growth of sub-50 nm aerosol particles in the Amazonian boundary layer [Internet]. Atmospheric Chemistry and Physics. 2022 ; 22( 5): 3469-3492.[citado 2025 nov. 23 ] Available from: https://doi.org/10.5194/acp-22-3469-2022
Vancouver
Franco MA de M, Ditas F, Kremper LA, Machado LAT, Andreae M, Araujo A, Barbosa H de MJ, Brito JF de, Carbone S, Holanda BA, Morais FG, Nascimento J, Pöhlker ML, Rizzo LV, Sá M, Saturno J, Walter D, Wolff S, Pöschl U, Artaxo Netto PE, Pöhlker C. Occurrence and growth of sub-50 nm aerosol particles in the Amazonian boundary layer [Internet]. Atmospheric Chemistry and Physics. 2022 ; 22( 5): 3469-3492.[citado 2025 nov. 23 ] Available from: https://doi.org/10.5194/acp-22-3469-2022
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PALÁCIOS, Rafael da Silva et al. Long-term measurements of aerosol optical properties and radiative forcing (2011-2017) over Central Amazonia. Atmósfera, v. 35, n. 1, 2022Tradução . . Disponível em: https://doi.org/10.20937/ATM.52892. Acesso em: 23 nov. 2025.
APA
Palácios, R. da S., Artaxo Netto, P. E., Cirino, G. G., Nakale, V., Morais, F. G., Rothmund, L. D., et al. (2022). Long-term measurements of aerosol optical properties and radiative forcing (2011-2017) over Central Amazonia. Atmósfera, 35( 1). doi:10.20937/ATM.52892
NLM
Palácios R da S, Artaxo Netto PE, Cirino GG, Nakale V, Morais FG, Rothmund LD, Biudes MS, Machado NG, Curado LFA, Marques JB, Nogueira J de S. Long-term measurements of aerosol optical properties and radiative forcing (2011-2017) over Central Amazonia [Internet]. Atmósfera. 2022 ; 35( 1):[citado 2025 nov. 23 ] Available from: https://doi.org/10.20937/ATM.52892
Vancouver
Palácios R da S, Artaxo Netto PE, Cirino GG, Nakale V, Morais FG, Rothmund LD, Biudes MS, Machado NG, Curado LFA, Marques JB, Nogueira J de S. Long-term measurements of aerosol optical properties and radiative forcing (2011-2017) over Central Amazonia [Internet]. Atmósfera. 2022 ; 35( 1):[citado 2025 nov. 23 ] Available from: https://doi.org/10.20937/ATM.52892
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WUNDERLING, Nico et al. Recurrent droughts increase risk of cascading tipping events by outpacing adaptive capacities in the Amazon rainforest. Proceedings of the National Academy of Sciences (PNAS), v. 119, n. 32, 2022Tradução . . Disponível em: https://doi.org/10.1073/pnas.2120777119. Acesso em: 23 nov. 2025.
APA
Wunderling, N., Staal, A., Sakschewski, B., Hirota, M., Tuinenburg, O. A., Donges, J., et al. (2022). Recurrent droughts increase risk of cascading tipping events by outpacing adaptive capacities in the Amazon rainforest. Proceedings of the National Academy of Sciences (PNAS), 119( 32). doi:10.1073/pnas.2120777119
NLM
Wunderling N, Staal A, Sakschewski B, Hirota M, Tuinenburg OA, Donges J, Barbosa H de MJ, Winkelmann R. Recurrent droughts increase risk of cascading tipping events by outpacing adaptive capacities in the Amazon rainforest [Internet]. Proceedings of the National Academy of Sciences (PNAS). 2022 ; 119( 32):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1073/pnas.2120777119
Vancouver
Wunderling N, Staal A, Sakschewski B, Hirota M, Tuinenburg OA, Donges J, Barbosa H de MJ, Winkelmann R. Recurrent droughts increase risk of cascading tipping events by outpacing adaptive capacities in the Amazon rainforest [Internet]. Proceedings of the National Academy of Sciences (PNAS). 2022 ; 119( 32):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1073/pnas.2120777119
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PALÁCIOS, Rafael et al. Optical properties and spectral dependence of aerosol light absorption over the Brazilian Pantanal. Atmospheric Pollution Research, v. 13, n. 5, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.apr.2022.101413. Acesso em: 23 nov. 2025.
APA
Palácios, R., Romera, K., Rizzo, L. V., Cirino, G., Adams, D., Imbiriba, B., et al. (2022). Optical properties and spectral dependence of aerosol light absorption over the Brazilian Pantanal. Atmospheric Pollution Research, 13( 5). doi:10.1016/j.apr.2022.101413
NLM
Palácios R, Romera K, Rizzo LV, Cirino G, Adams D, Imbiriba B, Nassarden D, Rothmund L, Siqueira A, Basso J, Rodrigues T, Curado L, Weber A, Nogueira J, Morais FG, Artaxo Netto PE. Optical properties and spectral dependence of aerosol light absorption over the Brazilian Pantanal [Internet]. Atmospheric Pollution Research. 2022 ; 13( 5):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1016/j.apr.2022.101413
Vancouver
Palácios R, Romera K, Rizzo LV, Cirino G, Adams D, Imbiriba B, Nassarden D, Rothmund L, Siqueira A, Basso J, Rodrigues T, Curado L, Weber A, Nogueira J, Morais FG, Artaxo Netto PE. Optical properties and spectral dependence of aerosol light absorption over the Brazilian Pantanal [Internet]. Atmospheric Pollution Research. 2022 ; 13( 5):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1016/j.apr.2022.101413
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GOMES, Helber et al. WRF Sensitivity for Seasonal Climate Simulations of Precipitation Fields on the CORDEX South America Domain. Atmosphere, v. 13, n. 1, 2022Tradução . . Disponível em: https://doi.org/10.3390/atmos13010107. Acesso em: 23 nov. 2025.
APA
Gomes, H., Silva, M. C. L. da, Barbosa, H. de M. J., Ambrizzi, T., Baltaci, H., Gomes, H., et al. (2022). WRF Sensitivity for Seasonal Climate Simulations of Precipitation Fields on the CORDEX South America Domain. Atmosphere, 13( 1). doi:10.3390/atmos13010107
NLM
Gomes H, Silva MCL da, Barbosa H de MJ, Ambrizzi T, Baltaci H, Gomes H, Silva FD dos S, Costa R, Figueroa SN, Herdies D, Pauliquevis T. WRF Sensitivity for Seasonal Climate Simulations of Precipitation Fields on the CORDEX South America Domain [Internet]. Atmosphere. 2022 ; 13( 1):[citado 2025 nov. 23 ] Available from: https://doi.org/10.3390/atmos13010107
Vancouver
Gomes H, Silva MCL da, Barbosa H de MJ, Ambrizzi T, Baltaci H, Gomes H, Silva FD dos S, Costa R, Figueroa SN, Herdies D, Pauliquevis T. WRF Sensitivity for Seasonal Climate Simulations of Precipitation Fields on the CORDEX South America Domain [Internet]. Atmosphere. 2022 ; 13( 1):[citado 2025 nov. 23 ] Available from: https://doi.org/10.3390/atmos13010107
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DRÜKE, Markus et al. Climate-induced hysteresis of the tropical forest in a fire-enabled Earth system model. European Physical Journal - Special Topics (EPJ ST), 2021Tradução . . Disponível em: https://doi.org/10.1140/epjs/s11734-021-00157-2. Acesso em: 23 nov. 2025.
APA
Drüke, M., Bloh, W. von, Sakschewski, B., Wunderling, N., Petri, S., Cardoso, M., et al. (2021). Climate-induced hysteresis of the tropical forest in a fire-enabled Earth system model. European Physical Journal - Special Topics (EPJ ST). doi:10.1140/epjs/s11734-021-00157-2
NLM
Drüke M, Bloh W von, Sakschewski B, Wunderling N, Petri S, Cardoso M, Barbosa H de MJ, Thonicke K. Climate-induced hysteresis of the tropical forest in a fire-enabled Earth system model [Internet]. European Physical Journal - Special Topics (EPJ ST). 2021 ;[citado 2025 nov. 23 ] Available from: https://doi.org/10.1140/epjs/s11734-021-00157-2
Vancouver
Drüke M, Bloh W von, Sakschewski B, Wunderling N, Petri S, Cardoso M, Barbosa H de MJ, Thonicke K. Climate-induced hysteresis of the tropical forest in a fire-enabled Earth system model [Internet]. European Physical Journal - Special Topics (EPJ ST). 2021 ;[citado 2025 nov. 23 ] Available from: https://doi.org/10.1140/epjs/s11734-021-00157-2
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CAMARINHA-NETO, Guilherme F. e ARTAXO NETTO, Paulo Eduardo. Friagem Event in Central Amazon and its Influence on Micrometeorological Variables and Atmospheric Chemistry. Atmospheric Chemistry and Physics, v. 21, n. 1, p. 339–356, 2021Tradução . . Disponível em: https://doi.org/10.5194/acp-21-339-2021. Acesso em: 23 nov. 2025.
APA
Camarinha-Neto, G. F., & Artaxo Netto, P. E. (2021). Friagem Event in Central Amazon and its Influence on Micrometeorological Variables and Atmospheric Chemistry. Atmospheric Chemistry and Physics, 21( 1), 339–356. doi:10.5194/acp-21-339-2021
NLM
Camarinha-Neto GF, Artaxo Netto PE. Friagem Event in Central Amazon and its Influence on Micrometeorological Variables and Atmospheric Chemistry [Internet]. Atmospheric Chemistry and Physics. 2021 ; 21( 1): 339–356.[citado 2025 nov. 23 ] Available from: https://doi.org/10.5194/acp-21-339-2021
Vancouver
Camarinha-Neto GF, Artaxo Netto PE. Friagem Event in Central Amazon and its Influence on Micrometeorological Variables and Atmospheric Chemistry [Internet]. Atmospheric Chemistry and Physics. 2021 ; 21( 1): 339–356.[citado 2025 nov. 23 ] Available from: https://doi.org/10.5194/acp-21-339-2021
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HERNÁNDEZ PARDO, L. et al. Observed and Simulated Variability of Droplet Spectral Dispersion in Convective Clouds Over the Amazon. Journal of Geophysical Research: Atmospheres, v. 126, n. 20, 2021Tradução . . Disponível em: https://doi.org/10.1029/2021JD035076. Acesso em: 23 nov. 2025.
APA
Hernández Pardo, L., Machado, L. A. T., Morrison, H., Cecchini, M., Andreae, M., Pöhlker, C., et al. (2021). Observed and Simulated Variability of Droplet Spectral Dispersion in Convective Clouds Over the Amazon. Journal of Geophysical Research: Atmospheres, 126( 20). doi:10.1029/2021JD035076
NLM
Hernández Pardo L, Machado LAT, Morrison H, Cecchini M, Andreae M, Pöhlker C, Ulrich Pöschl, Rosenfeld D, Vendrasco EP, Voigt C, Wendisch M, Pöhlker M. Observed and Simulated Variability of Droplet Spectral Dispersion in Convective Clouds Over the Amazon [Internet]. Journal of Geophysical Research: Atmospheres. 2021 ; 126( 20):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1029/2021JD035076
Vancouver
Hernández Pardo L, Machado LAT, Morrison H, Cecchini M, Andreae M, Pöhlker C, Ulrich Pöschl, Rosenfeld D, Vendrasco EP, Voigt C, Wendisch M, Pöhlker M. Observed and Simulated Variability of Droplet Spectral Dispersion in Convective Clouds Over the Amazon [Internet]. Journal of Geophysical Research: Atmospheres. 2021 ; 126( 20):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1029/2021JD035076
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CORREIA, Alexandre Lima et al. Preconditioning, aerosols, and radiation control the temperature of glaciation in Amazonian clouds. Communications Earth & Environment, v. 2, n. 1, 2021Tradução . . Disponível em: https://doi.org/10.1038/s43247-021-00250-3. Acesso em: 23 nov. 2025.
APA
Correia, A. L., Sena, E. T., Dias, M. A. F. S., & Koren, I. (2021). Preconditioning, aerosols, and radiation control the temperature of glaciation in Amazonian clouds. Communications Earth & Environment, 2( 1). doi:10.1038/s43247-021-00250-3
NLM
Correia AL, Sena ET, Dias MAFS, Koren I. Preconditioning, aerosols, and radiation control the temperature of glaciation in Amazonian clouds [Internet]. Communications Earth & Environment. 2021 ; 2( 1):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1038/s43247-021-00250-3
Vancouver
Correia AL, Sena ET, Dias MAFS, Koren I. Preconditioning, aerosols, and radiation control the temperature of glaciation in Amazonian clouds [Internet]. Communications Earth & Environment. 2021 ; 2( 1):[citado 2025 nov. 23 ] Available from: https://doi.org/10.1038/s43247-021-00250-3
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FREITAS, Ana Carolina Vasques e BELARDI, Rose-Marie e BARBOSA, Henrique de Melo Jorge. Characterization of particulate matter in iron ore mining region of Itabira, Minas Gerais, Brazil. Atmósfera. Cidade do México: Instituto de Física, Universidade de São Paulo. Disponível em: https://doi.org/10.20937/ATM.52987. Acesso em: 23 nov. 2025. , 2021
APA
Freitas, A. C. V., Belardi, R. -M., & Barbosa, H. de M. J. (2021). Characterization of particulate matter in iron ore mining region of Itabira, Minas Gerais, Brazil. Atmósfera. Cidade do México: Instituto de Física, Universidade de São Paulo. doi:10.20937/ATM.52987
NLM
Freitas ACV, Belardi R-M, Barbosa H de MJ. Characterization of particulate matter in iron ore mining region of Itabira, Minas Gerais, Brazil [Internet]. Atmósfera. 2021 ;42 .[citado 2025 nov. 23 ] Available from: https://doi.org/10.20937/ATM.52987
Vancouver
Freitas ACV, Belardi R-M, Barbosa H de MJ. Characterization of particulate matter in iron ore mining region of Itabira, Minas Gerais, Brazil [Internet]. Atmósfera. 2021 ;42 .[citado 2025 nov. 23 ] Available from: https://doi.org/10.20937/ATM.52987
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ALVES, Nilmara de Oliveira et al. Inflammation response, oxidative stress and DNA damage caused by urban air pollution exposure increase in the lack of DNA repair XPC protein. Environment International, v. 145, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.envint.2020.106150. Acesso em: 23 nov. 2025.
APA
Alves, N. de O., Pereira, G. M., Domenico, M. D., Costanzo, G., Benevenuto, S., Fonoff, A. M. de O., et al. (2020). Inflammation response, oxidative stress and DNA damage caused by urban air pollution exposure increase in the lack of DNA repair XPC protein. Environment International, 145. doi:10.1016/j.envint.2020.106150
NLM
Alves N de O, Pereira GM, Domenico MD, Costanzo G, Benevenuto S, Fonoff AM de O, Costa N de SX, Ribeiro Júnior G, Kajitani GS, Moreno NC, Fotoran W, Torres JI, Andrade JB de, Veras M, Artaxo Netto PE, Menck CFM, Vasconcellos P de C, Saldiva PHN. Inflammation response, oxidative stress and DNA damage caused by urban air pollution exposure increase in the lack of DNA repair XPC protein [Internet]. Environment International. 2020 ; 145[citado 2025 nov. 23 ] Available from: https://doi.org/10.1016/j.envint.2020.106150
Vancouver
Alves N de O, Pereira GM, Domenico MD, Costanzo G, Benevenuto S, Fonoff AM de O, Costa N de SX, Ribeiro Júnior G, Kajitani GS, Moreno NC, Fotoran W, Torres JI, Andrade JB de, Veras M, Artaxo Netto PE, Menck CFM, Vasconcellos P de C, Saldiva PHN. Inflammation response, oxidative stress and DNA damage caused by urban air pollution exposure increase in the lack of DNA repair XPC protein [Internet]. Environment International. 2020 ; 145[citado 2025 nov. 23 ] Available from: https://doi.org/10.1016/j.envint.2020.106150
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VILLAS-BOAS, Paulino Ribeiro et al. Applications of laser‐induced breakdown spectroscopy for soil characterization, part II: Review of elemental analysis and soil classification. European Journal of Soil Science (EJSS), v. 71, n. 5, p. 805-818, 2020Tradução . . Disponível em: https://doi.org/10.1111/ejss.12889. Acesso em: 23 nov. 2025.
APA
Villas-Boas, P. R., Franco, M. A. de M., Martin‐Neto, L., Gollany, H. T., & Milori, D. M. B. P. (2020). Applications of laser‐induced breakdown spectroscopy for soil characterization, part II: Review of elemental analysis and soil classification. European Journal of Soil Science (EJSS), 71( 5), 805-818. doi:10.1111/ejss.12889
NLM
Villas-Boas PR, Franco MA de M, Martin‐Neto L, Gollany HT, Milori DMBP. Applications of laser‐induced breakdown spectroscopy for soil characterization, part II: Review of elemental analysis and soil classification [Internet]. European Journal of Soil Science (EJSS). 2020 ; 71( 5): 805-818.[citado 2025 nov. 23 ] Available from: https://doi.org/10.1111/ejss.12889
Vancouver
Villas-Boas PR, Franco MA de M, Martin‐Neto L, Gollany HT, Milori DMBP. Applications of laser‐induced breakdown spectroscopy for soil characterization, part II: Review of elemental analysis and soil classification [Internet]. European Journal of Soil Science (EJSS). 2020 ; 71( 5): 805-818.[citado 2025 nov. 23 ] Available from: https://doi.org/10.1111/ejss.12889