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CAMPOS, Marcelo e COLLARES, Maurício e MOTA, Guilherme Oliveira. Counting orientations of random graphs with no directed k-cycles. Random Structures & Algorithms, v. 64, n. 3, p. 676-691, 2024Tradução . . Disponível em: https://doi.org/10.1002/rsa.21196. Acesso em: 08 out. 2025.
APA
Campos, M., Collares, M., & Mota, G. O. (2024). Counting orientations of random graphs with no directed k-cycles. Random Structures & Algorithms, 64( 3), 676-691. doi:10.1002/rsa.21196
NLM
Campos M, Collares M, Mota GO. Counting orientations of random graphs with no directed k-cycles [Internet]. Random Structures & Algorithms. 2024 ; 64( 3): 676-691.[citado 2025 out. 08 ] Available from: https://doi.org/10.1002/rsa.21196
Vancouver
Campos M, Collares M, Mota GO. Counting orientations of random graphs with no directed k-cycles [Internet]. Random Structures & Algorithms. 2024 ; 64( 3): 676-691.[citado 2025 out. 08 ] Available from: https://doi.org/10.1002/rsa.21196
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CORDARO, Paulo Domingos e FÜRDÖS, Stefan. The Metivier inequality and ultradifferentiable hypoellipticity. Mathematische Nachrichten, v. 297, n. 7, p. 2517-2531, 2024Tradução . . Disponível em: https://doi.org/10.1002/mana.202300147. Acesso em: 08 out. 2025.
APA
Cordaro, P. D., & Fürdös, S. (2024). The Metivier inequality and ultradifferentiable hypoellipticity. Mathematische Nachrichten, 297( 7), 2517-2531. doi:10.1002/mana.202300147
NLM
Cordaro PD, Fürdös S. The Metivier inequality and ultradifferentiable hypoellipticity [Internet]. Mathematische Nachrichten. 2024 ; 297( 7): 2517-2531.[citado 2025 out. 08 ] Available from: https://doi.org/10.1002/mana.202300147
Vancouver
Cordaro PD, Fürdös S. The Metivier inequality and ultradifferentiable hypoellipticity [Internet]. Mathematische Nachrichten. 2024 ; 297( 7): 2517-2531.[citado 2025 out. 08 ] Available from: https://doi.org/10.1002/mana.202300147
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CORDARO, Paulo Domingos e SALA, Giuseppe Della e LAMEL, Bernhard. The Borel map for compact subanalytic subsets of Cm. The Journal of Geometric Analysis, v. 34, n. artigo 172, p. 1-30, 2024Tradução . . Disponível em: https://doi.org/10.1007/s12220-024-01596-8. Acesso em: 08 out. 2025.
APA
Cordaro, P. D., Sala, G. D., & Lamel, B. (2024). The Borel map for compact subanalytic subsets of Cm. The Journal of Geometric Analysis, 34( artigo 172), 1-30. doi:10.1007/s12220-024-01596-8
NLM
Cordaro PD, Sala GD, Lamel B. The Borel map for compact subanalytic subsets of Cm [Internet]. The Journal of Geometric Analysis. 2024 ; 34( artigo 172): 1-30.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/s12220-024-01596-8
Vancouver
Cordaro PD, Sala GD, Lamel B. The Borel map for compact subanalytic subsets of Cm [Internet]. The Journal of Geometric Analysis. 2024 ; 34( artigo 172): 1-30.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/s12220-024-01596-8
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CUELLAR CARRERA, Wilson Albeiro e RANCOURT, Noé de e FERENCZI, Valentin. Local Banach-space dichotomies and ergodic spaces. Journal of the European Mathematical Society, v. 25, n. 9, p. 3537-3598, 2023Tradução . . Disponível em: https://doi.org/10.4171/JEMS/1257. Acesso em: 08 out. 2025.
APA
Cuellar Carrera, W. A., Rancourt, N. de, & Ferenczi, V. (2023). Local Banach-space dichotomies and ergodic spaces. Journal of the European Mathematical Society, 25( 9), 3537-3598. doi:10.4171/JEMS/1257
NLM
Cuellar Carrera WA, Rancourt N de, Ferenczi V. Local Banach-space dichotomies and ergodic spaces [Internet]. Journal of the European Mathematical Society. 2023 ; 25( 9): 3537-3598.[citado 2025 out. 08 ] Available from: https://doi.org/10.4171/JEMS/1257
Vancouver
Cuellar Carrera WA, Rancourt N de, Ferenczi V. Local Banach-space dichotomies and ergodic spaces [Internet]. Journal of the European Mathematical Society. 2023 ; 25( 9): 3537-3598.[citado 2025 out. 08 ] Available from: https://doi.org/10.4171/JEMS/1257
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HOLZER, Michael et al. HDL isolated by immunoaffinity, ultracentrifugation, or precipitation is compositionally and functionally distinct. Journal of Lipid Research, v. 63, n. 12, p. 1-13, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.jlr.2022.100307. Acesso em: 08 out. 2025.
APA
Holzer, M., Ljubojevic Holzer, S., Souza Junior, D. R. de, Stadler, J. T., Rani, A., Scharnahl, H., et al. (2022). HDL isolated by immunoaffinity, ultracentrifugation, or precipitation is compositionally and functionally distinct. Journal of Lipid Research, 63( 12), 1-13. doi:10.1016/j.jlr.2022.100307
NLM
Holzer M, Ljubojevic Holzer S, Souza Junior DR de, Stadler JT, Rani A, Scharnahl H, Ronsein GE, Marsche G. HDL isolated by immunoaffinity, ultracentrifugation, or precipitation is compositionally and functionally distinct [Internet]. Journal of Lipid Research. 2022 ; 63( 12): 1-13.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.jlr.2022.100307
Vancouver
Holzer M, Ljubojevic Holzer S, Souza Junior DR de, Stadler JT, Rani A, Scharnahl H, Ronsein GE, Marsche G. HDL isolated by immunoaffinity, ultracentrifugation, or precipitation is compositionally and functionally distinct [Internet]. Journal of Lipid Research. 2022 ; 63( 12): 1-13.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.jlr.2022.100307
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BENITEZ-RATHGEB, Miguel A. et al. Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part II. Renormalon norm and application in s determinations. Journal of High Energy Physics, v. 2022, n. 9, p. 223-1-223-44, 2022Tradução . . Disponível em: https://doi.org/10.1007/JHEP09(2022)223. Acesso em: 08 out. 2025.
APA
Benitez-Rathgeb, M. A., Boito, D. R., Hoang, A. H., & Jamin, M. (2022). Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part II. Renormalon norm and application in s determinations. Journal of High Energy Physics, 2022( 9), 223-1-223-44. doi:10.1007/JHEP09(2022)223
NLM
Benitez-Rathgeb MA, Boito DR, Hoang AH, Jamin M. Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part II. Renormalon norm and application in s determinations [Internet]. Journal of High Energy Physics. 2022 ; 2022( 9): 223-1-223-44.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/JHEP09(2022)223
Vancouver
Benitez-Rathgeb MA, Boito DR, Hoang AH, Jamin M. Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part II. Renormalon norm and application in s determinations [Internet]. Journal of High Energy Physics. 2022 ; 2022( 9): 223-1-223-44.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/JHEP09(2022)223
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SANTI, Natali Soler Matubaro de et al. Mimicking the halo–galaxy connection using machine learning. Monthly Notices of the Royal Astronomical Society, v. 514, n. 2, p. 2463-2478, 2022Tradução . . Disponível em: https://doi.org/10.1093/mnras/stac1469. Acesso em: 08 out. 2025.
APA
Santi, N. S. M. de, Rodrigues, N. V. N., Dorta, A. D. M., Abramo, L. R. W., Tucci, B., & Artale, M. C. (2022). Mimicking the halo–galaxy connection using machine learning. Monthly Notices of the Royal Astronomical Society, 514( 2), 2463-2478. doi:10.1093/mnras/stac1469
NLM
Santi NSM de, Rodrigues NVN, Dorta ADM, Abramo LRW, Tucci B, Artale MC. Mimicking the halo–galaxy connection using machine learning [Internet]. Monthly Notices of the Royal Astronomical Society. 2022 ; 514( 2): 2463-2478.[citado 2025 out. 08 ] Available from: https://doi.org/10.1093/mnras/stac1469
Vancouver
Santi NSM de, Rodrigues NVN, Dorta ADM, Abramo LRW, Tucci B, Artale MC. Mimicking the halo–galaxy connection using machine learning [Internet]. Monthly Notices of the Royal Astronomical Society. 2022 ; 514( 2): 2463-2478.[citado 2025 out. 08 ] Available from: https://doi.org/10.1093/mnras/stac1469
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BENITEZ-RATHGEB, Miguel A. et al. Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part I. Renormalon-free gluon condensate scheme. Journal of High Energy Physics, v. 2022, n. 7, p. 016-1-016-50, 2022Tradução . . Disponível em: https://doi.org/10.1007/JHEP07(2022)016. Acesso em: 08 out. 2025.
APA
Benitez-Rathgeb, M. A., Boito, D. R., Hoang, A. H., & Jamin, M. (2022). Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part I. Renormalon-free gluon condensate scheme. Journal of High Energy Physics, 2022( 7), 016-1-016-50. doi:10.1007/JHEP07(2022)016
NLM
Benitez-Rathgeb MA, Boito DR, Hoang AH, Jamin M. Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part I. Renormalon-free gluon condensate scheme [Internet]. Journal of High Energy Physics. 2022 ; 2022( 7): 016-1-016-50.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/JHEP07(2022)016
Vancouver
Benitez-Rathgeb MA, Boito DR, Hoang AH, Jamin M. Reconciling the contour-improved and fixed-order approaches for hadronic spectral moments: Part I. Renormalon-free gluon condensate scheme [Internet]. Journal of High Energy Physics. 2022 ; 2022( 7): 016-1-016-50.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/JHEP07(2022)016
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LODE, A. U. J. et al. Crystallization, fermionization, and cavity-induced phase transitions of Bose-Einstein condensates. High Performance Computing in Science and Engineering '19: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2019. Tradução . Cham: Springer, 2021. p. 599 . Disponível em: https://doi.org/10.1007/978-3-030-66792-4_5. Acesso em: 08 out. 2025.
APA
Lode, A. U. J., Alon, O. E., Cederbaum, L. E., Chakrabarti, B., Chatterjee, B., Chitra, R., et al. (2021). Crystallization, fermionization, and cavity-induced phase transitions of Bose-Einstein condensates. In High Performance Computing in Science and Engineering '19: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2019 (p. 599 ). Cham: Springer. doi:10.1007/978-3-030-66792-4_5
NLM
Lode AUJ, Alon OE, Cederbaum LE, Chakrabarti B, Chatterjee B, Chitra R, Gammal A, Haldar SK, Lekava ML, Lévêque C, Lin R, Molignini P, Papariello L, Tsatsos M. Crystallization, fermionization, and cavity-induced phase transitions of Bose-Einstein condensates [Internet]. In: High Performance Computing in Science and Engineering '19: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2019. Cham: Springer; 2021. p. 599 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-66792-4_5
Vancouver
Lode AUJ, Alon OE, Cederbaum LE, Chakrabarti B, Chatterjee B, Chitra R, Gammal A, Haldar SK, Lekava ML, Lévêque C, Lin R, Molignini P, Papariello L, Tsatsos M. Crystallization, fermionization, and cavity-induced phase transitions of Bose-Einstein condensates [Internet]. In: High Performance Computing in Science and Engineering '19: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2019. Cham: Springer; 2021. p. 599 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-66792-4_5
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KERN, Andrea K. et al. Re-investigating Miocene age control and paleoenvironmental reconstructions in western Amazonia (northwestern Solimões Basin, Brazil). Palaeogeography, Palaeoclimatology, Palaeoecology, v. 545, n. , p. 109652, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.palaeo.2020.109652. Acesso em: 08 out. 2025.
APA
Kern, A. K., Gross, M., Galeazzi, C. P., Pupim, F. do N., Sawakuchi, A. O., Almeida, R. P. de, et al. (2020). Re-investigating Miocene age control and paleoenvironmental reconstructions in western Amazonia (northwestern Solimões Basin, Brazil). Palaeogeography, Palaeoclimatology, Palaeoecology, 545( ), 109652. doi:10.1016/j.palaeo.2020.109652
NLM
Kern AK, Gross M, Galeazzi CP, Pupim F do N, Sawakuchi AO, Almeida RP de, Piller WE, Kuhlmann G, Basei MAS. Re-investigating Miocene age control and paleoenvironmental reconstructions in western Amazonia (northwestern Solimões Basin, Brazil) [Internet]. Palaeogeography, Palaeoclimatology, Palaeoecology. 2020 ; 545( ): 109652.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.palaeo.2020.109652
Vancouver
Kern AK, Gross M, Galeazzi CP, Pupim F do N, Sawakuchi AO, Almeida RP de, Piller WE, Kuhlmann G, Basei MAS. Re-investigating Miocene age control and paleoenvironmental reconstructions in western Amazonia (northwestern Solimões Basin, Brazil) [Internet]. Palaeogeography, Palaeoclimatology, Palaeoecology. 2020 ; 545( ): 109652.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.palaeo.2020.109652