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  • Source: Chaos. Unidade: IF

    Assunto: NEUROCIÊNCIAS

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    • ABNT

      SOUZA, Diogo Leonai M et al. Adaptive exponential integrate-and-fire model with fractal extension. Chaos, v. 34, n. 2, 2024Tradução . . Disponível em: https://doi.org/10.1063/5.0176455. Acesso em: 18 nov. 2024.
    • APA

      Souza, D. L. M., Gabrick, E. C., Protachevicz, P. R., Borges, F. da S., Trobia, J., Iarosz, K. C., et al. (2024). Adaptive exponential integrate-and-fire model with fractal extension. Chaos, 34( 2). doi:10.1063/5.0176455
    • NLM

      Souza DLM, Gabrick EC, Protachevicz PR, Borges F da S, Trobia J, Iarosz KC, Batista AM, Caldas IL, Lenzi EK. Adaptive exponential integrate-and-fire model with fractal extension [Internet]. Chaos. 2024 ; 34( 2):[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0176455
    • Vancouver

      Souza DLM, Gabrick EC, Protachevicz PR, Borges F da S, Trobia J, Iarosz KC, Batista AM, Caldas IL, Lenzi EK. Adaptive exponential integrate-and-fire model with fractal extension [Internet]. Chaos. 2024 ; 34( 2):[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0176455
  • Source: Physics of Plasmas. Unidade: IF

    Assunto: TOKAMAKS

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    • ABNT

      FRAILE, Jr. et al. Isochronous bifurcations of magnetic islands in tokamaks. Physics of Plasmas, v. 31, n. 7, 2024Tradução . . Disponível em: https://doi.org/10.1063/5.0212655. Acesso em: 18 nov. 2024.
    • APA

      Fraile, J., Roberto, M., Canal, G. P., & Caldas, I. L. (2024). Isochronous bifurcations of magnetic islands in tokamaks. Physics of Plasmas, 31( 7). doi:10.1063/5.0212655
    • NLM

      Fraile J, Roberto M, Canal GP, Caldas IL. Isochronous bifurcations of magnetic islands in tokamaks [Internet]. Physics of Plasmas. 2024 ; 31( 7):[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0212655
    • Vancouver

      Fraile J, Roberto M, Canal GP, Caldas IL. Isochronous bifurcations of magnetic islands in tokamaks [Internet]. Physics of Plasmas. 2024 ; 31( 7):[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0212655
  • Source: AIP Advances. Unidade: EEL

    Subjects: CONDUTIVIDADE ELÉTRICA, RESISTÊNCIA ELÉTRICA, ELETROSTÁTICA

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    • ABNT

      ALVES, Leandro Marcos Salgado et al. A simple and precise way to determine electrical resistivity of isotropic conductors: Simplifying the four-probe method. AIP Advances, v. 13, n. 3, p. 1-6, 2023Tradução . . Disponível em: https://doi.org/10.1063/5.0139613. Acesso em: 18 nov. 2024.
    • APA

      Alves, L. M. S., Oliveira, F. S., Romao, E. C., Luz, M. S. da, & Santos, C. A. A. (2023). A simple and precise way to determine electrical resistivity of isotropic conductors: Simplifying the four-probe method. AIP Advances, 13( 3), 1-6. doi:10.1063/5.0139613
    • NLM

      Alves LMS, Oliveira FS, Romao EC, Luz MS da, Santos CAA. A simple and precise way to determine electrical resistivity of isotropic conductors: Simplifying the four-probe method [Internet]. AIP Advances. 2023 ;13( 3): 1-6.[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0139613
    • Vancouver

      Alves LMS, Oliveira FS, Romao EC, Luz MS da, Santos CAA. A simple and precise way to determine electrical resistivity of isotropic conductors: Simplifying the four-probe method [Internet]. AIP Advances. 2023 ;13( 3): 1-6.[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0139613
  • Source: Physics of Fluids. Unidade: EESC

    Subjects: ESCOAMENTO BIFÁSICO, TRANSFERÊNCIA DE CALOR, ENGENHARIA MECÂNICA

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    • ABNT

      CZELUSNIAK, Luiz Eduardo e CABEZAS GÓMEZ, Luben e WAGNER, Alexander J. Effect of gravity on phase transition for liquid–gas simulations. Physics of Fluids, v. 35, p. 1-15, 2023Tradução . . Disponível em: https://doi.org/10.1063/5.0144470. Acesso em: 18 nov. 2024.
    • APA

      Czelusniak, L. E., Cabezas Gómez, L., & Wagner, A. J. (2023). Effect of gravity on phase transition for liquid–gas simulations. Physics of Fluids, 35, 1-15. doi:10.1063/5.0144470
    • NLM

      Czelusniak LE, Cabezas Gómez L, Wagner AJ. Effect of gravity on phase transition for liquid–gas simulations [Internet]. Physics of Fluids. 2023 ; 35 1-15.[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0144470
    • Vancouver

      Czelusniak LE, Cabezas Gómez L, Wagner AJ. Effect of gravity on phase transition for liquid–gas simulations [Internet]. Physics of Fluids. 2023 ; 35 1-15.[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0144470
  • Source: Chaos. Unidade: IF

    Assunto: TOKAMAKS

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    • ABNT

      SOUZA, Leonardo Costa de et al. Fractal and Wada escape basins in the chaotic particle drift motion in tokamaks with electrostatic fluctuations. Chaos, v. 33, n. 8, 2023Tradução . . Disponível em: https://doi.org/10.1063/5.0147679. Acesso em: 18 nov. 2024.
    • APA

      Souza, L. C. de, Mathias, A. C., Elskens, Y., Viana, R. L., & Caldas, I. L. (2023). Fractal and Wada escape basins in the chaotic particle drift motion in tokamaks with electrostatic fluctuations. Chaos, 33( 8). doi:10.1063/5.0147679
    • NLM

      Souza LC de, Mathias AC, Elskens Y, Viana RL, Caldas IL. Fractal and Wada escape basins in the chaotic particle drift motion in tokamaks with electrostatic fluctuations [Internet]. Chaos. 2023 ; 33( 8):[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0147679
    • Vancouver

      Souza LC de, Mathias AC, Elskens Y, Viana RL, Caldas IL. Fractal and Wada escape basins in the chaotic particle drift motion in tokamaks with electrostatic fluctuations [Internet]. Chaos. 2023 ; 33( 8):[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/5.0147679
  • Source: AIP Conference Proceedings. Conference titles: International Conference on Numerical Analysis and Applied Mathematics - ICNAAM. Unidade: EESC

    Subjects: ESCOAMENTO MULTIFÁSICO, FLUXO DOS LÍQUIDOS, ENGENHARIA MECÂNICA

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    • ABNT

      CASTRO, Marcelo Souza de e HERNANDEZ RODRIGUEZ, Oscar Mauricio. Interfacial-tension-force model for the wavy stratified liquid-liquid flow pattern transition: the usage of two different approaches. AIP Conference Proceedings. Melville, N.Y: AIP Publishing. Disponível em: https://doi.org/10.1063/1.4952123. Acesso em: 18 nov. 2024. , 2015
    • APA

      Castro, M. S. de, & Hernandez Rodriguez, O. M. (2015). Interfacial-tension-force model for the wavy stratified liquid-liquid flow pattern transition: the usage of two different approaches. AIP Conference Proceedings. Melville, N.Y: AIP Publishing. doi:10.1063/1.4952123
    • NLM

      Castro MS de, Hernandez Rodriguez OM. Interfacial-tension-force model for the wavy stratified liquid-liquid flow pattern transition: the usage of two different approaches [Internet]. AIP Conference Proceedings. 2015 ; 1738 1-4.[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/1.4952123
    • Vancouver

      Castro MS de, Hernandez Rodriguez OM. Interfacial-tension-force model for the wavy stratified liquid-liquid flow pattern transition: the usage of two different approaches [Internet]. AIP Conference Proceedings. 2015 ; 1738 1-4.[citado 2024 nov. 18 ] Available from: https://doi.org/10.1063/1.4952123

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