Filtros : "TERMODINÂMICA" "IAG-AGA" Limpar

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  • Source: Physical Review E. Unidades: IF, IAG

    Assunto: TERMODINÂMICA

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      LIMA, Jose Ademir Sales de e DEPPMAN, Airton. Tsallis meets Boltzmann:q-index for a finite ideal gas and its thermodynamic limit. Physical Review E, v. 101, 2020Tradução . . Disponível em: https://doi.org/10.1103/PhysRevE.101.040102. Acesso em: 14 out. 2024.
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      Lima, J. A. S. de, & Deppman, A. (2020). Tsallis meets Boltzmann:q-index for a finite ideal gas and its thermodynamic limit. Physical Review E, 101. doi:10.1103/PhysRevE.101.040102
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      Lima JAS de, Deppman A. Tsallis meets Boltzmann:q-index for a finite ideal gas and its thermodynamic limit [Internet]. Physical Review E. 2020 ; 101[citado 2024 out. 14 ] Available from: https://doi.org/10.1103/PhysRevE.101.040102
    • Vancouver

      Lima JAS de, Deppman A. Tsallis meets Boltzmann:q-index for a finite ideal gas and its thermodynamic limit [Internet]. Physical Review E. 2020 ; 101[citado 2024 out. 14 ] Available from: https://doi.org/10.1103/PhysRevE.101.040102
  • Source: Annals of Physics. Unidade: IAG

    Subjects: RELATIVIDADE (FÍSICA), TERMODINÂMICA

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      SANTOS, A. P et al. Nonextensive Kinetic Theory and H-Theorem in General Relativity. Annals of Physics, p. 158-164, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.aop.2017.08.027. Acesso em: 14 out. 2024.
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      Santos, A. P., Silvia, R., Alcaniz, J. S., & Lima, J. A. S. de. (2017). Nonextensive Kinetic Theory and H-Theorem in General Relativity. Annals of Physics, 158-164. doi:10.1016/j.aop.2017.08.027
    • NLM

      Santos AP, Silvia R, Alcaniz JS, Lima JAS de. Nonextensive Kinetic Theory and H-Theorem in General Relativity [Internet]. Annals of Physics. 2017 ; 158-164.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.aop.2017.08.027
    • Vancouver

      Santos AP, Silvia R, Alcaniz JS, Lima JAS de. Nonextensive Kinetic Theory and H-Theorem in General Relativity [Internet]. Annals of Physics. 2017 ; 158-164.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.aop.2017.08.027
  • Source: European Physical Journal C. Unidade: IAG

    Assunto: TERMODINÂMICA

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      LIMA, José Ademir Sales de e BASILAKOS, Spyros e SOLÀ, Joan. Thermodynamical aspects of running vacuum models. European Physical Journal C, v. 76, p. 228, 2016Tradução . . Disponível em: http://arxiv.org/pdf/1509.00163.pdf. Acesso em: 14 out. 2024.
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      Lima, J. A. S. de, Basilakos, S., & Solà, J. (2016). Thermodynamical aspects of running vacuum models. European Physical Journal C, 76, 228. doi:10.1140/epjc/s10052-016-4060-6
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      Lima JAS de, Basilakos S, Solà J. Thermodynamical aspects of running vacuum models [Internet]. European Physical Journal C. 2016 ; 76 228.[citado 2024 out. 14 ] Available from: http://arxiv.org/pdf/1509.00163.pdf
    • Vancouver

      Lima JAS de, Basilakos S, Solà J. Thermodynamical aspects of running vacuum models [Internet]. European Physical Journal C. 2016 ; 76 228.[citado 2024 out. 14 ] Available from: http://arxiv.org/pdf/1509.00163.pdf
  • Source: Physics Letters B. Unidade: IAG

    Subjects: COSMOLOGIA, GRAVIDADE, TERMODINÂMICA

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      BARANOV, I e LIMA, José Ademir Sales de. Gravitationally induced particle production and its impact on the WIMP abundance. Physics Letters B, v. 751, p. 338-342, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.physletb.2015.10.054. Acesso em: 14 out. 2024.
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      Baranov, I., & Lima, J. A. S. de. (2015). Gravitationally induced particle production and its impact on the WIMP abundance. Physics Letters B, 751, 338-342. doi:10.1016/j.physletb.2015.10.054
    • NLM

      Baranov I, Lima JAS de. Gravitationally induced particle production and its impact on the WIMP abundance [Internet]. Physics Letters B. 2015 ; 751 338-342.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.physletb.2015.10.054
    • Vancouver

      Baranov I, Lima JAS de. Gravitationally induced particle production and its impact on the WIMP abundance [Internet]. Physics Letters B. 2015 ; 751 338-342.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.physletb.2015.10.054
  • Source: Physical Review D. Unidade: IAG

    Subjects: GRAVIDADE, TERMODINÂMICA, TEORIA CINÉTICA

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      LIMA, José Ademir Sales de e BARANOV, I. Gravitationally induced particle production: thermodynamics and kinetic theory. Physical Review D, v. 90, p. 043515/1-043515/10, 2014Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.90.043515. Acesso em: 14 out. 2024.
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      Lima, J. A. S. de, & Baranov, I. (2014). Gravitationally induced particle production: thermodynamics and kinetic theory. Physical Review D, 90, 043515/1-043515/10. doi:10.1103/PhysRevD.90.043515
    • NLM

      Lima JAS de, Baranov I. Gravitationally induced particle production: thermodynamics and kinetic theory [Internet]. Physical Review D. 2014 ; 90 043515/1-043515/10.[citado 2024 out. 14 ] Available from: https://doi.org/10.1103/PhysRevD.90.043515
    • Vancouver

      Lima JAS de, Baranov I. Gravitationally induced particle production: thermodynamics and kinetic theory [Internet]. Physical Review D. 2014 ; 90 043515/1-043515/10.[citado 2024 out. 14 ] Available from: https://doi.org/10.1103/PhysRevD.90.043515
  • Source: Origins of Life and Evolution of Biospheres. Unidade: IAG

    Subjects: EVOLUÇÃO, SELEÇÃO NATURAL, TERMODINÂMICA

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      MARTÍN, Osmel e HORVATH, Jorge Ernesto. Biological evolutionof replicator systems: towards a quantitative approach. Origins of Life and Evolution of Biospheres, v. 43, p. 151-160, 2013Tradução . . Disponível em: https://doi.org/10.1007/s11084-013-9327-4. Acesso em: 14 out. 2024.
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      Martín, O., & Horvath, J. E. (2013). Biological evolutionof replicator systems: towards a quantitative approach. Origins of Life and Evolution of Biospheres, 43, 151-160. doi:10.1007/s11084-013-9327-4
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      Martín O, Horvath JE. Biological evolutionof replicator systems: towards a quantitative approach [Internet]. Origins of Life and Evolution of Biospheres. 2013 ; 43 151-160.[citado 2024 out. 14 ] Available from: https://doi.org/10.1007/s11084-013-9327-4
    • Vancouver

      Martín O, Horvath JE. Biological evolutionof replicator systems: towards a quantitative approach [Internet]. Origins of Life and Evolution of Biospheres. 2013 ; 43 151-160.[citado 2024 out. 14 ] Available from: https://doi.org/10.1007/s11084-013-9327-4
  • Source: Journal of Electromagnetic Waves and Applications. Unidade: IAG

    Assunto: TERMODINÂMICA

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      SILVEIRA, F. E. M e LIMA, Jose Ademir Sales de. Skin effect from extended irreversible thermodynamics perspective. Journal of Electromagnetic Waves and Applications, v. 24, n. 2-3, p. 151-160, 2010Tradução . . Acesso em: 14 out. 2024.
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      Silveira, F. E. M., & Lima, J. A. S. de. (2010). Skin effect from extended irreversible thermodynamics perspective. Journal of Electromagnetic Waves and Applications, 24( 2-3), 151-160.
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      Silveira FEM, Lima JAS de. Skin effect from extended irreversible thermodynamics perspective. Journal of Electromagnetic Waves and Applications. 2010 ; 24( 2-3): 151-160.[citado 2024 out. 14 ]
    • Vancouver

      Silveira FEM, Lima JAS de. Skin effect from extended irreversible thermodynamics perspective. Journal of Electromagnetic Waves and Applications. 2010 ; 24( 2-3): 151-160.[citado 2024 out. 14 ]
  • Source: Astroparticle Physics. Unidade: IAG

    Subjects: BURACOS NEGROS, TERMODINÂMICA

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      LIMA, Jose Ademir Sales de et al. Phantom accretion by black holes and the generalized second law of thermodyanmcs. Astroparticle Physics, v. 33, n. 5-6, p. 292-295, 2010Tradução . . Disponível em: https://doi.org/10.1016/j.astropartphys.2010.02.008. Acesso em: 14 out. 2024.
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      Lima, J. A. S. de, Pereira, S. H., Horvath, J. E., & Guariento, D. C. (2010). Phantom accretion by black holes and the generalized second law of thermodyanmcs. Astroparticle Physics, 33( 5-6), 292-295. doi:10.1016/j.astropartphys.2010.02.008
    • NLM

      Lima JAS de, Pereira SH, Horvath JE, Guariento DC. Phantom accretion by black holes and the generalized second law of thermodyanmcs [Internet]. Astroparticle Physics. 2010 ; 33( 5-6): 292-295.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.astropartphys.2010.02.008
    • Vancouver

      Lima JAS de, Pereira SH, Horvath JE, Guariento DC. Phantom accretion by black holes and the generalized second law of thermodyanmcs [Internet]. Astroparticle Physics. 2010 ; 33( 5-6): 292-295.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.astropartphys.2010.02.008
  • Source: Physics Letters B. Unidade: IAG

    Assunto: TERMODINÂMICA

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      PEREIRA, S H e LIMA, Jose Ademir Sales de. On phantom thermodynamics. Physics Letters B, v. 669, p. 266-270, 2008Tradução . . Disponível em: https://doi.org/10.1016/j.physletb.2008.10.006. Acesso em: 14 out. 2024.
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      Pereira, S. H., & Lima, J. A. S. de. (2008). On phantom thermodynamics. Physics Letters B, 669, 266-270. doi:10.1016/j.physletb.2008.10.006
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      Pereira SH, Lima JAS de. On phantom thermodynamics [Internet]. Physics Letters B. 2008 ; 669 266-270.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.physletb.2008.10.006
    • Vancouver

      Pereira SH, Lima JAS de. On phantom thermodynamics [Internet]. Physics Letters B. 2008 ; 669 266-270.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.physletb.2008.10.006
  • Source: Physics Letters B. Unidade: IAG

    Subjects: COSMOLOGIA, TERMODINÂMICA

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      LIMA, José Ademir Sales de e ALCANIZ, J. S. Thermodynamics, spectral distribution and the nature of dark energy. Physics Letters B, v. 600, p. 191-196, 2004Tradução . . Disponível em: https://doi.org/10.1016/j.physletb.2004.09.013. Acesso em: 14 out. 2024.
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      Lima, J. A. S. de, & Alcaniz, J. S. (2004). Thermodynamics, spectral distribution and the nature of dark energy. Physics Letters B, 600, 191-196. doi:10.1016/j.physletb.2004.09.013
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      Lima JAS de, Alcaniz JS. Thermodynamics, spectral distribution and the nature of dark energy [Internet]. Physics Letters B. 2004 ; 600 191-196.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.physletb.2004.09.013
    • Vancouver

      Lima JAS de, Alcaniz JS. Thermodynamics, spectral distribution and the nature of dark energy [Internet]. Physics Letters B. 2004 ; 600 191-196.[citado 2024 out. 14 ] Available from: https://doi.org/10.1016/j.physletb.2004.09.013
  • Source: Physical Review D. Unidade: IAG

    Subjects: COSMOLOGIA, TERMODINÂMICA

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      CAMARA, C. S et al. Nonsingular FRW cosmology and nonlinear electrodynamics. Physical Review D, v. 69, n. 12, p. 123504/01-123504/10, 2004Tradução . . Acesso em: 14 out. 2024.
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      Camara, C. S., Maia, M. R. de G., Carvalho, J. C., & Lima, J. A. S. de. (2004). Nonsingular FRW cosmology and nonlinear electrodynamics. Physical Review D, 69( 12), 123504/01-123504/10.
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      Camara CS, Maia MR de G, Carvalho JC, Lima JAS de. Nonsingular FRW cosmology and nonlinear electrodynamics. Physical Review D. 2004 ; 69( 12): 123504/01-123504/10.[citado 2024 out. 14 ]
    • Vancouver

      Camara CS, Maia MR de G, Carvalho JC, Lima JAS de. Nonsingular FRW cosmology and nonlinear electrodynamics. Physical Review D. 2004 ; 69( 12): 123504/01-123504/10.[citado 2024 out. 14 ]
  • Source: Astrophysical Journal. Unidade: IAG

    Subjects: ASTRONOMIA, ASTROFÍSICA, TERMODINÂMICA

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      OPHER, Merav e OPHER, Reuven. Dynamic screening thermonuclear reactions. Astrophysical Journal, v. 535, n. 1, p. 473-474, 2000Tradução . . Acesso em: 14 out. 2024.
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      Opher, M., & Opher, R. (2000). Dynamic screening thermonuclear reactions. Astrophysical Journal, 535( 1), 473-474.
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      Opher M, Opher R. Dynamic screening thermonuclear reactions. Astrophysical Journal. 2000 ; 535( 1): 473-474.[citado 2024 out. 14 ]
    • Vancouver

      Opher M, Opher R. Dynamic screening thermonuclear reactions. Astrophysical Journal. 2000 ; 535( 1): 473-474.[citado 2024 out. 14 ]
  • Source: Europhysics Letters. Unidade: IAG

    Subjects: ASTRONOMIA, TERMODINÂMICA

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      REVZEN, M et al. Kirchhoff's theorem and the Casimir effect. Europhysics Letters, v. 38, n. 4, p. 245-248, 1997Tradução . . Disponível em: https://doi.org/10.1209/epl/i1997-00233-9. Acesso em: 14 out. 2024.
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      Revzen, M., Opher, R., Opher, M., & Mann, A. (1997). Kirchhoff's theorem and the Casimir effect. Europhysics Letters, 38( 4), 245-248. doi:10.1209/epl/i1997-00233-9
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      Revzen M, Opher R, Opher M, Mann A. Kirchhoff's theorem and the Casimir effect [Internet]. Europhysics Letters. 1997 ; 38( 4): 245-248.[citado 2024 out. 14 ] Available from: https://doi.org/10.1209/epl/i1997-00233-9
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      Revzen M, Opher R, Opher M, Mann A. Kirchhoff's theorem and the Casimir effect [Internet]. Europhysics Letters. 1997 ; 38( 4): 245-248.[citado 2024 out. 14 ] Available from: https://doi.org/10.1209/epl/i1997-00233-9

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