Filtros : "Alemanha" "Carl von Ossietzky Universität Oldenburg - Oldenburg - Germany" Removidos: "Oliva, Glaucius" "Congresso Brasileiro de Fonoaudiologia" Limpar

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  • Source: Physical Review D. Unidade: IFSC

    Subjects: RELATIVIDADE (FÍSICA), ASTROFÍSICA, COSMOLOGIA

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    • ABNT

      CAPOBIANCO, Rogério Augusto e HARTMANN, Betti e KUNZ, Jutta. Geodesic motion in a swirling universe: the complete set of solutions. Physical Review D, v. 109, n. 6, p. 064042-1-064042-16, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.109.064042. Acesso em: 23 jun. 2024.
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      Capobianco, R. A., Hartmann, B., & Kunz, J. (2024). Geodesic motion in a swirling universe: the complete set of solutions. Physical Review D, 109( 6), 064042-1-064042-16. doi:10.1103/PhysRevD.109.064042
    • NLM

      Capobianco RA, Hartmann B, Kunz J. Geodesic motion in a swirling universe: the complete set of solutions [Internet]. Physical Review D. 2024 ; 109( 6): 064042-1-064042-16.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1103/PhysRevD.109.064042
    • Vancouver

      Capobianco RA, Hartmann B, Kunz J. Geodesic motion in a swirling universe: the complete set of solutions [Internet]. Physical Review D. 2024 ; 109( 6): 064042-1-064042-16.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1103/PhysRevD.109.064042
  • Source: Universe. Unidade: IFSC

    Subjects: COSMOLOGIA, HOLOGRAFIA, ASTRONOMIA, BURACOS NEGROS

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    • ABNT

      APRILE, Nathália Pio e HARTMANN, Betti e KUNZ, Jutta. (Un)balanced holographic superconductors with electric and spin motive force coupling. Universe, v. 8, n. 2, p. 107-1-107-13, 2022Tradução . . Disponível em: https://doi.org/10.3390/universe8020107. Acesso em: 23 jun. 2024.
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      Aprile, N. P., Hartmann, B., & Kunz, J. (2022). (Un)balanced holographic superconductors with electric and spin motive force coupling. Universe, 8( 2), 107-1-107-13. doi:10.3390/universe8020107
    • NLM

      Aprile NP, Hartmann B, Kunz J. (Un)balanced holographic superconductors with electric and spin motive force coupling [Internet]. Universe. 2022 ; 8( 2): 107-1-107-13.[citado 2024 jun. 23 ] Available from: https://doi.org/10.3390/universe8020107
    • Vancouver

      Aprile NP, Hartmann B, Kunz J. (Un)balanced holographic superconductors with electric and spin motive force coupling [Internet]. Universe. 2022 ; 8( 2): 107-1-107-13.[citado 2024 jun. 23 ] Available from: https://doi.org/10.3390/universe8020107
  • Source: Classical and Quantum Gravity. Unidade: IFSC

    Subjects: BURACOS NEGROS, COSMOLOGIA

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      BRIHAYE, Yves e HARTMANN, Betti. Strong gravity effects of charged Q-clouds and inflating black holes. Classical and Quantum Gravity, v. 38, n. 6, p. 06LT01-1-06LT01-13, 2021Tradução . . Disponível em: https://doi.org/10.1088/1361-6382/abd95a. Acesso em: 23 jun. 2024.
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      Brihaye, Y., & Hartmann, B. (2021). Strong gravity effects of charged Q-clouds and inflating black holes. Classical and Quantum Gravity, 38( 6), 06LT01-1-06LT01-13. doi:10.1088/1361-6382/abd95a
    • NLM

      Brihaye Y, Hartmann B. Strong gravity effects of charged Q-clouds and inflating black holes [Internet]. Classical and Quantum Gravity. 2021 ; 38( 6): 06LT01-1-06LT01-13.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1088/1361-6382/abd95a
    • Vancouver

      Brihaye Y, Hartmann B. Strong gravity effects of charged Q-clouds and inflating black holes [Internet]. Classical and Quantum Gravity. 2021 ; 38( 6): 06LT01-1-06LT01-13.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1088/1361-6382/abd95a
  • Source: Physical Review D. Unidade: IFSC

    Subjects: RAIOS CÓSMICOS, COSMOLOGIA, ASTROFÍSICA, COSMOLOGIA

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      BRIHAYE, Yves e CAPOBIANCO, Rogério Augusto e HARTMANN, Betti. Spontaneous scalarization of self-gravitating magnetic fields. Physical Review D, v. 103, n. 12, p. 124020-1-124020-9, 2021Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.103.124020. Acesso em: 23 jun. 2024.
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      Brihaye, Y., Capobianco, R. A., & Hartmann, B. (2021). Spontaneous scalarization of self-gravitating magnetic fields. Physical Review D, 103( 12), 124020-1-124020-9. doi:10.1103/PhysRevD.103.124020
    • NLM

      Brihaye Y, Capobianco RA, Hartmann B. Spontaneous scalarization of self-gravitating magnetic fields [Internet]. Physical Review D. 2021 ; 103( 12): 124020-1-124020-9.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1103/PhysRevD.103.124020
    • Vancouver

      Brihaye Y, Capobianco RA, Hartmann B. Spontaneous scalarization of self-gravitating magnetic fields [Internet]. Physical Review D. 2021 ; 103( 12): 124020-1-124020-9.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1103/PhysRevD.103.124020
  • Source: Physics Letters B. Unidade: IFSC

    Subjects: BÓSON, NÊUTRONS, GRAVIDADE, RELATIVIDADE (FÍSICA)

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      BARTON, Simon et al. Spontaneously vectorized Einstein-Gauss-Bonnet black holes. Physics Letters B, v. 817, p. 136336-1-136336-8, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.physletb.2021.136336. Acesso em: 23 jun. 2024.
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      Barton, S., Hartmann, B., Kleihaus, B., & Kunz, J. (2021). Spontaneously vectorized Einstein-Gauss-Bonnet black holes. Physics Letters B, 817, 136336-1-136336-8. doi:10.1016/j.physletb.2021.136336
    • NLM

      Barton S, Hartmann B, Kleihaus B, Kunz J. Spontaneously vectorized Einstein-Gauss-Bonnet black holes [Internet]. Physics Letters B. 2021 ; 817 136336-1-136336-8.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1016/j.physletb.2021.136336
    • Vancouver

      Barton S, Hartmann B, Kleihaus B, Kunz J. Spontaneously vectorized Einstein-Gauss-Bonnet black holes [Internet]. Physics Letters B. 2021 ; 817 136336-1-136336-8.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1016/j.physletb.2021.136336
  • Source: Physical Review D. Unidade: IFSC

    Subjects: ASTRONOMIA, COSMOLOGIA

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    • ABNT

      FODOR, Gyula e COSTA FILHO, Etevaldo dos Santos e HARTMANN, Betti. Calculation of multipole moments of axistationary electrovacuum spacetimes. Physical Review D, v. 104, n. 6, p. 064012-1-064012-20, 2021Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.104.064012. Acesso em: 23 jun. 2024.
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      Fodor, G., Costa Filho, E. dos S., & Hartmann, B. (2021). Calculation of multipole moments of axistationary electrovacuum spacetimes. Physical Review D, 104( 6), 064012-1-064012-20. doi:10.1103/PhysRevD.104.064012
    • NLM

      Fodor G, Costa Filho E dos S, Hartmann B. Calculation of multipole moments of axistationary electrovacuum spacetimes [Internet]. Physical Review D. 2021 ; 104( 6): 064012-1-064012-20.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1103/PhysRevD.104.064012
    • Vancouver

      Fodor G, Costa Filho E dos S, Hartmann B. Calculation of multipole moments of axistationary electrovacuum spacetimes [Internet]. Physical Review D. 2021 ; 104( 6): 064012-1-064012-20.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1103/PhysRevD.104.064012
  • Source: Symmetry. Unidade: IFSC

    Subjects: ASTRONOMIA, BURACOS NEGROS, COSMOLOGIA

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      BRIHAYE, Yves e CONSOLE, Felipe de Carvalho Ceregatti de e HARTMANN, Betti. Inflation inside non-topological defects and scalar black holes. Symmetry, v. 13, n. Ja 2021, p. 2-1-2-13, 2021Tradução . . Disponível em: https://doi.org/10.3390/sym13010002. Acesso em: 23 jun. 2024.
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      Brihaye, Y., Console, F. de C. C. de, & Hartmann, B. (2021). Inflation inside non-topological defects and scalar black holes. Symmetry, 13( Ja 2021), 2-1-2-13. doi:10.3390/sym13010002
    • NLM

      Brihaye Y, Console F de CC de, Hartmann B. Inflation inside non-topological defects and scalar black holes [Internet]. Symmetry. 2021 ; 13( Ja 2021): 2-1-2-13.[citado 2024 jun. 23 ] Available from: https://doi.org/10.3390/sym13010002
    • Vancouver

      Brihaye Y, Console F de CC de, Hartmann B. Inflation inside non-topological defects and scalar black holes [Internet]. Symmetry. 2021 ; 13( Ja 2021): 2-1-2-13.[citado 2024 jun. 23 ] Available from: https://doi.org/10.3390/sym13010002
  • Source: Inorganic Chemistry. Unidade: IFSC

    Subjects: ESPECTROSCOPIA, DIFRAÇÃO POR RAIOS X, RESSONÂNCIA MAGNÉTICA NUCLEAR

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      RADZIEOWSKI, Mathis et al. Correlations of crystal and electronic structure via NMR and x‑ray photoelectron spectroscopies in the RETMAl2 (RE = Sc, Y, La-Nd, Sm, Gd-Tm, Lu; TM = Ni, Pd, Pt) series. Inorganic Chemistry, v. 58, n. 10, p. 7010-7025, 2019Tradução . . Disponível em: https://doi.org/10.1021/acs.inorgchem.9b00648. Acesso em: 23 jun. 2024.
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      Radzieowski, M., Stegemann, F., Doerenkamp, C., Matar, S. F., Eckert, H., Dosche, C., et al. (2019). Correlations of crystal and electronic structure via NMR and x‑ray photoelectron spectroscopies in the RETMAl2 (RE = Sc, Y, La-Nd, Sm, Gd-Tm, Lu; TM = Ni, Pd, Pt) series. Inorganic Chemistry, 58( 10), 7010-7025. doi:10.1021/acs.inorgchem.9b00648
    • NLM

      Radzieowski M, Stegemann F, Doerenkamp C, Matar SF, Eckert H, Dosche C, Wittstock G, Janka O. Correlations of crystal and electronic structure via NMR and x‑ray photoelectron spectroscopies in the RETMAl2 (RE = Sc, Y, La-Nd, Sm, Gd-Tm, Lu; TM = Ni, Pd, Pt) series [Internet]. Inorganic Chemistry. 2019 ; 58( 10): 7010-7025.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1021/acs.inorgchem.9b00648
    • Vancouver

      Radzieowski M, Stegemann F, Doerenkamp C, Matar SF, Eckert H, Dosche C, Wittstock G, Janka O. Correlations of crystal and electronic structure via NMR and x‑ray photoelectron spectroscopies in the RETMAl2 (RE = Sc, Y, La-Nd, Sm, Gd-Tm, Lu; TM = Ni, Pd, Pt) series [Internet]. Inorganic Chemistry. 2019 ; 58( 10): 7010-7025.[citado 2024 jun. 23 ] Available from: https://doi.org/10.1021/acs.inorgchem.9b00648

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