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  • Source: Journal of Low Temperature Physics. Unidade: EP

    Subjects: PROCESSOS QUÍMICOS, METANO, DIÓXIDO DE CARBONO

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      HEIDARYAN, Ehsan e PESSÔA FILHO, Pedro de Alcântara e ROBUSTILLO FUENTES, Maria Dolores. Molecular dynamic simulations of clathrate hydrate structures I: lattice constant and thermal expansion. Journal of Low Temperature Physics, v. 207, p. 227–240, 2022Tradução . . Disponível em: https://doi.org/10.1007/s10909-022-02725-9. Acesso em: 02 jun. 2024.
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      Heidaryan, E., Pessôa Filho, P. de A., & Robustillo Fuentes, M. D. (2022). Molecular dynamic simulations of clathrate hydrate structures I: lattice constant and thermal expansion. Journal of Low Temperature Physics, 207, 227–240. doi:10.1007/s10909-022-02725-9
    • NLM

      Heidaryan E, Pessôa Filho P de A, Robustillo Fuentes MD. Molecular dynamic simulations of clathrate hydrate structures I: lattice constant and thermal expansion [Internet]. Journal of Low Temperature Physics. 2022 ; 207 227–240.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-022-02725-9
    • Vancouver

      Heidaryan E, Pessôa Filho P de A, Robustillo Fuentes MD. Molecular dynamic simulations of clathrate hydrate structures I: lattice constant and thermal expansion [Internet]. Journal of Low Temperature Physics. 2022 ; 207 227–240.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-022-02725-9
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: VIDRO, NANOPARTÍCULAS, FOSFATOS

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      ACOSTA-HUMÁNEZ, F. et al. Structural, optical and EPR study of Zn1- xFexO nanocrystals. Journal of Low Temperature Physics, v. 202, n. Ja 2021, p. 29-47, 2021Tradução . . Disponível em: https://doi.org/10.1007/s10909-020-02541-z. Acesso em: 02 jun. 2024.
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      Acosta-Humánez, F., Magon, C. J., Vides, L. M., & Almanza, O. (2021). Structural, optical and EPR study of Zn1- xFexO nanocrystals. Journal of Low Temperature Physics, 202( Ja 2021), 29-47. doi:10.1007/s10909-020-02541-z
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      Acosta-Humánez F, Magon CJ, Vides LM, Almanza O. Structural, optical and EPR study of Zn1- xFexO nanocrystals [Internet]. Journal of Low Temperature Physics. 2021 ; 202( Ja 2021): 29-47.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-020-02541-z
    • Vancouver

      Acosta-Humánez F, Magon CJ, Vides LM, Almanza O. Structural, optical and EPR study of Zn1- xFexO nanocrystals [Internet]. Journal of Low Temperature Physics. 2021 ; 202( Ja 2021): 29-47.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-020-02541-z
  • Source: Journal of Low Temperature Physics. Unidade: IF

    Assunto: CONDENSADO DE BOSE-EINSTEIN

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      KUMAR, Ramavarmaraja Kishor e CHAKRABARTI, B e GAMMAL, Arnaldo. Information entropy for a two-dimensional rotating Bose–Einstein Condensate. Journal of Low Temperature Physics, v. 194, n. 1–2, p. 14–26, 2019Tradução . . Disponível em: https://doi.org/10.1007/s10909-018-2051-8. Acesso em: 02 jun. 2024.
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      Kumar, R. K., Chakrabarti, B., & Gammal, A. (2019). Information entropy for a two-dimensional rotating Bose–Einstein Condensate. Journal of Low Temperature Physics, 194( 1–2), 14–26. doi:10.1007/s10909-018-2051-8
    • NLM

      Kumar RK, Chakrabarti B, Gammal A. Information entropy for a two-dimensional rotating Bose–Einstein Condensate [Internet]. Journal of Low Temperature Physics. 2019 ; 194( 1–2): 14–26.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-018-2051-8
    • Vancouver

      Kumar RK, Chakrabarti B, Gammal A. Information entropy for a two-dimensional rotating Bose–Einstein Condensate [Internet]. Journal of Low Temperature Physics. 2019 ; 194( 1–2): 14–26.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-018-2051-8
  • Source: Journal of Low Temperature Physics. Unidade: EP

    Subjects: EQUILÍBRIO QUÍMICO, METANO, DIÓXIDO DE CARBONO

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      HEIDARYAN, Ehsan e ROBUSTILLO FUENTES, Maria Dolores e PESSÔA FILHO, Pedro de Alcântara. Equilibrium of methane and carbon dioxide hydrates below the freezing point of water: literature review and modeling. Journal of Low Temperature Physics, v. 194, p. 27–45, 2019Tradução . . Disponível em: https://doi.org/10.1007/s10909-018-2049-2. Acesso em: 02 jun. 2024.
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      Heidaryan, E., Robustillo Fuentes, M. D., & Pessôa Filho, P. de A. (2019). Equilibrium of methane and carbon dioxide hydrates below the freezing point of water: literature review and modeling. Journal of Low Temperature Physics, 194, 27–45. doi:10.1007/s10909-018-2049-2
    • NLM

      Heidaryan E, Robustillo Fuentes MD, Pessôa Filho P de A. Equilibrium of methane and carbon dioxide hydrates below the freezing point of water: literature review and modeling [Internet]. Journal of Low Temperature Physics. 2019 ; 194 27–45.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-018-2049-2
    • Vancouver

      Heidaryan E, Robustillo Fuentes MD, Pessôa Filho P de A. Equilibrium of methane and carbon dioxide hydrates below the freezing point of water: literature review and modeling [Internet]. Journal of Low Temperature Physics. 2019 ; 194 27–45.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-018-2049-2
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: BÓSON, CONDENSADO DE BOSE-EINSTEIN, FÍSICA DA MATÉRIA CONDENSADA, MATERIAIS MAGNÉTICOS

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      FRITSCH, A. R. et al. Nonlinear dependence observed in quadrupolar collective excitation of a trapped BEC. Journal of Low Temperature Physics, v. 180, n. 1-2, p. 144-152, 2015Tradução . . Disponível em: https://doi.org/10.1007/s10909-015-1307-9. Acesso em: 02 jun. 2024.
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      Fritsch, A. R., Tavares, P. E. S., Bahrami, A., Tonin, Y. R., Henn, E. A. de L., Bagnato, V. S., & Telles, G. D. (2015). Nonlinear dependence observed in quadrupolar collective excitation of a trapped BEC. Journal of Low Temperature Physics, 180( 1-2), 144-152. doi:10.1007/s10909-015-1307-9
    • NLM

      Fritsch AR, Tavares PES, Bahrami A, Tonin YR, Henn EA de L, Bagnato VS, Telles GD. Nonlinear dependence observed in quadrupolar collective excitation of a trapped BEC [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 144-152.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1307-9
    • Vancouver

      Fritsch AR, Tavares PES, Bahrami A, Tonin YR, Henn EA de L, Bagnato VS, Telles GD. Nonlinear dependence observed in quadrupolar collective excitation of a trapped BEC [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 144-152.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1307-9
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: CONDENSADO DE BOSE-EINSTEIN, ÁTOMOS

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      BAHRAMI, A. et al. Investigation of the momentum distribution of an excited BEC by free expansion: coupling with collective modes. Journal of Low Temperature Physics, v. 180, n. 1-2, p. 126-132, 2015Tradução . . Disponível em: https://doi.org/10.1007/s10909-015-1292-z. Acesso em: 02 jun. 2024.
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      Bahrami, A., Tavares, P. E. S., Fritsch, A. R., Tonin, Y. R., Telles, G. D., Bagnato, V. S., & Henn, E. A. de L. (2015). Investigation of the momentum distribution of an excited BEC by free expansion: coupling with collective modes. Journal of Low Temperature Physics, 180( 1-2), 126-132. doi:10.1007/s10909-015-1292-z
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      Bahrami A, Tavares PES, Fritsch AR, Tonin YR, Telles GD, Bagnato VS, Henn EA de L. Investigation of the momentum distribution of an excited BEC by free expansion: coupling with collective modes [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 126-132.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1292-z
    • Vancouver

      Bahrami A, Tavares PES, Fritsch AR, Tonin YR, Telles GD, Bagnato VS, Henn EA de L. Investigation of the momentum distribution of an excited BEC by free expansion: coupling with collective modes [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 126-132.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1292-z
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: CONDENSADO DE BOSE-EINSTEIN, TURBULÊNCIA, VÓRTICES DOS GASES

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      YUKALOV, V. I. e NOVIKOV, A. N. e BAGNATO, Vanderlei Salvador. Strongly nonequilibrium bose-condensed atomic systems. Journal of Low Temperature Physics, v. 180, n. 1-2, p. 53-67, 2015Tradução . . Disponível em: https://doi.org/10.1007/s10909-015-1288-8. Acesso em: 02 jun. 2024.
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      Yukalov, V. I., Novikov, A. N., & Bagnato, V. S. (2015). Strongly nonequilibrium bose-condensed atomic systems. Journal of Low Temperature Physics, 180( 1-2), 53-67. doi:10.1007/s10909-015-1288-8
    • NLM

      Yukalov VI, Novikov AN, Bagnato VS. Strongly nonequilibrium bose-condensed atomic systems [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 53-67.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1288-8
    • Vancouver

      Yukalov VI, Novikov AN, Bagnato VS. Strongly nonequilibrium bose-condensed atomic systems [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 53-67.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1288-8
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: CONDENSADO DE BOSE-EINSTEIN, FÍSICA ATÔMICA

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      WELLS, T. et al. Vortex reconnections in anisotropic trapped three-dimensional Bose–Einstein condensates. Journal of Low Temperature Physics, v. 180, n. 1-2, p. 133-143, 2015Tradução . . Disponível em: https://doi.org/10.1007/s10909-015-1285-y. Acesso em: 02 jun. 2024.
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      Wells, T., Lode, A. U. J., Bagnato, V. S., & Tsatsos, M. C. (2015). Vortex reconnections in anisotropic trapped three-dimensional Bose–Einstein condensates. Journal of Low Temperature Physics, 180( 1-2), 133-143. doi:10.1007/s10909-015-1285-y
    • NLM

      Wells T, Lode AUJ, Bagnato VS, Tsatsos MC. Vortex reconnections in anisotropic trapped three-dimensional Bose–Einstein condensates [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 133-143.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1285-y
    • Vancouver

      Wells T, Lode AUJ, Bagnato VS, Tsatsos MC. Vortex reconnections in anisotropic trapped three-dimensional Bose–Einstein condensates [Internet]. Journal of Low Temperature Physics. 2015 ; 180( 1-2): 133-143.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-015-1285-y
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: TURBULÊNCIA, VÓRTICES DOS FLUÍDOS, CONDENSADO DE BOSE-EINSTEIN

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      CARACANHAS, Mônica Andrioli et al. Self-similar expansion of a turbulent Bose-Einstein Condensate: a generalized hydrodynamic model. Journal of Low Temperature Physics, v. 170, n. 3/4, p. 133-142, 2013Tradução . . Disponível em: https://doi.org/10.1007/s10909-012-0776-3. Acesso em: 02 jun. 2024.
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      Caracanhas, M. A., Fetter, A. L., Baym, G., Muniz, S. R., & Bagnato, V. S. (2013). Self-similar expansion of a turbulent Bose-Einstein Condensate: a generalized hydrodynamic model. Journal of Low Temperature Physics, 170( 3/4), 133-142. doi:10.1007/s10909-012-0776-3
    • NLM

      Caracanhas MA, Fetter AL, Baym G, Muniz SR, Bagnato VS. Self-similar expansion of a turbulent Bose-Einstein Condensate: a generalized hydrodynamic model [Internet]. Journal of Low Temperature Physics. 2013 ; 170( 3/4): 133-142.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-012-0776-3
    • Vancouver

      Caracanhas MA, Fetter AL, Baym G, Muniz SR, Bagnato VS. Self-similar expansion of a turbulent Bose-Einstein Condensate: a generalized hydrodynamic model [Internet]. Journal of Low Temperature Physics. 2013 ; 170( 3/4): 133-142.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-012-0776-3
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: FÍSICA ATÔMICA, TURBULÊNCIA, CONDENSADO DE BOSE-EINSTEIN

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      CARACANHAS, Mônica Andrioli et al. Self-similar expansion of the density profile in a turbulent Bose-Einstein condensate. Journal of Low Temperature Physics, v. 166, n. Ja 2012, p. 49-58, 2012Tradução . . Disponível em: https://doi.org/10.1007/s10909-011-0409-2. Acesso em: 02 jun. 2024.
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      Caracanhas, M. A., Fetter, A. L., Muniz, S. R., Farias, K. M., Roati, G., Bagnato, G. G., & Bagnato, V. S. (2012). Self-similar expansion of the density profile in a turbulent Bose-Einstein condensate. Journal of Low Temperature Physics, 166( Ja 2012), 49-58. doi:10.1007/s10909-011-0409-2
    • NLM

      Caracanhas MA, Fetter AL, Muniz SR, Farias KM, Roati G, Bagnato GG, Bagnato VS. Self-similar expansion of the density profile in a turbulent Bose-Einstein condensate [Internet]. Journal of Low Temperature Physics. 2012 ; 166( Ja 2012): 49-58.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-011-0409-2
    • Vancouver

      Caracanhas MA, Fetter AL, Muniz SR, Farias KM, Roati G, Bagnato GG, Bagnato VS. Self-similar expansion of the density profile in a turbulent Bose-Einstein condensate [Internet]. Journal of Low Temperature Physics. 2012 ; 166( Ja 2012): 49-58.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-011-0409-2
  • Source: Journal of Low Temperature Physics. Unidade: IFSC

    Subjects: ENERGIA (ESTADO), SILICIO, ESPECTROSCOPIA, SUPERCONDUTIVIDADE, MATERIAIS ELETRÔNICOS, CAMPO MAGNÉTICO

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      ALFONSO, A. Bruno et al. Energy states of phosphorous donor in silicon in fields up to 18 T. Journal of Low Temperature Physics, v. 159, n. 1/2, p. 226-229, 2010Tradução . . Disponível em: https://doi.org/10.1007/s10909-009-0119-1. Acesso em: 02 jun. 2024.
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      Alfonso, A. B., Lewis, R. A., Hai, G. -Q., & Vickers, R. E. M. (2010). Energy states of phosphorous donor in silicon in fields up to 18 T. Journal of Low Temperature Physics, 159( 1/2), 226-229. doi:10.1007/s10909-009-0119-1
    • NLM

      Alfonso AB, Lewis RA, Hai G-Q, Vickers REM. Energy states of phosphorous donor in silicon in fields up to 18 T [Internet]. Journal of Low Temperature Physics. 2010 ; 159( 1/2): 226-229.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-009-0119-1
    • Vancouver

      Alfonso AB, Lewis RA, Hai G-Q, Vickers REM. Energy states of phosphorous donor in silicon in fields up to 18 T [Internet]. Journal of Low Temperature Physics. 2010 ; 159( 1/2): 226-229.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-009-0119-1
  • Source: Journal of Low Temperature Physics. Unidade: IF

    Subjects: BAIXA TEMPERATURA, SUPERCONDUTIVIDADE

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      YIN, L et al. Magnetic susceptibility measurements at ultra-low temperatures. Journal of Low Temperature Physics, v. 158, n. 3-4, p. 710-715, 2010Tradução . . Disponível em: http://www.springerlink.com/content/gk774n5324014109/fulltext.pdf. Acesso em: 02 jun. 2024.
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      Yin, L., Xia, J. S., Sullivan, N. S., Zapf, V. S., & Paduan-Filho, A. (2010). Magnetic susceptibility measurements at ultra-low temperatures. Journal of Low Temperature Physics, 158( 3-4), 710-715. doi:https://doi.org/10.1007/s10909-009-0029-2
    • NLM

      Yin L, Xia JS, Sullivan NS, Zapf VS, Paduan-Filho A. Magnetic susceptibility measurements at ultra-low temperatures [Internet]. Journal of Low Temperature Physics. 2010 ; 158( 3-4): 710-715.[citado 2024 jun. 02 ] Available from: http://www.springerlink.com/content/gk774n5324014109/fulltext.pdf
    • Vancouver

      Yin L, Xia JS, Sullivan NS, Zapf VS, Paduan-Filho A. Magnetic susceptibility measurements at ultra-low temperatures [Internet]. Journal of Low Temperature Physics. 2010 ; 158( 3-4): 710-715.[citado 2024 jun. 02 ] Available from: http://www.springerlink.com/content/gk774n5324014109/fulltext.pdf
  • Source: Journal of Low Temperature Physics. Conference titles: International Symposium on Quantum Fluids and Solids - QFS2009. Unidade: IFSC

    Subjects: CONDENSADO DE BOSE-EINSTEIN, TURBULÊNCIA, MECÂNICA QUÂNTICA, VÓRTICES DOS GASES

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      HENN, E. A. L. et al. Generation of vortices and observation of quantum turbulence in an oscillating Bose-Einstein condensate. Journal of Low Temperature Physics. New York: Springer. Disponível em: https://doi.org/10.1007/s10909-009-0045-2. Acesso em: 02 jun. 2024. , 2010
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      Henn, E. A. L., Seman, J. A., Roati, G., Magalhães, K. M. F., & Bagnato, V. S. (2010). Generation of vortices and observation of quantum turbulence in an oscillating Bose-Einstein condensate. Journal of Low Temperature Physics. New York: Springer. doi:10.1007/s10909-009-0045-2
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      Henn EAL, Seman JA, Roati G, Magalhães KMF, Bagnato VS. Generation of vortices and observation of quantum turbulence in an oscillating Bose-Einstein condensate [Internet]. Journal of Low Temperature Physics. 2010 ; 158( 3-4): 435-442.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-009-0045-2
    • Vancouver

      Henn EAL, Seman JA, Roati G, Magalhães KMF, Bagnato VS. Generation of vortices and observation of quantum turbulence in an oscillating Bose-Einstein condensate [Internet]. Journal of Low Temperature Physics. 2010 ; 158( 3-4): 435-442.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-009-0045-2
  • Source: Journal of Low Temperature Physics. Unidade: IF

    Subjects: FÍSICA DA MATÉRIA CONDENSADA, BAIXA TEMPERATURA

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      YIN, L et al. Magnetic Susceptibility Measurements at Ultra-low Temperatures. Journal of Low Temperature Physics, v. 158, n. 3-4, p. 710-715, 2009Tradução . . Disponível em: https://doi.org/10.1007/s10909-009-0029-2. Acesso em: 02 jun. 2024.
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      Yin, L., Xia, J. S., Sullivan, N. S., Zapf, V. S., & Paduan-Filho, A. (2009). Magnetic Susceptibility Measurements at Ultra-low Temperatures. Journal of Low Temperature Physics, 158( 3-4), 710-715. doi:10.1007/s10909-009-0029-2
    • NLM

      Yin L, Xia JS, Sullivan NS, Zapf VS, Paduan-Filho A. Magnetic Susceptibility Measurements at Ultra-low Temperatures [Internet]. Journal of Low Temperature Physics. 2009 ; 158( 3-4): 710-715.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-009-0029-2
    • Vancouver

      Yin L, Xia JS, Sullivan NS, Zapf VS, Paduan-Filho A. Magnetic Susceptibility Measurements at Ultra-low Temperatures [Internet]. Journal of Low Temperature Physics. 2009 ; 158( 3-4): 710-715.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/s10909-009-0029-2
  • Source: Journal of Low Temperature Physics. Unidade: IF

    Assunto: MATÉRIA CONDENSADA

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      MORGOON, V N et al. Mixed state odd hall effect in 'YBA IND.2''CU IND.3''O IND.7' - gama'. Journal of Low Temperature Physics, v. 105, n. 3-4, p. 963, 1996Tradução . . Acesso em: 02 jun. 2024.
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      Morgoon, V. N., Castilla Becerra, C., Shigue, C. Y., Sivakov, A. V., Shklovskij, V. A., Bindilatti, V., et al. (1996). Mixed state odd hall effect in 'YBA IND.2''CU IND.3''O IND.7' - gama'. Journal of Low Temperature Physics, 105( 3-4), 963.
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      Morgoon VN, Castilla Becerra C, Shigue CY, Sivakov AV, Shklovskij VA, Bindilatti V, Bondarenko AV, Jardim RF. Mixed state odd hall effect in 'YBA IND.2''CU IND.3''O IND.7' - gama'. Journal of Low Temperature Physics. 1996 ;105( 3-4): 963.[citado 2024 jun. 02 ]
    • Vancouver

      Morgoon VN, Castilla Becerra C, Shigue CY, Sivakov AV, Shklovskij VA, Bindilatti V, Bondarenko AV, Jardim RF. Mixed state odd hall effect in 'YBA IND.2''CU IND.3''O IND.7' - gama'. Journal of Low Temperature Physics. 1996 ;105( 3-4): 963.[citado 2024 jun. 02 ]
  • Source: Journal of Low Temperature Physics. Unidade: IF

    Assunto: MATÉRIA CONDENSADA

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      HAAR, E et al. Plastic dilution refrigerators. Journal of Low Temperature Physics, v. 99, p. 151, 1995Tradução . . Disponível em: https://doi.org/10.1007/bf00753626. Acesso em: 02 jun. 2024.
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      Haar, E., Wagner, R., Woerkens, C. M. C. M., Steel, S. C., Frossati, G., Skrbek, L., et al. (1995). Plastic dilution refrigerators. Journal of Low Temperature Physics, 99, 151. doi:10.1007/bf00753626
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      Haar E, Wagner R, Woerkens CMCM, Steel SC, Frossati G, Skrbek L, Meisel MW, Bindilatti V, Rodrigues AR, Martin RV, Oliveira Jr. NF. Plastic dilution refrigerators [Internet]. Journal of Low Temperature Physics. 1995 ;99 151.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/bf00753626
    • Vancouver

      Haar E, Wagner R, Woerkens CMCM, Steel SC, Frossati G, Skrbek L, Meisel MW, Bindilatti V, Rodrigues AR, Martin RV, Oliveira Jr. NF. Plastic dilution refrigerators [Internet]. Journal of Low Temperature Physics. 1995 ;99 151.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/bf00753626
  • Source: Journal of Low Temperature Physics. Unidade: IF

    Assunto: SUPERCONDUTIVIDADE

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      NICOLSKY, R e OCTAVIO, M e FROTA PESSOA, S. Model for small superconducting variable-thickness bridge constructions. Journal of Low Temperature Physics, v. 58, p. 11-26, 1985Tradução . . Disponível em: https://doi.org/10.1007/bf00682563. Acesso em: 02 jun. 2024.
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      Nicolsky, R., Octavio, M., & Frota Pessoa, S. (1985). Model for small superconducting variable-thickness bridge constructions. Journal of Low Temperature Physics, 58, 11-26. doi:10.1007/bf00682563
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      Nicolsky R, Octavio M, Frota Pessoa S. Model for small superconducting variable-thickness bridge constructions [Internet]. Journal of Low Temperature Physics. 1985 ;58 11-26.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/bf00682563
    • Vancouver

      Nicolsky R, Octavio M, Frota Pessoa S. Model for small superconducting variable-thickness bridge constructions [Internet]. Journal of Low Temperature Physics. 1985 ;58 11-26.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1007/bf00682563

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