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CATTANI, Mauro Sérgio Dorsa e SALVADORI, Maria Cecília Barbosa da Silveira e TEIXEIRA, Fernanda de Sá. SAXS structural characterization of nanoheterogeneous conducting thin films: a brief review of SAXS theories. . São Paulo: Instituto de Física, Universidade de São Paulo. . Acesso em: 01 fev. 2023. , 2020
APA
Cattani, M. S. D., Salvadori, M. C. B. da S., & Teixeira, F. de S. (2020). SAXS structural characterization of nanoheterogeneous conducting thin films: a brief review of SAXS theories. São Paulo: Instituto de Física, Universidade de São Paulo.
NLM
Cattani MSD, Salvadori MCB da S, Teixeira F de S. SAXS structural characterization of nanoheterogeneous conducting thin films: a brief review of SAXS theories. 2020 ;[citado 2023 fev. 01 ]
Vancouver
Cattani MSD, Salvadori MCB da S, Teixeira F de S. SAXS structural characterization of nanoheterogeneous conducting thin films: a brief review of SAXS theories. 2020 ;[citado 2023 fev. 01 ]
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CATTANI, Mauro Sérgio Dorsa e SALVADORI, Maria Cecília Barbosa da Silveira e TEIXEIRA, Fernanda de Sá. Insulator-conductor transition: a brief theoretical review. . São Paulo: Instituto de Física, Universidade de São Paulo. . Acesso em: 01 fev. 2023. , 2020
APA
Cattani, M. S. D., Salvadori, M. C. B. da S., & Teixeira, F. de S. (2020). Insulator-conductor transition: a brief theoretical review. São Paulo: Instituto de Física, Universidade de São Paulo.
NLM
Cattani MSD, Salvadori MCB da S, Teixeira F de S. Insulator-conductor transition: a brief theoretical review. 2020 ;[citado 2023 fev. 01 ]
Vancouver
Cattani MSD, Salvadori MCB da S, Teixeira F de S. Insulator-conductor transition: a brief theoretical review. 2020 ;[citado 2023 fev. 01 ]
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CATTANI, Mauro Sérgio Dorsa e BASSALO, Jose Maria Filardo. Energy vacuum fluctuations and the fluctuation-dissipations theorem. . São Paulo: IFUSP. . Acesso em: 01 fev. 2023. , 2019
APA
Cattani, M. S. D., & Bassalo, J. M. F. (2019). Energy vacuum fluctuations and the fluctuation-dissipations theorem. São Paulo: IFUSP.
NLM
Cattani MSD, Bassalo JMF. Energy vacuum fluctuations and the fluctuation-dissipations theorem. 2019 ;[citado 2023 fev. 01 ]
Vancouver
Cattani MSD, Bassalo JMF. Energy vacuum fluctuations and the fluctuation-dissipations theorem. 2019 ;[citado 2023 fev. 01 ]
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SALVADORI, Maria Cecília Barbosa da Silveira e TEIXEIRA, Fernanda Sá e CATTANI, Mauro Sérgio Dorsa. Determination of the tunneling decay length for nanocomposites Au-PMMA. Publicação IFUSP, 1708. São Paulo: IFUSP. . Acesso em: 01 fev. 2023. , 2018
APA
Salvadori, M. C. B. da S., Teixeira, F. S., & Cattani, M. S. D. (2018). Determination of the tunneling decay length for nanocomposites Au-PMMA. Publicação IFUSP, 1708. São Paulo: IFUSP.
NLM
Salvadori MCB da S, Teixeira FS, Cattani MSD. Determination of the tunneling decay length for nanocomposites Au-PMMA. Publicação IFUSP, 1708. 2018 ;[citado 2023 fev. 01 ]
Vancouver
Salvadori MCB da S, Teixeira FS, Cattani MSD. Determination of the tunneling decay length for nanocomposites Au-PMMA. Publicação IFUSP, 1708. 2018 ;[citado 2023 fev. 01 ]
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CATTANI, Mauro Sérgio Dorsa e TEIXEIRA, Fernanda Sá e SALVADORI, Maria Cecília Barbosa da Silveira. Wrinkling Wavelengths in Thin Films. Publicação IFUSP, 1710. São Paulo: IFUSP. . Acesso em: 01 fev. 2023. , 2018
APA
Cattani, M. S. D., Teixeira, F. S., & Salvadori, M. C. B. da S. (2018). Wrinkling Wavelengths in Thin Films. Publicação IFUSP, 1710. São Paulo: IFUSP.
NLM
Cattani MSD, Teixeira FS, Salvadori MCB da S. Wrinkling Wavelengths in Thin Films. Publicação IFUSP, 1710. 2018 ;[citado 2023 fev. 01 ]
Vancouver
Cattani MSD, Teixeira FS, Salvadori MCB da S. Wrinkling Wavelengths in Thin Films. Publicação IFUSP, 1710. 2018 ;[citado 2023 fev. 01 ]
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TEIXEIRA, Fernanda de Sá et al. On the influence of PDMS (polydimethylsiloxane) substrate surface energy in wrinkling of DLC (diamond-like carbon) thin films. Journal of Applied Physics, v. 122, n. 13, p. 135308, 2017Tradução . . Disponível em: https://aip.scitation.org/doi/abs/10.1063/1.5006609. Acesso em: 01 fev. 2023.
APA
Teixeira, F. de S., Araújo, W. W. R. de, Gushiken, N. K., Cattani, M. S. D., & Salvadori, M. C. B. da S. (2017). On the influence of PDMS (polydimethylsiloxane) substrate surface energy in wrinkling of DLC (diamond-like carbon) thin films. Journal of Applied Physics, 122( 13), 135308. doi:10.1063/1.5006609
NLM
Teixeira F de S, Araújo WWR de, Gushiken NK, Cattani MSD, Salvadori MCB da S. On the influence of PDMS (polydimethylsiloxane) substrate surface energy in wrinkling of DLC (diamond-like carbon) thin films [Internet]. Journal of Applied Physics. 2017 ; 122( 13): 135308.[citado 2023 fev. 01 ] Available from: https://aip.scitation.org/doi/abs/10.1063/1.5006609
Vancouver
Teixeira F de S, Araújo WWR de, Gushiken NK, Cattani MSD, Salvadori MCB da S. On the influence of PDMS (polydimethylsiloxane) substrate surface energy in wrinkling of DLC (diamond-like carbon) thin films [Internet]. Journal of Applied Physics. 2017 ; 122( 13): 135308.[citado 2023 fev. 01 ] Available from: https://aip.scitation.org/doi/abs/10.1063/1.5006609
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GRIMALDI, C. e CATTANI, Mauro Sérgio Dorsa e SALVADORI, Maria Cecília Barbosa da Silveira. Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films. . São Paulo: Instituto de Física, Universidade de São Paulo. . Acesso em: 01 fev. 2023. , 2015
APA
Grimaldi, C., Cattani, M. S. D., & Salvadori, M. C. B. da S. (2015). Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films. São Paulo: Instituto de Física, Universidade de São Paulo.
NLM
Grimaldi C, Cattani MSD, Salvadori MCB da S. Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films. 2015 ;[citado 2023 fev. 01 ]
Vancouver
Grimaldi C, Cattani MSD, Salvadori MCB da S. Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films. 2015 ;[citado 2023 fev. 01 ]
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GRIMALDI, C. e CATTANI, Mauro Sérgio Dorsa e SALVADORI, Maria Cecília Barbosa da Silveira. Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films. JOURNAL OF APPLIED PHYSICS, v. 117, n. 12, p. 125302, 2015Tradução . . Disponível em: http://scitation.aip.org/content/aip/journal/jap/117/12/10.1063/1.4915944. Acesso em: 01 fev. 2023.
APA
Grimaldi, C., Cattani, M. S. D., & Salvadori, M. C. B. da S. (2015). Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films. JOURNAL OF APPLIED PHYSICS, 117( 12), 125302. doi:10.1063/1.4915944
NLM
Grimaldi C, Cattani MSD, Salvadori MCB da S. Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films [Internet]. JOURNAL OF APPLIED PHYSICS. 2015 ; 117( 12): 125302.[citado 2023 fev. 01 ] Available from: http://scitation.aip.org/content/aip/journal/jap/117/12/10.1063/1.4915944
Vancouver
Grimaldi C, Cattani MSD, Salvadori MCB da S. Dimensional effects on the tunneling conductivity of gold-implanted nanocomposite films [Internet]. JOURNAL OF APPLIED PHYSICS. 2015 ; 117( 12): 125302.[citado 2023 fev. 01 ] Available from: http://scitation.aip.org/content/aip/journal/jap/117/12/10.1063/1.4915944
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SALVADORI, Maria Cecília Barbosa da Silveira et al. Surface modification by metal ion implantation forming metallic nanoparticles in an insulating matrix. APPLIED SURFACE SCIENCE, v. 310, p. 158-163, 2014Tradução . . Disponível em: http://www.sciencedirect.com/science/article/pii/S0169433214006965. Acesso em: 01 fev. 2023.
APA
Salvadori, M. C. B. da S., Sgubin, L. G., Teixeira, F. de S., & Cattani, M. S. D. (2014). Surface modification by metal ion implantation forming metallic nanoparticles in an insulating matrix. APPLIED SURFACE SCIENCE, 310, 158-163. doi:10.1016/j.apsusc.2014.03.145
NLM
Salvadori MCB da S, Sgubin LG, Teixeira F de S, Cattani MSD. Surface modification by metal ion implantation forming metallic nanoparticles in an insulating matrix [Internet]. APPLIED SURFACE SCIENCE. 2014 ; 310 158-163.[citado 2023 fev. 01 ] Available from: http://www.sciencedirect.com/science/article/pii/S0169433214006965
Vancouver
Salvadori MCB da S, Sgubin LG, Teixeira F de S, Cattani MSD. Surface modification by metal ion implantation forming metallic nanoparticles in an insulating matrix [Internet]. APPLIED SURFACE SCIENCE. 2014 ; 310 158-163.[citado 2023 fev. 01 ] Available from: http://www.sciencedirect.com/science/article/pii/S0169433214006965
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SALVADORI, Maria Cecília Barbosa da Silveira et al. Gold ion implantation into alumina using an “inverted ion source” configuration. REVIEW OF SCIENTIFIC INSTRUMENTS, v. fe 2014, n. 2, p. 02B502, 2014Tradução . . Disponível em: https://repositorio.usp.br/directbitstream/a4001b91-c027-4a56-b67a-099956389626/Gold%20ion%20implantation%20into%20alumina%20using%20an%20%E2%80%9Cinverted%20ion%20source%E2%80%9D%20configuration_%20Review%20of%20Scientific%20Instruments_%20Vol%2085%2C%20No%202.pdf. Acesso em: 01 fev. 2023.
APA
Salvadori, M. C. B. da S., Oks, E. M., Brown, I. G., Spirin, R. E., Araújo, W. W. R. de, Sgubin, L. G., et al. (2014). Gold ion implantation into alumina using an “inverted ion source” configuration. REVIEW OF SCIENTIFIC INSTRUMENTS, fe 2014( 2), 02B502. doi:https://doi.org/10.1063/1.4824755
NLM
Salvadori MCB da S, Oks EM, Brown IG, Spirin RE, Araújo WWR de, Sgubin LG, Teixeira F de S, Cattani MSD. Gold ion implantation into alumina using an “inverted ion source” configuration [Internet]. REVIEW OF SCIENTIFIC INSTRUMENTS. 2014 ; fe 2014( 2): 02B502.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/a4001b91-c027-4a56-b67a-099956389626/Gold%20ion%20implantation%20into%20alumina%20using%20an%20%E2%80%9Cinverted%20ion%20source%E2%80%9D%20configuration_%20Review%20of%20Scientific%20Instruments_%20Vol%2085%2C%20No%202.pdf
Vancouver
Salvadori MCB da S, Oks EM, Brown IG, Spirin RE, Araújo WWR de, Sgubin LG, Teixeira F de S, Cattani MSD. Gold ion implantation into alumina using an “inverted ion source” configuration [Internet]. REVIEW OF SCIENTIFIC INSTRUMENTS. 2014 ; fe 2014( 2): 02B502.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/a4001b91-c027-4a56-b67a-099956389626/Gold%20ion%20implantation%20into%20alumina%20using%20an%20%E2%80%9Cinverted%20ion%20source%E2%80%9D%20configuration_%20Review%20of%20Scientific%20Instruments_%20Vol%2085%2C%20No%202.pdf
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SPIRIN, R. E. et al. Nanocomposite formed by titanium ion implantation into alumina. JOURNAL OF APPLIED PHYSICS, v. no 2014, n. 18, p. 184306, 2014Tradução . . Acesso em: 01 fev. 2023.
APA
Spirin, R. E., Brown, I. G., Sgubin, L. G., Salvadori, M. C. B. da S., Teixeira, F. de S., & Cattani, M. S. D. (2014). Nanocomposite formed by titanium ion implantation into alumina. JOURNAL OF APPLIED PHYSICS, no 2014( 18), 184306.
NLM
Spirin RE, Brown IG, Sgubin LG, Salvadori MCB da S, Teixeira F de S, Cattani MSD. Nanocomposite formed by titanium ion implantation into alumina. JOURNAL OF APPLIED PHYSICS. 2014 ; no 2014( 18): 184306.[citado 2023 fev. 01 ]
Vancouver
Spirin RE, Brown IG, Sgubin LG, Salvadori MCB da S, Teixeira F de S, Cattani MSD. Nanocomposite formed by titanium ion implantation into alumina. JOURNAL OF APPLIED PHYSICS. 2014 ; no 2014( 18): 184306.[citado 2023 fev. 01 ]
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SALVADORI, Maria Cecília Barbosa da Silveira et al. Erratum:: “electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)]. JOURNAL OF APPLIED PHYSICS, v. 116, n. 16, p. 169902, 2014Tradução . . Acesso em: 01 fev. 2023.
APA
Salvadori, M. C. B. da S., Brown, I. G., Teixeira, F. de S., & Cattani, M. S. D. (2014). Erratum:: “electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)]. JOURNAL OF APPLIED PHYSICS, 116( 16), 169902. doi:10.1063/1.4900979
NLM
Salvadori MCB da S, Brown IG, Teixeira F de S, Cattani MSD. Erratum:: “electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)]. JOURNAL OF APPLIED PHYSICS. 2014 ; 116( 16): 169902.[citado 2023 fev. 01 ]
Vancouver
Salvadori MCB da S, Brown IG, Teixeira F de S, Cattani MSD. Erratum:: “electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)]. JOURNAL OF APPLIED PHYSICS. 2014 ; 116( 16): 169902.[citado 2023 fev. 01 ]
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
SALVADORI, Maria Cecília Barbosa da Silveira et al. Erratum:: “Electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)]. JOURNAL OF APPLIED PHYSICS, v. 116, n. 16, p. 169902, 2014Tradução . . Disponível em: http://scitation.aip.org/content/aip/journal/jap/116/16/10.1063/1.4900979. Acesso em: 01 fev. 2023.
APA
Salvadori, M. C. B. da S., Brown, I. G., Teixeira, F. de S., & Cattani, M. S. D. (2014). Erratum:: “Electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)]. JOURNAL OF APPLIED PHYSICS, 116( 16), 169902. doi:https://doi.org/10.1063/1.4900979
NLM
Salvadori MCB da S, Brown IG, Teixeira F de S, Cattani MSD. Erratum:: “Electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)] [Internet]. JOURNAL OF APPLIED PHYSICS. 2014 ; 116( 16): 169902.[citado 2023 fev. 01 ] Available from: http://scitation.aip.org/content/aip/journal/jap/116/16/10.1063/1.4900979
Vancouver
Salvadori MCB da S, Brown IG, Teixeira F de S, Cattani MSD. Erratum:: “Electrical conductivity of platinum-implanted polymethylmethacrylate nanocomposite” [J. Appl. Phys. 110, 114905 (2011)] [Internet]. JOURNAL OF APPLIED PHYSICS. 2014 ; 116( 16): 169902.[citado 2023 fev. 01 ] Available from: http://scitation.aip.org/content/aip/journal/jap/116/16/10.1063/1.4900979
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SALVADORI, Maria Cecília Barbosa da Silveira et al. Microcavity-array superhydrophobic surfaces: limits of the model. JOURNAL OF APPLIED PHYSICS, v. no2013, n. 17, p. 174911, 2013Tradução . . Disponível em: https://repositorio.usp.br/directbitstream/3e124439-c59a-47e3-8015-e059a06bb43d/Microcavity-array%20superhydrophobic%20surfaces_%20Limits%20of%20the%20model_%20Journal%20of%20Applied%20Physics_%20Vol%20114%2C%20No%2017.pdf. Acesso em: 01 fev. 2023.
APA
Salvadori, M. C. B. da S., Oliveira, M. R. S., Brown, I. G., Spirin, R., Teixeira, F. de S., & Cattani, M. S. D. (2013). Microcavity-array superhydrophobic surfaces: limits of the model. JOURNAL OF APPLIED PHYSICS, no2013( 17), 174911. doi:https://doi.org/10.1063/1.4829003
NLM
Salvadori MCB da S, Oliveira MRS, Brown IG, Spirin R, Teixeira F de S, Cattani MSD. Microcavity-array superhydrophobic surfaces: limits of the model [Internet]. JOURNAL OF APPLIED PHYSICS. 2013 ; no2013( 17): 174911.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/3e124439-c59a-47e3-8015-e059a06bb43d/Microcavity-array%20superhydrophobic%20surfaces_%20Limits%20of%20the%20model_%20Journal%20of%20Applied%20Physics_%20Vol%20114%2C%20No%2017.pdf
Vancouver
Salvadori MCB da S, Oliveira MRS, Brown IG, Spirin R, Teixeira F de S, Cattani MSD. Microcavity-array superhydrophobic surfaces: limits of the model [Internet]. JOURNAL OF APPLIED PHYSICS. 2013 ; no2013( 17): 174911.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/3e124439-c59a-47e3-8015-e059a06bb43d/Microcavity-array%20superhydrophobic%20surfaces_%20Limits%20of%20the%20model_%20Journal%20of%20Applied%20Physics_%20Vol%20114%2C%20No%2017.pdf
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HAAS, F et al. Time-dependent Gaussian solution for the Kostin equation around classical trajectories. . São Paulo: Instituto de Física, Universidade de São Paulo. . Acesso em: 01 fev. 2023. , 2013
APA
Haas, F., Bassalo, J. M. F., Silva, D. G. da, A. B. Nassar,, & Cattani, M. S. D. (2013). Time-dependent Gaussian solution for the Kostin equation around classical trajectories. São Paulo: Instituto de Física, Universidade de São Paulo.
NLM
Haas F, Bassalo JMF, Silva DG da, A. B. Nassar, Cattani MSD. Time-dependent Gaussian solution for the Kostin equation around classical trajectories. 2013 ;[citado 2023 fev. 01 ]
Vancouver
Haas F, Bassalo JMF, Silva DG da, A. B. Nassar, Cattani MSD. Time-dependent Gaussian solution for the Kostin equation around classical trajectories. 2013 ;[citado 2023 fev. 01 ]
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SALVADORI, Maria Cecília Barbosa da Silveira et al. Electrical conductivity of gold-implanted alumina nanocomposite. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B, v. 310, p. 32-36, 2013Tradução . . Disponível em: https://repositorio.usp.br/directbitstream/8bd6b129-7bd9-4e8f-9918-a61644ff1ce0/1-s2.0-S0168583X13005685-main.pdf. Acesso em: 01 fev. 2023.
APA
Salvadori, M. C. B. da S., Brown, I. G., Sgubin, L. G., Teixeira, F. de S., & Cattani, M. S. D. (2013). Electrical conductivity of gold-implanted alumina nanocomposite. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B, 310, 32-36. doi:https://doi.org/10.1016/j.nimb.2013.05.024
NLM
Salvadori MCB da S, Brown IG, Sgubin LG, Teixeira F de S, Cattani MSD. Electrical conductivity of gold-implanted alumina nanocomposite [Internet]. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B. 2013 ; 310 32-36.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/8bd6b129-7bd9-4e8f-9918-a61644ff1ce0/1-s2.0-S0168583X13005685-main.pdf
Vancouver
Salvadori MCB da S, Brown IG, Sgubin LG, Teixeira F de S, Cattani MSD. Electrical conductivity of gold-implanted alumina nanocomposite [Internet]. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B. 2013 ; 310 32-36.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/8bd6b129-7bd9-4e8f-9918-a61644ff1ce0/1-s2.0-S0168583X13005685-main.pdf
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HAAS, F. et al. Time-dependent gaussian solution for the kostin equation around classical trajectories. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, v. 52, n. ja2013, p. 88-95, 2013Tradução . . Disponível em: https://repositorio.usp.br/directbitstream/3f961f2b-7897-44a7-97fd-4826f2df12d2/s10773-012-1302-8.pdf. Acesso em: 01 fev. 2023.
APA
Haas, F., Bassalo, J. M. F., Silva, D. G. da, Nassar, A. B., & Cattani, M. S. D. (2013). Time-dependent gaussian solution for the kostin equation around classical trajectories. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 52( ja2013), 88-95. doi:https://doi.org/10.1007/s10773-012-1302-8
NLM
Haas F, Bassalo JMF, Silva DG da, Nassar AB, Cattani MSD. Time-dependent gaussian solution for the kostin equation around classical trajectories [Internet]. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS. 2013 ; 52( ja2013): 88-95.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/3f961f2b-7897-44a7-97fd-4826f2df12d2/s10773-012-1302-8.pdf
Vancouver
Haas F, Bassalo JMF, Silva DG da, Nassar AB, Cattani MSD. Time-dependent gaussian solution for the kostin equation around classical trajectories [Internet]. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS. 2013 ; 52( ja2013): 88-95.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/3f961f2b-7897-44a7-97fd-4826f2df12d2/s10773-012-1302-8.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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TEIXEIRA, Fernanda de Sá et al. Isotropic and anisotropic wrinkling of diamond-like carbon films on polydimethylsiloxane substrates. JOURNAL OF APPLIED PHYSICS, v. 113, n. ju2013, p. 234904, 2013Tradução . . Disponível em: https://repositorio.usp.br/directbitstream/ceddcd36-13a7-4eee-9504-3f05116ee540/Isotropic%20and%20anisotropic%20wrinkling%20of%20diamond-like%20carbon%20films%20on%20polydimethylsiloxane%20substrates_%20Journal%20of%20Applied%20Physics_%20Vol%20113%2C%20No%2023.pdf. Acesso em: 01 fev. 2023.
APA
Teixeira, F. de S., Brown, I. G., Araújo, W. W. R. de, Amorim, H. J. M., Salvadori, M. C. B. da S., & Cattani, M. S. D. (2013). Isotropic and anisotropic wrinkling of diamond-like carbon films on polydimethylsiloxane substrates. JOURNAL OF APPLIED PHYSICS, 113( ju2013), 234904. doi:https://doi.org/10.1063/1.4811456
NLM
Teixeira F de S, Brown IG, Araújo WWR de, Amorim HJM, Salvadori MCB da S, Cattani MSD. Isotropic and anisotropic wrinkling of diamond-like carbon films on polydimethylsiloxane substrates [Internet]. JOURNAL OF APPLIED PHYSICS. 2013 ; 113( ju2013): 234904.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/ceddcd36-13a7-4eee-9504-3f05116ee540/Isotropic%20and%20anisotropic%20wrinkling%20of%20diamond-like%20carbon%20films%20on%20polydimethylsiloxane%20substrates_%20Journal%20of%20Applied%20Physics_%20Vol%20113%2C%20No%2023.pdf
Vancouver
Teixeira F de S, Brown IG, Araújo WWR de, Amorim HJM, Salvadori MCB da S, Cattani MSD. Isotropic and anisotropic wrinkling of diamond-like carbon films on polydimethylsiloxane substrates [Internet]. JOURNAL OF APPLIED PHYSICS. 2013 ; 113( ju2013): 234904.[citado 2023 fev. 01 ] Available from: https://repositorio.usp.br/directbitstream/ceddcd36-13a7-4eee-9504-3f05116ee540/Isotropic%20and%20anisotropic%20wrinkling%20of%20diamond-like%20carbon%20films%20on%20polydimethylsiloxane%20substrates_%20Journal%20of%20Applied%20Physics_%20Vol%20113%2C%20No%2023.pdf