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YOSHIZUMI, Victor Hideki et al. BI interface for power transmission insulators health monitoring. 2022, Anais.. Rio de Janeiro: ABCM, 2022. Disponível em: https://doi.org/10.29327/547386. Acesso em: 05 dez. 2025.
APA
Yoshizumi, V. H., Lopes, S. M. de A., Tavares, B., Moreira, W. H., Barquete, A. C. C., Spatti, D. H., et al. (2022). BI interface for power transmission insulators health monitoring. In Proceedings. Rio de Janeiro: ABCM. doi:10.29327/547386
NLM
Yoshizumi VH, Lopes SM de A, Tavares B, Moreira WH, Barquete ACC, Spatti DH, Flauzino RA, Silva IN da. BI interface for power transmission insulators health monitoring [Internet]. Proceedings. 2022 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.29327/547386
Vancouver
Yoshizumi VH, Lopes SM de A, Tavares B, Moreira WH, Barquete ACC, Spatti DH, Flauzino RA, Silva IN da. BI interface for power transmission insulators health monitoring [Internet]. Proceedings. 2022 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.29327/547386
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TAVARES, Beatriz et al. Impact of winds on the pollutant deposition in insulators of electric power transmission systems. 2022, Anais.. Rio de Janeiro: ABCM, 2022. Disponível em: https://doi.org/10.29327/547386. Acesso em: 05 dez. 2025.
APA
Tavares, B., Silva, I. N. da, Flauzino, R. A., Lopes, S. M. de A., Spatti, D. H., Yoshizumi, V. H., et al. (2022). Impact of winds on the pollutant deposition in insulators of electric power transmission systems. In Proceedings. Rio de Janeiro: ABCM. doi:10.29327/547386
NLM
Tavares B, Silva IN da, Flauzino RA, Lopes SM de A, Spatti DH, Yoshizumi VH, Moreira WH, Barquete ACC. Impact of winds on the pollutant deposition in insulators of electric power transmission systems [Internet]. Proceedings. 2022 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.29327/547386
Vancouver
Tavares B, Silva IN da, Flauzino RA, Lopes SM de A, Spatti DH, Yoshizumi VH, Moreira WH, Barquete ACC. Impact of winds on the pollutant deposition in insulators of electric power transmission systems [Internet]. Proceedings. 2022 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.29327/547386
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LOPES, Sofia Moreira de Andrade et al. Overhead line insulators performance degradation analysis Due to environmental pollution. 2022, Anais.. Rio de Janeiro: ABCM, 2022. Disponível em: https://doi.org/10.29327/547386. Acesso em: 05 dez. 2025.
APA
Lopes, S. M. de A., Yoshizumi, V. H., Tavares, B., Moreira, W. H., Barquete, A. C. C., Flauzino, R. A., et al. (2022). Overhead line insulators performance degradation analysis Due to environmental pollution. In Proceedings. Rio de Janeiro: ABCM. doi:10.29327/547386
NLM
Lopes SM de A, Yoshizumi VH, Tavares B, Moreira WH, Barquete ACC, Flauzino RA, Spatti DH, Silva IN da. Overhead line insulators performance degradation analysis Due to environmental pollution [Internet]. Proceedings. 2022 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.29327/547386
Vancouver
Lopes SM de A, Yoshizumi VH, Tavares B, Moreira WH, Barquete ACC, Flauzino RA, Spatti DH, Silva IN da. Overhead line insulators performance degradation analysis Due to environmental pollution [Internet]. Proceedings. 2022 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.29327/547386
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FURLAN, Laison Junio da Silva et al. Matrix method for a stability analysis of non-newtonian fluid flow. 2021, Anais.. Rio de Janeiro: ABCM, 2021. Disponível em: https://doi.org/10.26678/ABCM.COBEM2021.COB2021-1376. Acesso em: 05 dez. 2025.
APA
Furlan, L. J. da S., Araujo, M. T. de, Souza, L. F. de, Mendonça, M. T. de, & Brandi, A. C. (2021). Matrix method for a stability analysis of non-newtonian fluid flow. In Proceedings. Rio de Janeiro: ABCM. doi:10.26678/ABCM.COBEM2021.COB2021-1376
NLM
Furlan LJ da S, Araujo MT de, Souza LF de, Mendonça MT de, Brandi AC. Matrix method for a stability analysis of non-newtonian fluid flow [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.26678/ABCM.COBEM2021.COB2021-1376
Vancouver
Furlan LJ da S, Araujo MT de, Souza LF de, Mendonça MT de, Brandi AC. Matrix method for a stability analysis of non-newtonian fluid flow [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.26678/ABCM.COBEM2021.COB2021-1376
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MOREIRA, Débora Carneiro et al. Flow boiling of R1336mzz(Z) in open microchannels with diverging manifold. 2021, Anais.. Rio de Janeiro, RJ: ABCM, 2021. Disponível em: https://repositorio.usp.br/directbitstream/ae51f9a9-52ac-4027-bf7c-cd9370a709ec/PROD_26256_SYSNO_3153030.pdf. Acesso em: 05 dez. 2025.
APA
Moreira, D. C., Nascimento Junior, V. S. do, Ribatski, G., & Kandlikar, S. G. (2021). Flow boiling of R1336mzz(Z) in open microchannels with diverging manifold. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/ae51f9a9-52ac-4027-bf7c-cd9370a709ec/PROD_26256_SYSNO_3153030.pdf
NLM
Moreira DC, Nascimento Junior VS do, Ribatski G, Kandlikar SG. Flow boiling of R1336mzz(Z) in open microchannels with diverging manifold [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/ae51f9a9-52ac-4027-bf7c-cd9370a709ec/PROD_26256_SYSNO_3153030.pdf
Vancouver
Moreira DC, Nascimento Junior VS do, Ribatski G, Kandlikar SG. Flow boiling of R1336mzz(Z) in open microchannels with diverging manifold [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/ae51f9a9-52ac-4027-bf7c-cd9370a709ec/PROD_26256_SYSNO_3153030.pdf
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CAMARGO, Italo Leite de et al. Design development of a ceramic DLP 3D printer interating QFD and triz. 2021, Anais.. Rio de Janeiro, RJ: ABCM, 2021. Disponível em: https://repositorio.usp.br/directbitstream/dff664bd-ef75-49f6-9b00-f05206686ee9/OK___trabalho%2001%20-%20Design%20development%20ceramic%20DLP%203D%20Printer%20integrating%20QFD%20and%20TRIZ%20%28COBEM%202021%29_removed.pdf. Acesso em: 05 dez. 2025.
APA
Camargo, I. L. de, Silveira, Z. de C., Erbereli, R., Lovo, J. F. P., & Fortulan, C. A. (2021). Design development of a ceramic DLP 3D printer interating QFD and triz. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/dff664bd-ef75-49f6-9b00-f05206686ee9/OK___trabalho%2001%20-%20Design%20development%20ceramic%20DLP%203D%20Printer%20integrating%20QFD%20and%20TRIZ%20%28COBEM%202021%29_removed.pdf
NLM
Camargo IL de, Silveira Z de C, Erbereli R, Lovo JFP, Fortulan CA. Design development of a ceramic DLP 3D printer interating QFD and triz [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/dff664bd-ef75-49f6-9b00-f05206686ee9/OK___trabalho%2001%20-%20Design%20development%20ceramic%20DLP%203D%20Printer%20integrating%20QFD%20and%20TRIZ%20%28COBEM%202021%29_removed.pdf
Vancouver
Camargo IL de, Silveira Z de C, Erbereli R, Lovo JFP, Fortulan CA. Design development of a ceramic DLP 3D printer interating QFD and triz [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/dff664bd-ef75-49f6-9b00-f05206686ee9/OK___trabalho%2001%20-%20Design%20development%20ceramic%20DLP%203D%20Printer%20integrating%20QFD%20and%20TRIZ%20%28COBEM%202021%29_removed.pdf
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RIBEIRO, Mateus Paranaiba e FREIRE, Lívia Souza e SOUZA, Leandro Franco de. A new direct numerical simulation code of boundary layer flows verified by the method of manufactured solutions. 2021, Anais.. Rio de Janeiro: ABCM, 2021. Disponível em: https://repositorio.usp.br/directbitstream/ee3d7a80-4410-43e7-985f-edc91a70495f/3067079.pdf. Acesso em: 05 dez. 2025.
APA
Ribeiro, M. P., Freire, L. S., & Souza, L. F. de. (2021). A new direct numerical simulation code of boundary layer flows verified by the method of manufactured solutions. In Proceedings. Rio de Janeiro: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/ee3d7a80-4410-43e7-985f-edc91a70495f/3067079.pdf
NLM
Ribeiro MP, Freire LS, Souza LF de. A new direct numerical simulation code of boundary layer flows verified by the method of manufactured solutions [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/ee3d7a80-4410-43e7-985f-edc91a70495f/3067079.pdf
Vancouver
Ribeiro MP, Freire LS, Souza LF de. A new direct numerical simulation code of boundary layer flows verified by the method of manufactured solutions [Internet]. Proceedings. 2021 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/ee3d7a80-4410-43e7-985f-edc91a70495f/3067079.pdf
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FREIRE, Lívia Souza. Large-eddy simulation of turbulent incompressible round jet flow. 2021, Anais.. Rio de Janeiro: ABCM, 2021. Disponível em: https://repositorio.usp.br/directbitstream/78ce25fb-e896-48f5-b263-6c54466e72f4/3067065.pdf. Acesso em: 05 dez. 2025.
APA
Freire, L. S. (2021). Large-eddy simulation of turbulent incompressible round jet flow. In Proceedings. Rio de Janeiro: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/78ce25fb-e896-48f5-b263-6c54466e72f4/3067065.pdf
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BOSSE, Rúbia Mara e BECK, André Teófilo. Simplified finite elements model to represent mass-spring structures in dynamic simulation. 2018, Anais.. Rio de Janeiro, RJ: ABCM, 2018. Disponível em: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0157.PDF. Acesso em: 05 dez. 2025.
APA
Bosse, R. M., & Beck, A. T. (2018). Simplified finite elements model to represent mass-spring structures in dynamic simulation. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0157.PDF
NLM
Bosse RM, Beck AT. Simplified finite elements model to represent mass-spring structures in dynamic simulation [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0157.PDF
Vancouver
Bosse RM, Beck AT. Simplified finite elements model to represent mass-spring structures in dynamic simulation [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0157.PDF
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VIEIRA, Hiparco Lins et al. Failure classification for a 3RRR manipulator using RBF networks. 2018, Anais.. Rio de Janeiro, RJ: ABCM, 2018. Disponível em: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0067.PDF. Acesso em: 05 dez. 2025.
APA
Vieira, H. L., Fontes, J. V. de C., Beck, A. T., & Silva, M. M. da. (2018). Failure classification for a 3RRR manipulator using RBF networks. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0067.PDF
NLM
Vieira HL, Fontes JV de C, Beck AT, Silva MM da. Failure classification for a 3RRR manipulator using RBF networks [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0067.PDF
Vancouver
Vieira HL, Fontes JV de C, Beck AT, Silva MM da. Failure classification for a 3RRR manipulator using RBF networks [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0067.PDF
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SILVA, Gustavo Assis da e CARDOSO, Eduardo Lenz e BECK, André Teófilo. Stress-based robust topology optimization under non-probabilistic uncertainty in applied loads. 2018, Anais.. Rio de Janeiro, RJ: ABCM, 2018. Disponível em: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0041.PDF. Acesso em: 05 dez. 2025.
APA
Silva, G. A. da, Cardoso, E. L., & Beck, A. T. (2018). Stress-based robust topology optimization under non-probabilistic uncertainty in applied loads. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0041.PDF
NLM
Silva GA da, Cardoso EL, Beck AT. Stress-based robust topology optimization under non-probabilistic uncertainty in applied loads [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0041.PDF
Vancouver
Silva GA da, Cardoso EL, Beck AT. Stress-based robust topology optimization under non-probabilistic uncertainty in applied loads [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0041.PDF
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CAMINADA NETTO, Adherbal et al. Petri Net based reliability analysis of thermoelectric plant cooling tower system: effect of operational strategies on system realiability and availability. 2018, Anais.. Rio de Janeiro, RJ: ABCM, 2018. Disponível em: https://www.researchgate.net/profile/Arthur-Melani/publication/324531183_Petri_Net_Based_Reliability_Analysis_of_Thermoelectric_Plant_Cooling_Tower_System_Effects_of_Operational_Strategies_on_System_Reliability_and_Availability/links/5b1c6b9aaca272021cf4758b/Petri-Net-Based-Reliability-Analysis-of-Thermoelectric-Plant-Cooling-Tower-System-Effects-of-Operational-Strategies-on-System-Reliability-and-Availability.pdf. Acesso em: 05 dez. 2025.
APA
Caminada Netto, A., Melani, R. F. H., Murad, C. A., Nabeta, S. I., & Souza, G. F. M. de. (2018). Petri Net based reliability analysis of thermoelectric plant cooling tower system: effect of operational strategies on system realiability and availability. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de https://www.researchgate.net/profile/Arthur-Melani/publication/324531183_Petri_Net_Based_Reliability_Analysis_of_Thermoelectric_Plant_Cooling_Tower_System_Effects_of_Operational_Strategies_on_System_Reliability_and_Availability/links/5b1c6b9aaca272021cf4758b/Petri-Net-Based-Reliability-Analysis-of-Thermoelectric-Plant-Cooling-Tower-System-Effects-of-Operational-Strategies-on-System-Reliability-and-Availability.pdf
NLM
Caminada Netto A, Melani RFH, Murad CA, Nabeta SI, Souza GFM de. Petri Net based reliability analysis of thermoelectric plant cooling tower system: effect of operational strategies on system realiability and availability [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: https://www.researchgate.net/profile/Arthur-Melani/publication/324531183_Petri_Net_Based_Reliability_Analysis_of_Thermoelectric_Plant_Cooling_Tower_System_Effects_of_Operational_Strategies_on_System_Reliability_and_Availability/links/5b1c6b9aaca272021cf4758b/Petri-Net-Based-Reliability-Analysis-of-Thermoelectric-Plant-Cooling-Tower-System-Effects-of-Operational-Strategies-on-System-Reliability-and-Availability.pdf
Vancouver
Caminada Netto A, Melani RFH, Murad CA, Nabeta SI, Souza GFM de. Petri Net based reliability analysis of thermoelectric plant cooling tower system: effect of operational strategies on system realiability and availability [Internet]. Proceedings. 2018 ;[citado 2025 dez. 05 ] Available from: https://www.researchgate.net/profile/Arthur-Melani/publication/324531183_Petri_Net_Based_Reliability_Analysis_of_Thermoelectric_Plant_Cooling_Tower_System_Effects_of_Operational_Strategies_on_System_Reliability_and_Availability/links/5b1c6b9aaca272021cf4758b/Petri-Net-Based-Reliability-Analysis-of-Thermoelectric-Plant-Cooling-Tower-System-Effects-of-Operational-Strategies-on-System-Reliability-and-Availability.pdf
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PEDROSA, Thaís Gomes e BECK, André Teófilo. Progressive collapse on risk topology optimization. 2018, Anais.. Rio de Janeiro, RJ: ABCM, 2018. Disponível em: http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0088.PDF. Acesso em: 05 dez. 2025.
APA
Pedrosa, T. G., & Beck, A. T. (2018). Progressive collapse on risk topology optimization. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de http://icvramisuma2018.org/cd/web/PDF/ICVRAMISUMA2018-0088.PDF
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MONTEIRO, Hugo Leonardo Salomão e TRINDADE, Marcelo Areias. Effect of bit-rock interaction uncertainties on the torsional stability regions of an oil-well drilling system. 2016, Anais.. Rio de Janeiro, RJ: ABCM, 2016. Disponível em: https://repositorio.usp.br/directbitstream/7906f5a3-a34a-4703-89dc-6322d522d014/OK___trabalho%2023%20-%20Effect%20of%20bit-rock%20interaction%20uncertainties%20on%20the%20torsional%20stability%20regions%20of%20an%20oil-well%20drilling%20system.pdf. Acesso em: 05 dez. 2025.
APA
Monteiro, H. L. S., & Trindade, M. A. (2016). Effect of bit-rock interaction uncertainties on the torsional stability regions of an oil-well drilling system. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/7906f5a3-a34a-4703-89dc-6322d522d014/OK___trabalho%2023%20-%20Effect%20of%20bit-rock%20interaction%20uncertainties%20on%20the%20torsional%20stability%20regions%20of%20an%20oil-well%20drilling%20system.pdf
NLM
Monteiro HLS, Trindade MA. Effect of bit-rock interaction uncertainties on the torsional stability regions of an oil-well drilling system [Internet]. Proceedings. 2016 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/7906f5a3-a34a-4703-89dc-6322d522d014/OK___trabalho%2023%20-%20Effect%20of%20bit-rock%20interaction%20uncertainties%20on%20the%20torsional%20stability%20regions%20of%20an%20oil-well%20drilling%20system.pdf
Vancouver
Monteiro HLS, Trindade MA. Effect of bit-rock interaction uncertainties on the torsional stability regions of an oil-well drilling system [Internet]. Proceedings. 2016 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/7906f5a3-a34a-4703-89dc-6322d522d014/OK___trabalho%2023%20-%20Effect%20of%20bit-rock%20interaction%20uncertainties%20on%20the%20torsional%20stability%20regions%20of%20an%20oil-well%20drilling%20system.pdf
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SANTOS, Heinsten Frederich Leal dos e TRINDADE, Marcelo Areias. On the choice of probability density function for the stochastic bonding stiffness of piezoelectric structures. 2016, Anais.. Rio de Janeiro, RJ: ABCM, 2016. Disponível em: https://repositorio.usp.br/directbitstream/b52db29b-adde-4eb6-80fe-fd1d0361c64b/OK___trabalho%2022%20-%20On%20the%20choice%20of%20probability%20density%20function%20for%20the%20stochastic%20bonding%20stiffness%20of%20piezoelectric%20structures.%20%283rd%20International%20Symp%29_removed.pdf. Acesso em: 05 dez. 2025.
APA
Santos, H. F. L. dos, & Trindade, M. A. (2016). On the choice of probability density function for the stochastic bonding stiffness of piezoelectric structures. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/b52db29b-adde-4eb6-80fe-fd1d0361c64b/OK___trabalho%2022%20-%20On%20the%20choice%20of%20probability%20density%20function%20for%20the%20stochastic%20bonding%20stiffness%20of%20piezoelectric%20structures.%20%283rd%20International%20Symp%29_removed.pdf
NLM
Santos HFL dos, Trindade MA. On the choice of probability density function for the stochastic bonding stiffness of piezoelectric structures [Internet]. Proceedings. 2016 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/b52db29b-adde-4eb6-80fe-fd1d0361c64b/OK___trabalho%2022%20-%20On%20the%20choice%20of%20probability%20density%20function%20for%20the%20stochastic%20bonding%20stiffness%20of%20piezoelectric%20structures.%20%283rd%20International%20Symp%29_removed.pdf
Vancouver
Santos HFL dos, Trindade MA. On the choice of probability density function for the stochastic bonding stiffness of piezoelectric structures [Internet]. Proceedings. 2016 ;[citado 2025 dez. 05 ] Available from: https://repositorio.usp.br/directbitstream/b52db29b-adde-4eb6-80fe-fd1d0361c64b/OK___trabalho%2022%20-%20On%20the%20choice%20of%20probability%20density%20function%20for%20the%20stochastic%20bonding%20stiffness%20of%20piezoelectric%20structures.%20%283rd%20International%20Symp%29_removed.pdf
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RODRIGUES, Diego Fernandes et al. Quantification of uncertainties in experimental modal parameters estimation: an industrial case study. 2016, Anais.. Rio de Janeiro, RJ: ABCM, 2016. Disponível em: https://www.researchgate.net/publication/314896258_Quantification_of_Uncertainties_in_Experimental_Modal_Parameters_Estimation_An_Industrial_Case_Study. Acesso em: 05 dez. 2025.
APA
Rodrigues, D. F., Murad, O. R., Trindade, M. A., & Oliveira, L. P. R. de. (2016). Quantification of uncertainties in experimental modal parameters estimation: an industrial case study. In Proceedings. Rio de Janeiro, RJ: ABCM. Recuperado de https://www.researchgate.net/publication/314896258_Quantification_of_Uncertainties_in_Experimental_Modal_Parameters_Estimation_An_Industrial_Case_Study
NLM
Rodrigues DF, Murad OR, Trindade MA, Oliveira LPR de. Quantification of uncertainties in experimental modal parameters estimation: an industrial case study [Internet]. Proceedings. 2016 ;[citado 2025 dez. 05 ] Available from: https://www.researchgate.net/publication/314896258_Quantification_of_Uncertainties_in_Experimental_Modal_Parameters_Estimation_An_Industrial_Case_Study
Vancouver
Rodrigues DF, Murad OR, Trindade MA, Oliveira LPR de. Quantification of uncertainties in experimental modal parameters estimation: an industrial case study [Internet]. Proceedings. 2016 ;[citado 2025 dez. 05 ] Available from: https://www.researchgate.net/publication/314896258_Quantification_of_Uncertainties_in_Experimental_Modal_Parameters_Estimation_An_Industrial_Case_Study
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BECK, André Teófilo et al. Robust, risk and robust risk optimization under uncertainties. 2016, Anais.. Rio de Janeiro, RJ: ABCM, 2016. . Acesso em: 05 dez. 2025.
APA
Beck, A. T., Gomes, W. J. de S., Lopez, R. H., & Miguel, L. F. (2016). Robust, risk and robust risk optimization under uncertainties. In Proceedings. Rio de Janeiro, RJ: ABCM.
NLM
Beck AT, Gomes WJ de S, Lopez RH, Miguel LF. Robust, risk and robust risk optimization under uncertainties. Proceedings. 2016 ;[citado 2025 dez. 05 ]
Vancouver
Beck AT, Gomes WJ de S, Lopez RH, Miguel LF. Robust, risk and robust risk optimization under uncertainties. Proceedings. 2016 ;[citado 2025 dez. 05 ]
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CONSONI, Leonardo José e SANTOS, Wilian Miranda dos e SIQUEIRA, Adriano Almeida Gonçalves. A distributed game system for robotic telerehabilitation. 2015, Anais.. Rio de Janeiro, RJ: ABCM, 2015. Disponível em: https://doi.org/10.20906/CPS/COB-2015-1653. Acesso em: 05 dez. 2025.
APA
Consoni, L. J., Santos, W. M. dos, & Siqueira, A. A. G. (2015). A distributed game system for robotic telerehabilitation. In Proceedings. Rio de Janeiro, RJ: ABCM. doi:10.20906/CPS/COB-2015-1653
NLM
Consoni LJ, Santos WM dos, Siqueira AAG. A distributed game system for robotic telerehabilitation [Internet]. Proceedings. 2015 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.20906/CPS/COB-2015-1653
Vancouver
Consoni LJ, Santos WM dos, Siqueira AAG. A distributed game system for robotic telerehabilitation [Internet]. Proceedings. 2015 ;[citado 2025 dez. 05 ] Available from: https://doi.org/10.20906/CPS/COB-2015-1653
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ABNT
RODRIGUES, Kleber dos Santos e TRINDADE, Marcelo Areias. Modeling and performance analysis of a moving base cantilever beam used in atomic force microscopes. 2015, Anais.. Rio de Janeiro, RJ: ABCM, 2015. . Acesso em: 05 dez. 2025.
APA
Rodrigues, K. dos S., & Trindade, M. A. (2015). Modeling and performance analysis of a moving base cantilever beam used in atomic force microscopes. In Proceedings. Rio de Janeiro, RJ: ABCM.
NLM
Rodrigues K dos S, Trindade MA. Modeling and performance analysis of a moving base cantilever beam used in atomic force microscopes. Proceedings. 2015 ;[citado 2025 dez. 05 ]
Vancouver
Rodrigues K dos S, Trindade MA. Modeling and performance analysis of a moving base cantilever beam used in atomic force microscopes. Proceedings. 2015 ;[citado 2025 dez. 05 ]
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
ÁLVAREZ BRICENO, Ricardo Patricio et al. An experimental analysis on the characteristics of a dynamic structure for the study of multiphase flow-induced vibrations in tube bundles. 2015, Anais.. Rio de Janeiro: ABCM, 2015. Disponível em: https://www.researchgate.net/publication/272785526_An_experimental_analysis_on_the_characteristics_of_a_dynamic_structure_for_the_study_of_multiphase_flow_induced_vibrations_in_tube_bundles. Acesso em: 05 dez. 2025.
APA
Álvarez Briceno, R. P., Kanizawa, F. T., Ribatski, G., & Oliveira, L. P. R. de. (2015). An experimental analysis on the characteristics of a dynamic structure for the study of multiphase flow-induced vibrations in tube bundles. In Proceedings. Rio de Janeiro: ABCM. Recuperado de https://www.researchgate.net/publication/272785526_An_experimental_analysis_on_the_characteristics_of_a_dynamic_structure_for_the_study_of_multiphase_flow_induced_vibrations_in_tube_bundles
NLM
Álvarez Briceno RP, Kanizawa FT, Ribatski G, Oliveira LPR de. An experimental analysis on the characteristics of a dynamic structure for the study of multiphase flow-induced vibrations in tube bundles [Internet]. Proceedings. 2015 ;[citado 2025 dez. 05 ] Available from: https://www.researchgate.net/publication/272785526_An_experimental_analysis_on_the_characteristics_of_a_dynamic_structure_for_the_study_of_multiphase_flow_induced_vibrations_in_tube_bundles
Vancouver
Álvarez Briceno RP, Kanizawa FT, Ribatski G, Oliveira LPR de. An experimental analysis on the characteristics of a dynamic structure for the study of multiphase flow-induced vibrations in tube bundles [Internet]. Proceedings. 2015 ;[citado 2025 dez. 05 ] Available from: https://www.researchgate.net/publication/272785526_An_experimental_analysis_on_the_characteristics_of_a_dynamic_structure_for_the_study_of_multiphase_flow_induced_vibrations_in_tube_bundles