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SILVA, Gustavo A. da e CARDOSO, Eduardo L. Optimum design of robust compliant mechanisms with uncertainties in output stiffness. 2018, Anais.. [New York, NY, USA]: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2018. . Acesso em: 23 out. 2025.
APA
Silva, G. A. da, & Cardoso, E. L. (2018). Optimum design of robust compliant mechanisms with uncertainties in output stiffness. In Proceedings. [New York, NY, USA]: Escola de Engenharia de São Carlos, Universidade de São Paulo.
NLM
Silva GA da, Cardoso EL. Optimum design of robust compliant mechanisms with uncertainties in output stiffness. Proceedings. 2018 ;[citado 2025 out. 23 ]
Vancouver
Silva GA da, Cardoso EL. Optimum design of robust compliant mechanisms with uncertainties in output stiffness. Proceedings. 2018 ;[citado 2025 out. 23 ]
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TRINDADE, Marcelo Areias et al. On controlling, monitoring and harvesting energy from structural vibration using networks of distributed piezoelectric patches. 2018, Anais.. [New York, NY, USA]: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2018. Disponível em: https://repositorio.usp.br/directbitstream/6ab431b5-69e9-459b-9f10-34c9c597bce1/OK___trabalho%2011%20-%20On%20controlling%2C%20monitoring%20and%20harvesting%20energy%20from%20structural%20vibration%20using%20networks%20of%20distributed%20piezoelectric%20patches%20%28WCCM%20XIII%29.pdf. Acesso em: 23 out. 2025.
APA
Trindade, M. A., Quiñones Velásquez, J., Shigueoka, A. H., Cruz Neto, H. J. da, & Horiy, F. M. (2018). On controlling, monitoring and harvesting energy from structural vibration using networks of distributed piezoelectric patches. In Proceedings. [New York, NY, USA]: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/6ab431b5-69e9-459b-9f10-34c9c597bce1/OK___trabalho%2011%20-%20On%20controlling%2C%20monitoring%20and%20harvesting%20energy%20from%20structural%20vibration%20using%20networks%20of%20distributed%20piezoelectric%20patches%20%28WCCM%20XIII%29.pdf
NLM
Trindade MA, Quiñones Velásquez J, Shigueoka AH, Cruz Neto HJ da, Horiy FM. On controlling, monitoring and harvesting energy from structural vibration using networks of distributed piezoelectric patches [Internet]. Proceedings. 2018 ;[citado 2025 out. 23 ] Available from: https://repositorio.usp.br/directbitstream/6ab431b5-69e9-459b-9f10-34c9c597bce1/OK___trabalho%2011%20-%20On%20controlling%2C%20monitoring%20and%20harvesting%20energy%20from%20structural%20vibration%20using%20networks%20of%20distributed%20piezoelectric%20patches%20%28WCCM%20XIII%29.pdf
Vancouver
Trindade MA, Quiñones Velásquez J, Shigueoka AH, Cruz Neto HJ da, Horiy FM. On controlling, monitoring and harvesting energy from structural vibration using networks of distributed piezoelectric patches [Internet]. Proceedings. 2018 ;[citado 2025 out. 23 ] Available from: https://repositorio.usp.br/directbitstream/6ab431b5-69e9-459b-9f10-34c9c597bce1/OK___trabalho%2011%20-%20On%20controlling%2C%20monitoring%20and%20harvesting%20energy%20from%20structural%20vibration%20using%20networks%20of%20distributed%20piezoelectric%20patches%20%28WCCM%20XIII%29.pdf
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RIBEIRO, Marcelo Leite et al. Progressive failure analysis of low energy impact in carbon fiber filament winding cylinders. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher. . Acesso em: 23 out. 2025. , 2014
APA
Ribeiro, M. L., Martins, T. H. P., Angélico, R. A., Vandepitte, D., & Tita, V. (2014). Progressive failure analysis of low energy impact in carbon fiber filament winding cylinders. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher.
NLM
Ribeiro ML, Martins THP, Angélico RA, Vandepitte D, Tita V. Progressive failure analysis of low energy impact in carbon fiber filament winding cylinders. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-17].[citado 2025 out. 23 ]
Vancouver
Ribeiro ML, Martins THP, Angélico RA, Vandepitte D, Tita V. Progressive failure analysis of low energy impact in carbon fiber filament winding cylinders. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-17].[citado 2025 out. 23 ]
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ANGELO, Marcus Vinícius e GALUCIO, A. C. e TITA, Volnei. Development and validation of PFA model for composite aeronautical structures with stress concentrations. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher. . Acesso em: 23 out. 2025. , 2014
APA
Angelo, M. V., Galucio, A. C., & Tita, V. (2014). Development and validation of PFA model for composite aeronautical structures with stress concentrations. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher.
NLM
Angelo MV, Galucio AC, Tita V. Development and validation of PFA model for composite aeronautical structures with stress concentrations. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-10].[citado 2025 out. 23 ]
Vancouver
Angelo MV, Galucio AC, Tita V. Development and validation of PFA model for composite aeronautical structures with stress concentrations. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-10].[citado 2025 out. 23 ]
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SARTORATO, Murilo e MEDEIROS, Ricardo de e TITA, Volnei. A finite element for active composite plates with peizoelectric layers and experimental validation. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher. . Acesso em: 23 out. 2025. , 2014
APA
Sartorato, M., Medeiros, R. de, & Tita, V. (2014). A finite element for active composite plates with peizoelectric layers and experimental validation. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher.
NLM
Sartorato M, Medeiros R de, Tita V. A finite element for active composite plates with peizoelectric layers and experimental validation. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-17].[citado 2025 out. 23 ]
Vancouver
Sartorato M, Medeiros R de, Tita V. A finite element for active composite plates with peizoelectric layers and experimental validation. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-17].[citado 2025 out. 23 ]
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REIS, D. C. et al. Verification of commercial CFD codes using hydrodynamic instability. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher. . Acesso em: 23 out. 2025. , 2014
APA
Reis, D. C., Gennaro, E. M., Simões, L. G. C., & Medeiros, M. A. F. de. (2014). Verification of commercial CFD codes using hydrodynamic instability. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher.
NLM
Reis DC, Gennaro EM, Simões LGC, Medeiros MAF de. Verification of commercial CFD codes using hydrodynamic instability. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-15].[citado 2025 out. 23 ]
Vancouver
Reis DC, Gennaro EM, Simões LGC, Medeiros MAF de. Verification of commercial CFD codes using hydrodynamic instability. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-15].[citado 2025 out. 23 ]
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TRINDADE, Marcelo Areias et al. Passive, active and active-passive vibration control of plate structures using distributed piezoelectric patches. 2014, Anais.. Barcelona, Spain: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2014. Disponível em: https://repositorio.usp.br/directbitstream/d399dcd4-b10a-43ff-8dbf-38b9a56be069/OK___trabalho%2031%20-%20Passive%2C%20active%20and%20active-passive%20vibration%20control%20of%20plate%20structures%20using%20distributed%20piezoelectric%20patches.%20%28WCCM%202014%29%20%281%29.pdf. Acesso em: 23 out. 2025.
APA
Trindade, M. A., Godoy, T. C. de, Pagani Júnior, C. do C., & Santos, H. F. L. dos. (2014). Passive, active and active-passive vibration control of plate structures using distributed piezoelectric patches. In Proceedings. Barcelona, Spain: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/d399dcd4-b10a-43ff-8dbf-38b9a56be069/OK___trabalho%2031%20-%20Passive%2C%20active%20and%20active-passive%20vibration%20control%20of%20plate%20structures%20using%20distributed%20piezoelectric%20patches.%20%28WCCM%202014%29%20%281%29.pdf
NLM
Trindade MA, Godoy TC de, Pagani Júnior C do C, Santos HFL dos. Passive, active and active-passive vibration control of plate structures using distributed piezoelectric patches [Internet]. Proceedings. 2014 ;[citado 2025 out. 23 ] Available from: https://repositorio.usp.br/directbitstream/d399dcd4-b10a-43ff-8dbf-38b9a56be069/OK___trabalho%2031%20-%20Passive%2C%20active%20and%20active-passive%20vibration%20control%20of%20plate%20structures%20using%20distributed%20piezoelectric%20patches.%20%28WCCM%202014%29%20%281%29.pdf
Vancouver
Trindade MA, Godoy TC de, Pagani Júnior C do C, Santos HFL dos. Passive, active and active-passive vibration control of plate structures using distributed piezoelectric patches [Internet]. Proceedings. 2014 ;[citado 2025 out. 23 ] Available from: https://repositorio.usp.br/directbitstream/d399dcd4-b10a-43ff-8dbf-38b9a56be069/OK___trabalho%2031%20-%20Passive%2C%20active%20and%20active-passive%20vibration%20control%20of%20plate%20structures%20using%20distributed%20piezoelectric%20patches.%20%28WCCM%202014%29%20%281%29.pdf
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VILLAR, Millena Martins et al. Numerical simulation of two-phase flows using a hybrid volume of fluid and immersed boundary method. 2014, Anais.. São Paulo: Blucher, 2014. Disponível em: https://doi.org/10.5151/meceng-wccm2012-20186. Acesso em: 23 out. 2025.
APA
Villar, M. M., Pivello, M. R., Sene, A., Silveira Neto, R., & Roma, A. M. (2014). Numerical simulation of two-phase flows using a hybrid volume of fluid and immersed boundary method. In Proceedings. São Paulo: Blucher. doi:10.5151/meceng-wccm2012-20186
NLM
Villar MM, Pivello MR, Sene A, Silveira Neto R, Roma AM. Numerical simulation of two-phase flows using a hybrid volume of fluid and immersed boundary method [Internet]. Proceedings. 2014 ;[citado 2025 out. 23 ] Available from: https://doi.org/10.5151/meceng-wccm2012-20186
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Villar MM, Pivello MR, Sene A, Silveira Neto R, Roma AM. Numerical simulation of two-phase flows using a hybrid volume of fluid and immersed boundary method [Internet]. Proceedings. 2014 ;[citado 2025 out. 23 ] Available from: https://doi.org/10.5151/meceng-wccm2012-20186
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ALMEIDA, Alexandre Simões de et al. Piezo-fiber composite sensor tailoring using genetic algorithm. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher. . Acesso em: 23 out. 2025. , 2014
APA
Almeida, A. S. de, Medeiros, R. de, Ribeiro, M. L., Tita, V., & Marques, F. D. (2014). Piezo-fiber composite sensor tailoring using genetic algorithm. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher.
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Almeida AS de, Medeiros R de, Ribeiro ML, Tita V, Marques FD. Piezo-fiber composite sensor tailoring using genetic algorithm. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): 1-15.[citado 2025 out. 23 ]
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Almeida AS de, Medeiros R de, Ribeiro ML, Tita V, Marques FD. Piezo-fiber composite sensor tailoring using genetic algorithm. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): 1-15.[citado 2025 out. 23 ]
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MORALES, Eduardo Domingo et al. Numerical and experimental study of failure in steel beams under impact conditions. 2014, Anais.. São Paulo: Blucher, 2014. Disponível em: https://repositorio.usp.br/directbitstream/11e42da4-8958-43d8-ae7d-0f9a2a58a682/AlvesM-2014-Numerical%20and%20experimental%20study%20of%20failure%20in%20steel%20beams%20under%20ok.pdf. Acesso em: 23 out. 2025.
APA
Morales, E. D., Yoneda, A. Y., Driemeier, L., Celeghini, R. M. dos S., & Alves, M. (2014). Numerical and experimental study of failure in steel beams under impact conditions. In Proceedings. São Paulo: Blucher. Recuperado de https://repositorio.usp.br/directbitstream/11e42da4-8958-43d8-ae7d-0f9a2a58a682/AlvesM-2014-Numerical%20and%20experimental%20study%20of%20failure%20in%20steel%20beams%20under%20ok.pdf
NLM
Morales ED, Yoneda AY, Driemeier L, Celeghini RM dos S, Alves M. Numerical and experimental study of failure in steel beams under impact conditions [Internet]. Proceedings. 2014 ;[citado 2025 out. 23 ] Available from: https://repositorio.usp.br/directbitstream/11e42da4-8958-43d8-ae7d-0f9a2a58a682/AlvesM-2014-Numerical%20and%20experimental%20study%20of%20failure%20in%20steel%20beams%20under%20ok.pdf
Vancouver
Morales ED, Yoneda AY, Driemeier L, Celeghini RM dos S, Alves M. Numerical and experimental study of failure in steel beams under impact conditions [Internet]. Proceedings. 2014 ;[citado 2025 out. 23 ] Available from: https://repositorio.usp.br/directbitstream/11e42da4-8958-43d8-ae7d-0f9a2a58a682/AlvesM-2014-Numerical%20and%20experimental%20study%20of%20failure%20in%20steel%20beams%20under%20ok.pdf
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RODRÍGUEZ RAMOS, Reinaldo et al. Numerical and analytical approaches for computing efffective elastic properties in composite materials under imperfect contact adherence. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher. . Acesso em: 23 out. 2025. , 2014
APA
Rodríguez Ramos, R., Medeiros, R. de, Guinovart Díaz, R., Bravo-Castillero, J., Otero, J. A., Sabina, F. J., & Tita, V. (2014). Numerical and analytical approaches for computing efffective elastic properties in composite materials under imperfect contact adherence. Blucher Mechanical Engineering Proceedings. São Paulo, SP: Editora Blucher.
NLM
Rodríguez Ramos R, Medeiros R de, Guinovart Díaz R, Bravo-Castillero J, Otero JA, Sabina FJ, Tita V. Numerical and analytical approaches for computing efffective elastic properties in composite materials under imperfect contact adherence. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-21].[citado 2025 out. 23 ]
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Rodríguez Ramos R, Medeiros R de, Guinovart Díaz R, Bravo-Castillero J, Otero JA, Sabina FJ, Tita V. Numerical and analytical approaches for computing efffective elastic properties in composite materials under imperfect contact adherence. Blucher Mechanical Engineering Proceedings. 2014 ; 1( 1): [1-21].[citado 2025 out. 23 ]
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LINS, Rafael Marques e PROENÇA, Sérgio Persival Baroncini. A simple recovery-based error estimator for the stable generalized finite element method (SGFEM). 2014, Anais.. [Barcelona: CIMNE], 2014. . Acesso em: 23 out. 2025.
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Lins, R. M., & Proença, S. P. B. (2014). A simple recovery-based error estimator for the stable generalized finite element method (SGFEM). In Proceedings. [Barcelona: CIMNE].
NLM
Lins RM, Proença SPB. A simple recovery-based error estimator for the stable generalized finite element method (SGFEM). Proceedings. 2014 ;[citado 2025 out. 23 ]
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Lins RM, Proença SPB. A simple recovery-based error estimator for the stable generalized finite element method (SGFEM). Proceedings. 2014 ;[citado 2025 out. 23 ]
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OLIVEIRA, Hugo Luiz e LEONEL, Edson Denner. Boundary element formulations applied to analysis of fracture problems in viscoelastic materials. 2014, Anais.. [Barcelona: CIMNE], 2014. . Acesso em: 23 out. 2025.
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Oliveira, H. L., & Leonel, E. D. (2014). Boundary element formulations applied to analysis of fracture problems in viscoelastic materials. In Proceedings. [Barcelona: CIMNE].
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Oliveira HL, Leonel ED. Boundary element formulations applied to analysis of fracture problems in viscoelastic materials. Proceedings. 2014 ;[citado 2025 out. 23 ]
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Oliveira HL, Leonel ED. Boundary element formulations applied to analysis of fracture problems in viscoelastic materials. Proceedings. 2014 ;[citado 2025 out. 23 ]
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REGINA, Solange e MATIOLI, Luiz Carlos e BECK, André Teófilo. New optimization algorithms for structural reliability analysis. 2012, Anais.. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2012. . Acesso em: 23 out. 2025.
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Regina, S., Matioli, L. C., & Beck, A. T. (2012). New optimization algorithms for structural reliability analysis. In Abstract Book. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo.
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Regina S, Matioli LC, Beck AT. New optimization algorithms for structural reliability analysis. Abstract Book. 2012 ;[citado 2025 out. 23 ]
Vancouver
Regina S, Matioli LC, Beck AT. New optimization algorithms for structural reliability analysis. Abstract Book. 2012 ;[citado 2025 out. 23 ]
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GOMES, Wellison José de Santana e BECK, André Teófilo. Optimization of power line steel towers under uncertainties. 2012, Anais.. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2012. . Acesso em: 23 out. 2025.
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Gomes, W. J. de S., & Beck, A. T. (2012). Optimization of power line steel towers under uncertainties. In Abstract Book. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo.
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Gomes WJ de S, Beck AT. Optimization of power line steel towers under uncertainties. Abstract Book. 2012 ;[citado 2025 out. 23 ]
Vancouver
Gomes WJ de S, Beck AT. Optimization of power line steel towers under uncertainties. Abstract Book. 2012 ;[citado 2025 out. 23 ]
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ROCHA, Fabio e VENTURINI, Wilson Sérgio e CODA, Humberto Breves. A bond-slip model for reinforced domains analysis by the coupling of boundary and finites. 2012, Anais.. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2012. . Acesso em: 23 out. 2025.
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Rocha, F., Venturini, W. S., & Coda, H. B. (2012). A bond-slip model for reinforced domains analysis by the coupling of boundary and finites. In Abstract Book. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo.
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Rocha F, Venturini WS, Coda HB. A bond-slip model for reinforced domains analysis by the coupling of boundary and finites. Abstract Book. 2012 ;[citado 2025 out. 23 ]
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Rocha F, Venturini WS, Coda HB. A bond-slip model for reinforced domains analysis by the coupling of boundary and finites. Abstract Book. 2012 ;[citado 2025 out. 23 ]
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OLIVEIRA, Hugo Luiz e LEONEL, Edson Denner. Cohesive crack propagation analysis using a non-linear boundary element formulation. 2012, Anais.. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2012. . Acesso em: 23 out. 2025.
APA
Oliveira, H. L., & Leonel, E. D. (2012). Cohesive crack propagation analysis using a non-linear boundary element formulation. In . São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo.
NLM
Oliveira HL, Leonel ED. Cohesive crack propagation analysis using a non-linear boundary element formulation. 2012 ;[citado 2025 out. 23 ]
Vancouver
Oliveira HL, Leonel ED. Cohesive crack propagation analysis using a non-linear boundary element formulation. 2012 ;[citado 2025 out. 23 ]
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ABNT
LINS, Rafael Marques e PROENÇA, Sérgio Persival Baroncini. A simple a posteriori error estimator for the generalized finite element method combining superconvergent patch recovery and singular value decomposition techniques. 2012, Anais.. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2012. . Acesso em: 23 out. 2025.
APA
Lins, R. M., & Proença, S. P. B. (2012). A simple a posteriori error estimator for the generalized finite element method combining superconvergent patch recovery and singular value decomposition techniques. In Abstract Book. São Paulo: Escola de Engenharia de São Carlos, Universidade de São Paulo.
NLM
Lins RM, Proença SPB. A simple a posteriori error estimator for the generalized finite element method combining superconvergent patch recovery and singular value decomposition techniques. Abstract Book. 2012 ;[citado 2025 out. 23 ]
Vancouver
Lins RM, Proença SPB. A simple a posteriori error estimator for the generalized finite element method combining superconvergent patch recovery and singular value decomposition techniques. Abstract Book. 2012 ;[citado 2025 out. 23 ]