Biblio Index

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Author Title Type [ Year(Desc)]
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2020
Campagna, R., Bayona, V., & Cuomo, S.. (2020). Using local PHS+poly approximations for Laplace Transform Inversion by Gaver-Stehfest algorithm. Dolomites Research Notes on Approximation, 13(1), 55-64. presented at the 12/2020. doi:10.14658/PUPJ-DRNA-2020-1-7
PDF icon CampagnaBayonaCuomo_2020_UPA.pdf (288.27 KB)
Campagna, R., Bayona, V., & Cuomo, S.. (2020). Using local PHS+poly approximations for Laplace Transform Inversion by Gaver-Stehfest algorithm. Dolomites Research Notes on Approximation, 13(1), 55-64. presented at the 12/2020. doi:10.14658/PUPJ-DRNA-2020-1-7
PDF icon CampagnaBayonaCuomo_2020_UPA.pdf (288.27 KB)
2021
Caratelli, D., Cesarano, C., & Ricci, P. E.. (2021). Computation of the Bell-Laplace transforms. Dolomites Research Notes on Approximation, 14(1), 74-91. presented at the 10-2021. doi:10.14658/pupj-drna-2021-1-7
PDF icon CaratelliCesaranoRicci_2021_BLT.pdf (2.21 MB)
Caratelli, D., Cesarano, C., & Ricci, P. E.. (2021). Computation of the Bell-Laplace transforms. Dolomites Research Notes on Approximation, 14(1), 74-91. presented at the 10-2021. doi:10.14658/pupj-drna-2021-1-7
PDF icon CaratelliCesaranoRicci_2021_BLT.pdf (2.21 MB)
Chatzakou, M., & Sarantopoulos, Y.. (2021). Estimates for polynomial norms on Banach spaces. Dolomites Research Notes on Approximation, 14(3), 40-52. presented at the 12/2021. doi:10.14658/pupj-drna-2021-3-5
PDF icon Chatzakou_Sarantopoulos_MB_2021.pdf.pdf (338.29 KB)
Angeloni, L., Conti, C., De Marchi, S., Francomano, E., & Vinti, G.. (2021). Multivariate Approximation: Theory and Applications 2020. Dolomites Research Notes on Approximation, 14(2), 1-2. presented at the 04/2021. Retrieved from https://drna.padovauniversitypress.it/2021/2/1
PDF icon PrefaceMATA2020.pdf (352.38 KB)
Agarwal, P., Ahsan, S., Akbar, M., Nawaz, R., & Cesarano, C.. (2021). A Reliable Algorithm for solution of Higher Dimensional Nonlinear (1 + 1) and (2 + 1) Dimensional Volterra-Fredholm Integral Equations. Dolomites Research Notes on Approximation, 14(2), 18-25. presented at the 04/2021. doi:10.14658/pupj-drna-2021-2-4
PDF icon CesaranoetalMATA2020.pdf (220.94 KB)
Candito, P., D’Aguì, G., & Livrea, R.. (2021). Two positive solutions for a nonlinear parameter-depending algebraic system. Dolomites Research Notes on Approximation, 14(2), 10-17. presented at the 04/2021. doi:10.14658/pupj-drna-2021-2-3
PDF icon CanditoDaguiLivreaMATA2020.pdf (144.55 KB)
2022
Cavoretto, R., De Rossi, A., & Erb, W.. (2022). GBFPUM - A MATLAB Package for Partition of Unity Based Signal Interpolation and Approximation on Graphs. Dolomites Research Notes on Approximation, 15(2), 25-34. presented at the 10/2022. doi:10.14658/pupj-drna-2022-2-3
PDF icon 03_DRNA_SA2022.pdf (5.05 MB)
Conte, D., & Frasca-Caccia, G.. (2022). A MATLAB code for the computational solution of a phase field model for pitting corrosion. Dolomites Research Notes on Approximation, 15(2), 47-65. presented at the 10/2022. doi:10.14658/pupj-drna-2022-2-5
PDF icon 05_DRNA_SA2022.pdf (583.5 KB)
Cesarano, C., Ramírez, W., & Khan, S.. (2022). A new class of degenerate Apostol-type Hermite polynomials and applications. Dolomites Research Notes on Approximation. presented at the 04/2022, Padova, IT: Padova University Press. doi:10.14658/pupj-drna-2022-1-1
PDF icon CesaranoRamirezKhan_2022_DAH.pdf (225.93 KB)
Çetin, N., Costarelli, D., Natale, M., & Vinti, G.. (2022). Nonlinear multivariate sampling Kantorovich operators: quantitative estimates in functional spaces. Dolomites Research Notes on Approximation, 15(3), 12-25. presented at the 10/2022. doi:10.14658/pupj-drna-2022-3-3
PDF icon 03_cetin.pdf (279.75 KB)
Çetin, N., Costarelli, D., Natale, M., & Vinti, G.. (2022). Nonlinear multivariate sampling Kantorovich operators: quantitative estimates in functional spaces. Dolomites Research Notes on Approximation, 15(3), 12-25. presented at the 10/2022. doi:10.14658/pupj-drna-2022-3-3
PDF icon 03_cetin.pdf (279.75 KB)
Cuomo, S., DeRossi, A., Rizzo, L., & Sica, F.. (2022). Reconstruction of volatility surfaces: a first computational study. Dolomites Research Notes on Approximation, 15(3), 37-48. presented at the 10/2022. doi:10.14658/pupj-drna-2022-3-5
PDF icon 05_cuomo.pdf (1.98 MB)
Caratelli, D., & Ricci, P. E.. (2022). On a set of sine and cosine Fourier transforms of nested functions. Dolomites Research Notes on Approximation, 15(1), 11-19. presented at the 11/2022. doi:10.14658/pupj-drna-2022-1-2
PDF icon CaratelliRicci_2022_FTNF.pdf (11.18 MB)
Cavoretto, R., & De Rossi, A.. (2022). Software for Approximation 2022 (SA2022). Dolomites Research Notes on Approximation, 15(2), I-II. presented at the 10/2022. doi:10.14658/pupj-drna-2022-2-0
PDF icon 00_DRNA_SA2022.pdf (972.15 KB)
Cavoretto, R., De Rossi, A., Lancellotti, S., & Perracchione, E.. (2022). Software Implementation of the Partition of Unity Method. Dolomites Research Notes on Approximation, 15(2), 35-46. presented at the 10/2022. doi:10.14658/pupj-drna-2022-2-4
PDF icon 04_DRNA_SA2022.pdf (655.36 KB)
Chen, M., Ling, L., & Su, Y.. (2022). Solving interpolation problems on surfaces stochastically and greedily. Dolomites Research Notes on Approximation, 15(3), 26-36. presented at the 10/2022. doi:10.14658/pupj-drna-2022-3-4
PDF icon 04_chen.pdf (1.3 MB)
Conte, D., Pagano, G., & Paternoster, B.. (2022). Two classes of linearly implicit numerical methods for stiff problems: analysis and MATLAB software. Dolomites Research Notes on Approximation, 15(2), 66-80. presented at the 10/2022. doi:10.14658/pupj-drna-2022-2-6
PDF icon 06_DRNA_SA2022.pdf (470.3 KB)

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