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Jesus Vellojin
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2020 – today
- 2025
- [j6]Dibyendu Adak, Gianmarco Manzini, Jesus Vellojin:
Nonconforming virtual element method for the Schrödinger eigenvalue problem. Comput. Math. Appl. 182: 213-235 (2025) - 2024
- [j5]Felipe Lepe
, David Mora
, Jesus Vellojin:
Discontinuous Galerkin methods for the acoustic vibration problem. J. Comput. Appl. Math. 441: 115700 (2024) - [i15]Arbaz Khan, David Mora, Ricardo Ruiz-Baier, Jesus Vellojin:
Divergence conforming finite element methods for flow-transport coupling with osmotic effects. CoRR abs/2402.01451 (2024) - [i14]Arbaz Khan, Felipe Lepe, Jesus Vellojin:
Interior penalty discontinuous Galerkin methods for the nearly incompressible elasticity eigenvalue problem with heterogeneous media. CoRR abs/2402.17711 (2024) - [i13]David Mora, Jesus Vellojin, Nitesh Verma:
Nitsche stabilized Virtual element approximations for a Brinkman problem with mixed boundary conditions. CoRR abs/2406.07724 (2024) - [i12]Felipe Lepe, Gonzalo Rivera, Jesus Vellojin:
A Mixed finite element method for the velocity-pseudostress formulation of the Oseen eigenvalue problem. CoRR abs/2409.17314 (2024) - 2023
- [j4]Felipe Lepe, Gonzalo Rivera
, Jesus Vellojin
:
Error estimates for a vorticity-based velocity-stress formulation of the Stokes eigenvalue problem. J. Comput. Appl. Math. 420: 114798 (2023) - [i11]Felipe Lepe, Jesus Vellojin:
A posteriori analysis for a mixed formulation of the Stokes spectral problem. CoRR abs/2310.13169 (2023) - [i10]Felipe Lepe, Gonzalo Rivera, Jesus Vellojin:
Finite Element Analysis of the Oseen eigenvalue problem. CoRR abs/2311.05321 (2023) - [i9]Arbaz Khan, Felipe Lepe, David Mora, Jesus Vellojin:
Finite element analysis of the nearly incompressible linear elasticity eigenvalue problem with variable coefficients. CoRR abs/2312.10715 (2023) - 2022
- [j3]Felipe Lepe, Gonzalo Rivera
, Jesus Vellojin
:
A Posteriori Analysis for a Mixed FEM Discretization of the Linear Elasticity Spectral Problem. J. Sci. Comput. 93(1): 10 (2022) - [j2]Felipe Lepe
, Gonzalo Rivera
, Jesus Vellojin
:
Mixed Methods for the Velocity-Pressure-Pseudostress Formulation of the Stokes Eigenvalue Problem. SIAM J. Sci. Comput. 44(3): 1358- (2022) - [i8]Felipe Lepe, Gonzalo Rivera, Jesús Vellojín:
A posteriori analysis for a mixed FEM discretization of the linear elasticity spectral problem. CoRR abs/2201.03658 (2022) - [i7]Felipe Lepe, Gonzalo Rivera, Jesus Vellojin:
Error estimates for a vorticity-based velocity-stress formulation of the Stokes eigenvalue problem. CoRR abs/2203.00788 (2022) - [i6]Felipe Lepe, Gonzalo Rivera, Jesus Vellojin:
Finite element analysis for the Navier-Lamé eigenvalue problem. CoRR abs/2209.11825 (2022) - [i5]Felipe Lepe, David Mora, Jesus Vellojin:
Discontinuous Galerkin methods for the acoustic vibration problem. CoRR abs/2212.04028 (2022) - [i4]Nicolás Carro, David Mora, Jesus Vellojin:
A finite element model for concentration polarization and osmotic effects in a membrane channel. CoRR abs/2212.08140 (2022) - 2021
- [j1]Erwin Hernández, Jesus Vellojin
:
A locking-free finite element formulation for a non-uniform linear viscoelastic Timoshenko beam. Comput. Math. Appl. 99: 305-322 (2021) - [i3]Erwin Hernández, Felipe Lepe, Jesus Vellojin:
Analysis of an abstract mixed formulation for viscoelastic problems. CoRR abs/2101.03417 (2021) - [i2]Felipe Lepe, Gonzalo Rivera, Jesus Vellojin:
Mixed methods for the velocity-pressure-pseudostress formulation of the Stokes eigenvalue problem. CoRR abs/2103.03463 (2021) - 2020
- [i1]Erwin Hernández, Felipe Lepe, Jesus Vellojin:
A mixed parameter formulation with applications to linear viscoelasticity. CoRR abs/2011.10636 (2020)
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