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Tania Biswas
Tania Biswas
Postdoctoral researcher at Charles University
在 matfyz.cuni.cz 的电子邮件经过验证 - 首页
标题
引用次数
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年份
Maximum principle for some optimal control problems governed by 2D nonlocal Cahn–Hillard–Navier–Stokes equations
T Biswas, S Dharmatti, MT Mohan
Journal of Mathematical Fluid Mechanics 22, 1-42, 2020
122020
Pontryagin maximum principle and second order optimality conditions for optimal control problems governed by 2D nonlocal Cahn–Hilliard–Navier–Stokes equations
T Biswas, S Dharmatti, MT Mohan
Analysis 40 (3), 127-150, 2020
92020
On the stationary nonlocal Cahn–Hilliard–Navier–Stokes system: Existence, uniqueness and exponential stability
T Biswas, S Dharmatti, MT Mohan, LNM Perisetti
Asymptotic Analysis 125 (1-2), 59-99, 2021
72021
Second Order Optimality Conditions for Optimal Control Problems Governed by 2D Nonlocal Cahn Hilliard Navier Stokes Equations
T Biswas, S Dharmatti, MT Mohan
arXiv preprint arXiv:1809.10297, 2018
42018
Control Problems and Invariant Subspaces For Sabra Shell Model of Turbulence
SD Tania Biswas
Evolution Equation and Control Theory 7 (3), 417-445, 2018
2*2018
Interior and H feedback stabilization for sabra shell model of turbulence
T Biswas, S Dharmatti
Mathematical Methods in the Applied Sciences 46 (2), 1852-1883, 2023
12023
Optimal boundary control for the Cahn-Hilliard-Navier-Stokes Equations
M Bag, T Biswas, S Dharmatti
arXiv preprint arXiv:2305.02501, 2023
2023
Cahn-hilliard-navier-stokes Equations With Nonhomogeneous Boundary: Existence, Uniqueness, Regularity
M Bag, T Biswas, S Dharmatti
arXiv preprint arXiv:2206.15040, 2022
2022
Long time dynamics of a phase- field model of prostate cancer growth with chemotherapy and antiangiogenic therapy effects
ER Tania Biswas
Discrete & Continuous Dynamical Systems - B 27 (5), 2455-2469, 2022
2022
Second Order Necessary and Sufficient Condition of Optimality for Optimal Control Problems Governed by 2D Nonlocal Cahn-Hilliard-Navier-Stokes equations
Tania Biswas, Sheetal Dharmatti, Manil T Mohan
Nonlinear Studies 28 (1), 2021
2021
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