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Eleftherios Protopapas
Eleftherios Protopapas
E.DI.P. NTUA
在 math.ntua.gr 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Blood plasma flow past a red blood cell: mathematical modelling and analytical treatment
G Dassios, M Hadjinicolaou, E Protopapas
Mathematical Methods in the Applied Sciences 35 (13), 1547-1563, 2012
192012
Stokes flow applied to the sedimentation of a red blood cell
M Hadjinicolaou, G Kamvyssas, E Protopapas
Quarterly of Applied Mathematics 73 (3), 511-523, 2015
152015
On the R‐semiseparation of the Stokes bi‐stream operator in inverted prolate spheroidal geometry
M Hadjinicolaou, E Protopapas
Mathematical Methods in the Applied Sciences 37 (2), 207-211, 2014
132014
Spectral decomposition of the Stokes flow operators in the inverted prolate spheroidal coordinates
M Hadjinicolaou, E Protopapas
IMA Journal of Applied Mathematics 80 (5), 1475-1491, 2015
92015
Translation of two aggregated low-density lipoproteins within blood plasma: a mathematical model
M Hadjinicolaou, E Protopapas
GeNeDis 2014: Computational Biology and Bioinformatics, 185-192, 2015
82015
A microscale mathematical blood flow model for understanding cardiovascular diseases
M Hadjinicolaou, E Protopapas
GeNeDis 2018: Computational Biology and Bioinformatics, 373-387, 2020
62020
Eigenfunction expansions for the Stokes flow operators in the inverted oblate coordinate system
M Hadjinicolaou, E Protopapas
Mathematical Problems in Engineering 2016 (1), 9049131, 2016
52016
The Kelvin transformation as a tool for analyzing problems in medicine and technology
G Baganis, G Dassios, M Hadjinicolaou, E Protopapas
Mathematical Methods in the Applied Sciences 37 (2), 194-199, 2014
42014
Separability of stokes equations in axisymmetric geometries
M Hadjinicolaou, E Protopapas
Journal of Applied Mathematics and Physics 8 (2), 315-348, 2020
32020
Studying the blood plasma flow past a red blood cell, with the mathematical method of Kelvin's transformation.
PE Hadjinicolaou M.
International Journal of Monitoring and Surveillance Technologies Research …, 2014
22014
Non-Convex Particle-in-Cell Model for the Mathematical Study of the Microscopic Blood Flow
H Maria, E Protopapas
Mathematics 11 (9), 2156, 2023
12023
The effect of using emergency remote teaching on Greek Mathematic classes in secondary education from mathematicians’ perspective
C Kyriazis, E Protopapas, S Stogias
Contemporary Mathematics and Science Education 4 (1), ep23012, 2023
12023
Mathematical Study of the Perturbation of Magnetic Fields Caused by Erythrocytes
M Hadjinicolaou, E Protopapas
Worldwide Congress on “Genetics, Geriatrics and Neurodegenerative Diseases …, 2022
12022
On the Analytical Solution of the Kuwabara-Type Particle-in-Cell Model for the Non-Axisymmetric Spheroidal Stokes Flow via the Papkovich–Neuber Representation
P Vafeas, E Protopapas, M Hadjinicolaou
Symmetry 14 (1), 170, 2022
12022
Qualitative differences between the semi-separable and the “Almansi-Type” stokes stream function expansions in the study of biological fluids
M Hadjinicolaou, E Protopapas
GeNeDis 2020: Computational Biology and Bioinformatics, 259-271, 2021
12021
Necessary and Sufficient Conditions for the Separability and the R-Separability of the Irrotational Stokes Equation and Applications
E Protopapas, M Hadjinicolaou
Journal of Applied Mathematics and Physics 8 (11), 2379, 2020
12020
A mathematical model for studying the Red Blood Cell magnetic susceptibility
E Protopapas, P Vafeas, M Hadjinicolaou
Applied Numerical Mathematics, 2024
2024
Incorrect conclusions drawn for plausible looking diagrams
E Protopapas
2023
Irrotational Stokes flow in three system of coordinates
E Protopapas
arXiv preprint arXiv:2107.08105, 2021
2021
Mathematical models in epidemiology for the secondary education.
PE Kyriazis C.
Euclid C, Hellenic Mathematical Society, 2021
2021
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