A unified convergence analysis for local projection stabilisations applied to the Oseen problem G Matthies, P Skrzypacz, L Tobiska ESAIM: Mathematical Modelling and Numerical Analysis 41 (4), 713-742, 2007 | 262 | 2007 |
Stabilization of local projection type applied to convection-diffusion problems with mixed boundary conditions G Matthies, P Skrzypacz, L Tobiska Electronic Transactions on Numerical Analysis 32, 90-105, 2008 | 70 | 2008 |
A Variational Principle for a Nonlinear Oscillator Arising in the Microelectromechanical System JH He, N Anjum, PS Skrzypacz Journal of Applied and Computational Mechanics 7 (1), 78-83, 2021 | 47 | 2021 |
Analysis of dynamic pull-in voltage of a graphene MEMS model P Skrzypacz, S Kadyrov, D Nurakhmetov, D Wei Nonlinear Analysis: Real World Applications 45, 581-589, 2019 | 45 | 2019 |
Dynamic pull-in for micro–electromechanical device with a current-carrying conductor JH He, D Nurakhmetov, P Skrzypacz, D Wei Journal of Low Frequency Noise, Vibration and Active Control 40 (2), 1059-1066, 2021 | 41 | 2021 |
Approximate periodic solutions to microelectromechanical system oscillator subject to magnetostatic excitation JH He, PS Skrzypacz, Y Zhang, J Pang Mathematical Methods in the Applied Sciences, 2020 | 25 | 2020 |
Dynamic pull-in and oscillations of current-carrying filaments in magnetic micro-electro-mechanical system P Skrzypacz, G Ellis, JH He, CH He Communications in Nonlinear Science and Numerical Simulation 109, 106350, 2022 | 22 | 2022 |
Generalized stiffness and effective mass coefficients for power-law Euler–Bernoulli beams P Skrzypacz, D Nurakhmetov, D Wei Acta Mechanica Sinica 36, 160-175, 2020 | 20 | 2020 |
Application of image processing in evaluation of hydraulic fracturing with liquid nitrogen: A case study of coal samples from Karaganda Basin SN Longinos, AH Abbas, A Bolatov, P Skrzypacz, R Hazlett Applied Sciences 13 (13), 7861, 2023 | 14 | 2023 |
A simple approximation of periodic solutions to microelectromechanical system model of oscillating parallel plate capacitor P Skrzypacz, JH He, G Ellis, M Kuanyshbay Mathematical Methods in the Applied Sciences, 2020 | 14 | 2020 |
Superconvergence of a 3D finite element method for stationary Stokes and Navier‐Stokes problems G Matthies, P Skrzypacz, L Tobiska Numerical Methods for Partial Differential Equations: An International …, 2005 | 14 | 2005 |
Dead-core solutions for slightly non-isothermal diffusion-reaction problems with power-law kinetics B Golman, VV Andreev, P Skrzypacz Applied Mathematical Modelling 83, 576-589, 2020 | 13 | 2020 |
Dead-core and non-dead-core solutions to diffusion-reaction problems for catalyst pellets with external mass transfer P Skrzypacz, VV Andreev, B Golman Chemical Engineering Journal 385, 123927, 2020 | 12 | 2020 |
Solvability of the Brinkman‐Forchheimer‐Darcy Equation P Skrzypacz, D Wei Journal of Applied Mathematics 2017 (1), 7305230, 2017 | 12 | 2017 |
The formation of dead zones in nonisothermal porous catalyst with temperature‐dependent diffusion coefficient VV Andreev, P Skrzypacz, B Golman International Journal of Chemical Kinetics 51 (9), 711-722, 2019 | 11 | 2019 |
On the application of Sturm's theorem to analysis of dynamic pull-in for a graphene-based MEMS model D Omarov, D Nurakhmetov, D Wei, P Skrzypacz Applied and computational mechanics 12 (1), 2018 | 10 | 2018 |
Analysis of dynamic pull-in voltage and response time for a micro-electro-mechanical oscillator made of power-law materials P Skrzypacz, D Wei, D Nurakhmetov, EG Kostsov, AA Sokolov, ... Nonlinear Dynamics 105, 227-240, 2021 | 8 | 2021 |
A local projection stabilization method with shock capturing and diagonal mass matrix for solving non-stationary transport dominated problems F Schieweck, P Skrzypacz Computational Methods in Applied Mathematics 12 (2), 221-240, 2012 | 8 | 2012 |
Numerical simulations of dead zone formation in the catalytic flow-through membrane reactor P Skrzypacz, N Chalkarova, B Golman, V Andreev, F Schieweck Computers & Chemical Engineering 152, 107368, 2021 | 7 | 2021 |
Diffraction of light revisited M Kunik, P Skrzypacz Mathematical methods in the applied sciences 31 (7), 793-820, 2008 | 6 | 2008 |