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Veröffentlicht/Copyright:
29. Mai 2025
Published Online: 2025-05-29
Published in Print: 2025-06-26
©2025 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Frontmatter
- Dynamical Systems & Nonlinear Phenomena
- Controlling the convective heat transfer of shear thinning and shear thickening fluids in parallel plates with magnetic force
- Multistability, chaos and hyperchaos in a novel 3D discrete memristive system: microcontroller implementation and cryptography
- Comparative study of thermally intense cilia and non-cilia generated motion of Ellis’s fluid by using MATHEMATICA 14.1
- Fundamental Concepts of Physical Science
- Nonlinear electrodynamics and its possible connection to relativistic superconductivity: instance of a time-dependent system
- Galilean decoherence and quantum measurement
- Solid State Physics & Materials Science
- A dynamically tunable polarization-insensitive broadband vanadium dioxide-assisted absorber for terahertz applications
- Thermodynamics & Statistical Physics
- Heat transfer analysis for the Cattaneo–Cristov heat flux model using integral transform technique with isothermal and isoflux wall conditions
Artikel in diesem Heft
- Frontmatter
- Dynamical Systems & Nonlinear Phenomena
- Controlling the convective heat transfer of shear thinning and shear thickening fluids in parallel plates with magnetic force
- Multistability, chaos and hyperchaos in a novel 3D discrete memristive system: microcontroller implementation and cryptography
- Comparative study of thermally intense cilia and non-cilia generated motion of Ellis’s fluid by using MATHEMATICA 14.1
- Fundamental Concepts of Physical Science
- Nonlinear electrodynamics and its possible connection to relativistic superconductivity: instance of a time-dependent system
- Galilean decoherence and quantum measurement
- Solid State Physics & Materials Science
- A dynamically tunable polarization-insensitive broadband vanadium dioxide-assisted absorber for terahertz applications
- Thermodynamics & Statistical Physics
- Heat transfer analysis for the Cattaneo–Cristov heat flux model using integral transform technique with isothermal and isoflux wall conditions