Marinca, Vasile.
Overview
Works: | 0 works in 1 publications in 1 languages |
---|
Titles
Acoustics and Vibration of Mechanical Structures—AVMS 2019 = Proceedings of the 15th AVMS, Timisoara, Romania, May 30–31, 2019 /
by:
SpringerLink (Online service); Herisanu, Nicolae.; Marinca, Vasile.
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/edt]
The Optimal Homotopy Asymptotic Method = Engineering Applications /
by:
Marinca, Vasile.; Herisanu, Nicolae.; SpringerLink (Online service)
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/aut]
Acoustics and Vibration of Mechanical Structures—AVMS-2017 = Proceedings of the 14th AVMS Conference, Timisoara, Romania, May 25–26, 2017 /
by:
SpringerLink (Online service); Herisanu, Nicolae.; Marinca, Vasile.
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/edt]
Acoustics and Vibration of Mechanical Structures – AVMS-2021 = Proceedings of the 16th AVMS, Timişoara, Romania, May 28-29, 2021 /
by:
SpringerLink (Online service); Marinca, Vasile.; Herisanu, Nicolae.
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/edt]
Nonlinear dynamical systems in engineering = some approximate approaches /
by:
Herisanu, Nicolae.; Marinca, Vasile.; SpringerLink (Online service)
(Language materials, printed)
Optimal Auxiliary Functions Method for Nonlinear Dynamical Systems
by:
Marinca, Vasile.; Marinca, Bogdan.; Herisanu, Nicolae.; SpringerLink (Online service)
(Language materials, printed)
, [http://id.loc.gov/vocabulary/relators/aut]
Subjects
Fluid mechanics.
Nonlinear systems
Computer mathematics.
Mathematical Methods in Physics.
Multibody Systems and Mechanical Vibrations.
Acoustical engineering.
Surfaces and Interfaces, Thin Films.
Mechanics.
Mechanics, Applied.
Complexity.
Computational Physics and Simulations.
Econophysics.
Computational Mathematics and Numerical Analysis.
Vibration, Dynamical Systems, Control.
Numerical and Computational Physics, Simulation.
Engineering Fluid Dynamics.
Sociophysics.
Engineering.
Physics.
Dynamical systems.
Thin films.
Thermodynamics.
Noise control.
Materials—Surfaces.
Vibration.
Acoustics.
Analysis (Mathematics).
Multibody systems.
Noise Control.
Mathematical physics.
Dynamics
Computer simulation.
Materials Science, general.
Engineering Acoustics.
Analysis.
Theoretical and Applied Mechanics.
Mathematical analysis.
Nonlinear Dynamics.
Materials science.
Data-driven Science, Modeling and Theory Building.
Dynamics.