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Awrejcewicz, Jan.

Overview
Works: 1 works in 10 publications in 1 languages
Titles
Dynamical systems = heoretical and experimental analysis: Lodz, Poland, December 7-10, 2015 / by: Awrejcewicz, Jan.; Workshop on the Preservation of Stability under Discretization ((2001 :); SpringerLink (Online service) (Language materials, printed)
Dynamical Systems = modelling : Lodz, Poland, December 7-10, 2015 / by: Workshop on the Preservation of Stability under Discretization ((2001 :); SpringerLink (Online service); Awrejcewicz, Jan. (Language materials, printed)
Dynamical systems in applications = Lodz, Poland December 11-14, 2017 / by: Awrejcewicz, Jan.; SpringerLink (Online service) (Language materials, printed)
Mechatronics = ideas for industrial application / by: SpringerLink (Online service); Awrejcewicz, Jan. (Language materials, printed)
Dynamical systems in theoretical perspective = Lodz, Poland December 11 -14, 2017 / by: Awrejcewicz, Jan.; SpringerLink (Online service) (Language materials, printed)
Mathematical Models of Higher Orders = Shells in Temperature Fields / by: SpringerLink (Online service); Kirichenko, Valeriy F.; Krysko, Anton V.; Krysko, Vadim A.; Awrejcewicz, Jan.; Zhigalov, Maxim V. (Language materials, printed) , [http://id.loc.gov/vocabulary/relators/aut]
Perspectives in Dynamical Systems II: Mathematical and Numerical Approaches = DSTA, Łódź, Poland December 2–5, 2019 / by: SpringerLink (Online service); Awrejcewicz, Jan. (Language materials, printed) , [http://id.loc.gov/vocabulary/relators/edt]
Mechatronics = ideas, challenges, solutions and applications / by: SpringerLink (Online service); Awrejcewicz, Jan. (Language materials, printed)
Nonlinear Dynamics of a Wheeled Vehicle by: SpringerLink (Online service); Andrzejewski, Ryszard.; Awrejcewicz, Jan. (Language materials, printed)
Perspectives in Dynamical Systems III: Control and Stability = DSTA, Łódź, Poland December 2–5, 2019 / by: Awrejcewicz, Jan.; SpringerLink (Online service) (Language materials, printed) , [http://id.loc.gov/vocabulary/relators/edt]
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Subjects
Computer mathematics. Numerical analysis. Dynamical Systems. Mathematical Physics. Ergodic theory Difference and Functional Equations. System theory. Physics. Contact mechanics. Dynamical systems. Mathematical Modeling and Industrial Mathematics. Measure theory. Robotics and Automation. Numerical Analysis. Mechanical engineering. Analysis. Mathematical analysis. Materials science. Contact mechanics Operational calculus. Applications of Nonlinear Dynamics and Chaos Theory. Measure and Integration. Integral transforms. Partial Differential Equations. Vibration, Dynamical Systems, Control. Differential equations. Computational Intelligence. Engineering. Robotics. Functional equations. Appl.Mathematics/Computational Methods of Engineering. Engineering Design. Dynamical Systems and Ergodic Theory. Statistical physics. Integral Transforms, Operational Calculus. Automation. Structural analysis (Engineering) Mechanical wear. Dynamics Mechatronics. Characterization and Evaluation of Materials. Integral Equations. Ergodic theory. Approximation theory. Ordinary Differential Equations. Motor vehicles Materials Science, general. Shells (Engineering) Mechanical Engineering. Computational Science and Engineering. Statics. Automotive and Aerospace Engineering, Traffic. Electronic books. Difference equations. Complexity. Mathematics. Physical measurements. Thermoelasticity. Mathematical models. Vibration. Chaotic behavior in systems. Approximations and Expansions. Measurement   . Structural Mechanics. Dynamics. Functional Analysis. Solid Mechanics. Thermoelastic stress analysis. Kinematics. Mechanics. Mechanics, Applied. Integral equations. Numerical and Computational Physics, Simulation. Measurement Science and Instrumentation. Functional analysis. Inertia (Mechanics) Biomechanics. Systems Theory, Control. Partial differential equations. Theoretical and Applied Mechanics. Girders
 
 
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