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Theoretical and Computer Modeling of Nonlinear Deformed Piezoelectric Powders
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Jeremiah J. Rushechitsky,
Published/Copyright:
September 1, 2000
Published Online: 2000-09
©2011 by Walter de Gruyter GmbH & Co.
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Articles in the same Issue
- CONTENTS
- New Insights in Boundary-only and Domain-type RBF Methods
- The Influence of a Nonzero Angle of Attack and Gust Loads on the Nonlinear Response of a Typical Airfoil Section with a Control Surface Freeplay
- Theoretical and Computer Modeling of Nonlinear Deformed Piezoelectric Powders
- Modeling of Nonlinear Oil-Film Force Acting on a Journal with Unsteady Motion and Nonlinear Instability Analysis under the Model
- Two-to-One Internal Resonance in Serpentine Belt Drive Systems
- The Stability of Compressible Swirling Flow
- A Nonlinear Theory for Traveling and Spinning, Sagged, Elastic Cables
- Nonlinear Analysis of Unsymmetrically Laminated Moderately Thick Axisymmetric Structures
- Nonlinear Dynamic Response of Axisymmetric Thick Laminated Shallow Spherical Shells
- Fractal Diffusion in a Chemical Space
- Improvement of Newton Iteration Method
- Book Reviews
Articles in the same Issue
- CONTENTS
- New Insights in Boundary-only and Domain-type RBF Methods
- The Influence of a Nonzero Angle of Attack and Gust Loads on the Nonlinear Response of a Typical Airfoil Section with a Control Surface Freeplay
- Theoretical and Computer Modeling of Nonlinear Deformed Piezoelectric Powders
- Modeling of Nonlinear Oil-Film Force Acting on a Journal with Unsteady Motion and Nonlinear Instability Analysis under the Model
- Two-to-One Internal Resonance in Serpentine Belt Drive Systems
- The Stability of Compressible Swirling Flow
- A Nonlinear Theory for Traveling and Spinning, Sagged, Elastic Cables
- Nonlinear Analysis of Unsymmetrically Laminated Moderately Thick Axisymmetric Structures
- Nonlinear Dynamic Response of Axisymmetric Thick Laminated Shallow Spherical Shells
- Fractal Diffusion in a Chemical Space
- Improvement of Newton Iteration Method
- Book Reviews