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Igor Gaissinski

    Topics in Extrinsic Geometry of Codimension-One Foliations
    Modeling of Curves and Surfaces with MATLAB®
    Non-linear models in Mechanics: Instabilities and Turbulence
    Modeling in Fluid Mechanics
    • Modeling in Fluid Mechanics

      Instabilities and Turbulence

      • 512 páginas
      • 18 horas de lectura

      Focused on fluid mechanics modeling, this volume is structured into four chapters that include numerous exercises complete with solutions. It offers comprehensive references for further exploration of relevant topics, enhancing the reader's understanding and application of the material.

      Modeling in Fluid Mechanics
    • Non-linear models in Mechanics: Instabilities and Turbulence

      Mathematical Methods and Applications

      • 700 páginas
      • 25 horas de lectura

      Exploring nonlinear phenomena and instabilities, this book offers a comprehensive approach across various scientific fields. It begins with foundational topics in analysis and progresses through essential and advanced methods of ordinary differential equations, including visualization techniques like attractors and chaos. Subsequent chapters delve into perturbation theory, turbulence, and significant hydrodynamic instabilities. Rich in theoretical insights and practical examples, it serves as a valuable resource for students and professionals in mathematics, physics, chemistry, biology, and engineering.

      Non-linear models in Mechanics: Instabilities and Turbulence
    • This text on geometry is devoted to various central geometrical topics including: graphs of functions, transformations, (non-)Euclidean geometries, curves and surfaces as well as their applications in a variety of disciplines. This book presents elementary methods for analytical modeling and demonstrates the potential for symbolic computational tools to support the development of analytical solutions. The author systematically examines several powerful tools of MATLAB® including 2D and 3D animation of geometric images with shadows and colors and transformations using matrices. With over 150 stimulating exercises and problems, this text integrates traditional differential and non-Euclidean geometries with more current computer systems in a practical and user-friendly format. This text is an excellent classroom resource or self-study reference for undergraduate students in a variety of disciplines.

      Modeling of Curves and Surfaces with MATLAB®
    • Extrinsic geometry describes those properties of foliations on Riemannian manifolds which can be expressed in terms of the second fundamental form of the leaves. The central topic of this book is Extrinsic Geometric Flow (EGF) on foliated manifolds.

      Topics in Extrinsic Geometry of Codimension-One Foliations