New Advances in Materials Technologies : Experimental Characterizations, Theoretical Modeling, and Field Practices

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New Advances in Materials Technologies : Experimental Characterizations, Theoretical Modeling, and Field Practices

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  • 製本 Hardcover:ハードカバー版/ページ数 306 p.
  • 言語 ENG
  • 商品コード 9781774914847
  • DDC分類 620.11

Full Description

This new volume examines the mathematical and experimental methods for advanced engineering materials and structures. It also helps to determine practical applications under a wide range of conditions, helping to set up what is needed to produce a new generation of new materials. The diversity of such mathematical models and experimental methods applied for different types of advanced materials and structures and their behavior is highlighted in this volume.

The subjects covered in this book include geospatial information systems (GIS) and networked sensors modeling, mathematical modeling in fluid and solid mechanics, deformations in a nonlocal isotropic thermoelastic materials, optical properties of solid materials, nanoscale and modern energy materials and devices, smart materials-based E-nose technology, and more.

New Advances in Materials Technologies: Experimental Characterizations, Theoretical Modeling and Field Practices is an essential reference that will be useful for researchers who specialize in advanced materials and structures, experimental mechanics of materials, mathematical modeling, and related fields of applied mathematics. This book is also suitable for post-graduate engineering students who need to have an overview on applied in mechanics of materials.

Contents

PART I: INNOVATIVE MODELS AND PRACTICES FOR ENGINEERING 1. Reclaimed Asphalt Pavement (RAP) Based on Geospatial Information System (GIS) and Networked Sensors Modelling 2. Mathematical Modeling of Rogue Waves in a Multi-Ion Cometary Plasma to Study the Effect of Heavier Ions and Dust 3. Modelling in Fluid Mechanics: Atmospheric Modelling Using Navier Stokes Equation 4. Deformations in a Nonlocal Isotropic Thermoelastic Material with Two Temperatures Due to Ramp Type Heat Source Using Memory Dependent Derivatives 5. Mechanical and Tribological Characteristics of Two-Dimensional (2D) Nanomaterials PART II: ENERGY MATERIALS AND STRUCTURES 6. Conjugated Polymers as Active Layers in Organic Solar Cells 7. Carbon Nanotubes for Hydrogen Storage Applications 8. Inorganic Nanomaterials in Organic Solar Cells: A Renewable Energy Application PART III: SELECTED TOPICS AND CURRENT TRENDS 9. Metal Carbon Mesocomposites Synthesis in Polymeric Matrixes: Uniquely Structured Composites 10. Optical Properties and Applications of Rare Earth Elements in Solid Materials 11. Smart Materials-Based E-Nose Technology: Fundamentals and Emerging Applications

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