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The International Congress on Educational Research, Materials Science and Engineering

The International Congress on Educational Research, Materials Science and Engineering

          
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About the Book

The International Congress on Educational Research, Materials Science and Engineering (ICEMSE 2022) is organized by Mohammed First University - Oujda represented by the Laboratory of Materials, Waves, Energy and Environment (LaMOn2E) in collaboration with other partners. The 2022 meeting was held on October 25-27, 2022, at Saïdia, Morocco. The general aim of the conference is to provide an opportunity for researchers and professionals from various fields with cross-disciplinary interests to bridge the knowledge gap, and to serve as a forum for interdisciplinary researchers in different areas related to the interaction between engineering, materials science, and education. The ICEMSE’2022 invited research papers that cover these topics. Throughout this event, a wide range of themes related to educational research, engineering, and materials science innovation were addressed and exposed. These days were animated by professors and researchers emeritus in the fields of conference topics in the form of Oral/Poster contributions, workshops, and round tables.



Table of Contents:
  • Preface
  • Chapter 1: Ceramics
  • Effect of Bi3+ and Fe3+ Ions Substitution on Electrical Response of BaTiO3 Ceramic
  • Structural Refinement, Dielectric and Electromechanical Properties of (1-x)NBT-xKBT Piezoceramics in the Morphotropic Phase Boundary Region
  • Impedance Spectroscopy and Study of Electrical Properties of Pb(Zr0.52Ti0.48)1-xFexO3-x (0≤x≤0.20) Ceramics
  • Effect of Pb0.8La 0.2Ti0.95O3 Doping on the Electrical and Dielectric Properties of CCTO Compound Synthesized by Hybrid Method
  • Chapter 2: Materials and Technologies for Environmental Protection
  • Optimization of WWTP of Dairy Industry
  • Preparation of a Photocatalytic Activated Carbon Based on Almond Shell and Ag-ZnO: Characterization and Application to Organic Effluent Treatment
  • Comparison between the Performance of Combined Treatment of Waste Water Physic-Chemical & Biological and the Direct Activated Sludge Applicated to Dairy Activity
  • Synthesis of an Activated Carbon Based on Cardoon Waste and its Comparison to a Commercial Carbon in Terms of Physicochemical Characterization and Organic Dye Adsorption Performance
  • Experimental Study and Modeling of Drying Kinetics and Evaluation of Thermal Diffusivity of Sewage Sludge
  • Wheat Straw-Derived Activated Carbon for Efficient Removal of Methylene blue: Kinetics, Thermodynamics, and Adsorption Mechanism
  • Chapter 3: Functional and Special Materials
  • Transport Properties Study of ZnSb Compound Using BoltzTrap First-Principles
  • Strong Acousto-Plasmonic Coupling in Film-Coupled Nanoparticles Mediated by Surface Acoustic Waves
  • Theoretical Investigation of Optoelectronics Properties of Titanium Dichalcogenides Materials TiX2 (X=S, Se, Te) Using Quantum Espresso
  • Chapter 4: Low Dimensional Quantum Structures
  • Diamagnetic Susceptibility of a Hemi-Cylindrical Quantum Dot in the Presence of an Off-Center Donor Atom
  • Theoretical Study of Hydrostatic Pressure and Temperature Effect on a Multi-Quantum well ZnO/Zn1-XMgxO Containing a Staircase Defect for Sensing Application
  • Unbound Excitonic Properties in a Multilayered Quantum Dot under Hydrostatic Pressure and Temperature
  • Tuning the Diamagnetic Susceptibility and Electron Average Position in a GaAs Hemi-Spherical Quantum Dot with an Off-Center Donor Atom
  • Binding Energy Stark-Shift, Polarizability and Dipole Moment Response of Shallow Donor Impurity in GaAs Quantum Dots
  • The Effect of a Single Off-Center Shallow Donor Atom on the Binding Energy and Diamagnetic Susceptibility in a GaAs Horn Torus Quantum Dot
  • Donor Atom Properties in 2D Ultra-Thin Cylindrical Quantum Dots
  • Electronic Localized States Behaviour in a GaAs/GaAlAs Multi-Quantum Wells with a Geo-Material and a Material Defects
  • Chapter 5: Solar Energy Engineering
  • Improvement Efficiency of Solar Cells Using III-V Dual Junction: InGap/GaAs
  • Outdoor Experimental Investigation of the Temperature Effect on the Performance of Different PV Modules Materials


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Product Details
  • ISBN-13: 9783036401812
  • Publisher: Trans Tech Publications Ltd
  • Publisher Imprint: Trans Tech Publications Ltd
  • Height: 240 mm
  • No of Pages: 320
  • Weight: 680 gr
  • ISBN-10: 3036401814
  • Publisher Date: 26 Oct 2023
  • Binding: Paperback
  • Language: English
  • Spine Width: 16 mm
  • Width: 170 mm


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