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Materials Books

Fundamentals of Engineering Materials

Author: Adebisi

School: Air Force Institute of Technology

Department: Engineering

Course Code: GET212

Topics: material engineering, material science, performance, ceramics, polymers, composites, advanced materials, semiconductors, biomaterials, nanomaterials, thermal property, electrical property, optical property, magnetic property, nanotechnology

strength of materials lecture note

Author: unknown

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG305

Topics: strength of materials

Introduction to engineering materials lecture digest

Author: ENGR U MARK

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG207

Topics: Atomic bonding, classification of materials, atomic packaging and crystal structures, unit cells and lattice points, pyrometallurgy, hydro metallurgy, electrometallurgy

Applied Strength of Materials, 6th Edition

Author: Robert Mott, Joseph Untener

School: Bayero University, Kano

Department: Engineering

Course Code: CIV3308

Topics: Direct Normal stress, stress, strain, Direct shear stress, Screw Threads, Experimental stress analysis, Computational stress analysis, Fundamental of statics, Materials design properties, Properties of steel, Properties of Cast Iron, Properties of Aluminum, Wood, Concrete, Plastics, Composites, Direct stress, Deformation, Computing design stress, Thermal stress, Bearing stress, Design bearing stress, Twisting, Elastic Torsional Deformation, Torsion, Beam loading, Beams supports, Beam types, Supports reactions, Centroids, Complex shapes centroid, Radius of Gyration, section modulus, Flexure formula, General shear formula, Special shear formulas, Shear flow, Beams deflection, combined stress, Columns, Slenderness Ratio, Buckling formula, Pressure vessels, Bolted connections design, Rivet joints, Eccentrically loaded riveted joints, Eccentrically loaded Bolted joints

INTRODUCTION TO ENGINEERING MATERIALS 2 LECTURE DIGEST

Author: ENGR U MARK

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG208

Topics: alloys, tensile strength, conductivity, resistivity, luminescence, semi conductors, corrosion and corrosion control, plastics, composite materials

Engineering materials

Author: AT Oyelami

School: Federal University of Agriculture, Abeokuta

Department: Engineering

Course Code: MCE203

Topics: Engineering materials, metals, ceramic, glasses, polymers, elastomers, atomic structure, atomic bonding, Bohr theory, Quantum Numbers, Wave-Mechanical Model, Crystal Structure, crystal defect, semiconductors, electrical conduction, Intrinsic Semiconduction, Extrinsic Semiconduction, Hot-working Processes, Hot-rolling, forging, drop-forging, Hot-pressing, extrusion, Cold-pressing, Deep-drawing, coining, spinning, Annealing, Normalising, Hardening, Case Hardening, Carburizing, Nitriding, Flame Hardening, Cyaniding, tempering

Strength of materials material

Author: GRANIT CHIKA

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG305

Topics: Tensile stress, Compressive test, Strain, deformation, force, load, shearing forces, bending moments, beam, bending stress, flexural stress, colums, torsion, Strength of materials

Materials science for engineers

Author: MEE FUOYE

School: Federal University, Oye-Ekiti

Department: Engineering

Course Code: MME201

Topics: Materials science, Metallurgy, Metallography, Crystal physics, Neumann’s symmetry principle, Equilibrium thermodynamics, phase diagrams, Gibbs phase rule

Materials Science and Engineering An Introduction,10th edition

Author: William Callister, David Rethwish

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG207, ENG208

Topics: atomic structure, interatomic bonding, crystalline solids, crystals, atomic bonding, diffusion, dislocation, strengthening mechanisms, failure, mechanical properties, phase diagrams, phase transformations, alloy, ceramic, polymer, corrosion, degradation, composites, polymer synthesis, polymer processing, oxidation, electrical properties, magnetic properties, optical properties, thermal properties, unit cell, density computation, Polymorphism, Allotropy, Crystallographic points, Crystallographic directions, polycrystalline materials, anisotropy, X-ray diffraction, plastic deformation, point defects, atomic vibration, fick's law, Stress–Strain Behavior, Anelasticity, fatigue, creep, solubility limit, phase equilibria

Materials Science and Engineering, An Introduction ,8th Edition Solution Manual

Author: William Callister

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG207, ENG208

Topics: atomic structure, interatomic bonding, crystalline solids, crystals, atomic bonding, diffusion, dislocation, strengthening mechanisms, failure, mechanical properties, phase diagrams, phase transformations, alloy, ceramic, polymer, corrosion, degradation, composites, polymer synthesis, polymer processing, oxidation, electrical properties, magnetic properties, optical properties, thermal properties, unit cell, density computation, Polymorphism, Allotropy, Crystallographic points, Crystallographic directions, polycrystalline materials, anisotropy, X-ray diffraction, plastic deformation, point defects, atomic vibration, fick's law, Stress–Strain Behavior, Anelasticity, fatigue, creep, solubility limit, phase equilibria

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