Introduction to Materials Science & Engineering Fall 2019
39 videos • 26,984 views • by Taylor Sparks
1
Introduction, syllabus, and course philosophy
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2
How atomic bonding drives materials properties
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3
enthalpy vs entropy (no audio!)
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4
Gibbs Free Energy
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5
Using Gibbs free energy to predict reactions
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6
Electrochemistry
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7
Unary phase diagrams and Gibbs phase rule
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8
Binary phase diagrams
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9
Lever rule for phase diagrams
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10
Steel phase diagrams
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11
Midterm 1 Review
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12
Ductile vs Brittle fracture and Griffith Fracture
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13
Fatigue crack growth in materials (Paris Law)
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14
Creep and accelerated testing of materials
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15
Metal crystal structures
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16
ceramic crystal structures
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17
Miller Indices
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18
X-ray Diffraction
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19
Midterm 2 review Materials Science
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20
Introduction to history and structure of polymers
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21
Polymer molecular weight and configurations
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22
Point defects (interstitials and vacancies)
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23
dislocations and other 1D and 2D defects
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24
Mechanical properties
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25
mechanical testing of ceramics/plastics
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26
Introduction to Weibull Modulus and predictive failure analysis
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27
Deformation via dislocation slip
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28
Diffusion
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29
Thermal properties
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30
Homogeneous nucleation
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31
midterm 3 review
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32
Heterogeneous nucleation and Avrami kinetics
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33
How to use TTT diagrams as engineers
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34
Electrical conductivity
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35
Energy bands and electrical conductivity
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36
Electronic devices made possible by p-n junctions
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37
Ferroelectric materials (piezoelectricity & multiferroics)
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38
Final Exam review for Introduction to Materials Science
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39
Materials Science final exam review
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