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178 Cards in this Set
- Front
- Back
Atomic mass unit (amu)
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Atomic number
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Atomic weight
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Bonding energy
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Coulombic force
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Covalent bond
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Dipole (electric)
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Electron state
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Electronegative
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Electropositive
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Hydrogen bond
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Ionic bond
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Metallic bond
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Mole
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Molecule
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Periodic table
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Polar molecule
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Primary bonding
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Secondary bonding
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Valence electron
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Allotropy
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Amorphous
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Anisotropy
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Atomic packing factor (APF)
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Body-centered cubic (BCC)
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Coordination number
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Crystal structure
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Crystalline
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Face-centered cubic (FCC)
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Grain
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Grain boundary
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Hexagonal close-packed (HCP)
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Isotropic
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Lattice parameter
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Non-crystalline
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Polycrystalline
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Polymorphism
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Single crystal
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Unit cell
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Alloy
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Atom percent
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Atomic vibration
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Atomic mass unit (amu)
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Atomic number
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Atomic weight
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Bonding energy
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Coulombic force
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Covalent bond
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Dipole (electric)
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Electron state
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Electronegative
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Electropositive
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Hydrogen bond
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Ionic bond
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Metallic bond
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Mole
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Molecule
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Periodic table
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Polar molecule
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Primary bonding
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Secondary bonding
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Valence electron
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Allotropy
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Amorphous
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Anisotropy
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Atomic packing factor (APF)
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Body-centered cubic (BCC)
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Coordination number
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Crystal structure
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Crystalline
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Face-centered cubic (FCC)
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Grain
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Grain boundary
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Hexagonal close-packed (HCP)
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Isotropic
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Lattice parameter
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Non-crystalline
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Polycrystalline
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Polymorphism
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Single crystal
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Unit cell
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Alloy
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Atom percent
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Atomic vibration
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Boltzmann’s constant
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Burgers vector
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Composition
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Dislocation line
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Edge dislocation
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Grain size
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Imperfection
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Interstitial solid solution
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Microstructure
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Point defect
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Screw dislocation
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Self-Interstitial
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Solid solution
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Solute
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Solvent
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Substitutional solid solution
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Vacancy
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Weight percent
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Activation energy
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Concentration gradient
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Diffusion
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Diffusion coefficient
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Diffusion flux
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Driving force
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Fick’s first and second laws
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Interdiffusion
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Interstitial diffusion
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Self-diffusion
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Steady-state diffusion
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Vacancy diffusion
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Anelasticity
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Ductility
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Elastic deformation
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Elastic recovery
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Engineering strain
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Engineering stress
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Hardness
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Modulus of elasticity
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Plastic deformation
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Poisson’s ratio
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Proportional limit
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Shear
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Tensile strength
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Toughness
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Yielding
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Yield strength
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Cold working
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Critical resolved shear stress
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Dislocation density
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Grain growth
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The growth of grain size with temperature can occur in all polycrystalline materials. It occurs by migration of atoms at grain boundaries by diffusion, thus grain growth is faster at higher temperatures. The "driving force" is the reduction of energy, which is proportional to the total area. Big grains grow at the expense of the small ones.
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Lattice strain
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Recovery
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Recrystallization
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Recrystallization temperature
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Resolved shear stress
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Slip
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Slip system
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Strain hardening
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Solid-solution strengthening
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Austenite
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Cementite
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Component
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Congruent transformation
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Equilibrium
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Eutectic phase
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Eutectic reaction
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Eutectic structure
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Eutectoid reaction
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Ferrite
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Free energy
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Hypereutectoid alloy
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Hypoeutectoid alloy
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Intermediate solid solution
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Intermetallic compound
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Invariant point
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Isomorphous
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Lever rule
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Liquidus line
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Metastable
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Microconstituent
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Pearlite
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Peritectic reaction
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Phase
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Phase diagram
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Phase equilibrium
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Primary phase
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Proeutectoid cementite
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Proeutectoid ferrite
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Solidus line
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Solubility limit
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Solvus line
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System
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Terminal solid solution
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Tie line
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