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Callister - An introduction - 8th edition

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I16 • Index<br />

Polypropylene, (Continued)<br />

melting and glass transition<br />

temperatures, 593, A40<br />

plane strain fracture toughness, A17<br />

recycle code and products, 880<br />

repeat unit structure, 539, A38<br />

thermal properties, 785<br />

trade names, characteristics, and<br />

applications, 597<br />

Polystyrene:<br />

degradation resistance, 708<br />

density, A6<br />

dielectric properties, 758<br />

electrical conductivity, 755<br />

fatigue behavior, 580<br />

index of refraction, 848<br />

mechanical properties, 572<br />

melting and glass transition<br />

temperatures, 593, A40<br />

plane strain fracture toughness,<br />

246, A17<br />

repeat unit structure, 539, A39<br />

thermal properties, 785<br />

trade names, characteristics, and<br />

applications, 597<br />

viscoelastic behavior, 576–577<br />

Polytetrafluoroethylene, 538, 539<br />

degradation resistance, 708<br />

density, 567, A6<br />

dielectric constant and dielectric<br />

strength, 758<br />

electrical conductivity, 755<br />

fatigue behavior, 580<br />

index of refraction, 848<br />

mechanical properties, 572<br />

melting and glass transition<br />

temperatures, 593, A40<br />

repeat unit structure, 539, A39<br />

thermal properties, 785<br />

Poly(vinyl acetate), repeat unit<br />

structure, A39<br />

Poly(vinyl alcohol), repeat unit<br />

structure, A39<br />

Poly(vinyl chloride):<br />

density, A6<br />

mechanical properties, 572<br />

melting and glass transition<br />

temperatures, 593, A40<br />

recycle code and products, 880<br />

repeat unit structure, 538, 539, A40<br />

Poly(vinyl fluoride):<br />

melting and glass transition<br />

temperatures, A40<br />

repeat unit structure, A39<br />

Poly(vinylidene chloride):<br />

melting and glass transition<br />

temperatures, A40<br />

repeat unit structure, A39<br />

Poly(vinylidene fluoride):<br />

glass transition temperature, A40<br />

repeat unit structure, A39<br />

Porcelain, 501, 519<br />

dielectric constant and dielectric<br />

strength, 758<br />

electrical conductivity, 755<br />

microstructure, 522<br />

Porosity:<br />

ceramics, 489–490<br />

formation during sintering,<br />

524–525<br />

influence on flexural strength,<br />

ceramics, 489–490<br />

influence on modulus of elasticity,<br />

ceramics, 489<br />

influence on thermal conductivity,<br />

791<br />

optical translucency and opacity,<br />

854–855<br />

refractory ceramics, 506<br />

Portland cement, 508–509<br />

Portland cement concrete, 632–633<br />

Posttensioned concrete, 633<br />

Potassium chloride, 42<br />

Potassium niobate, 512<br />

Powder metallurgy, 420, G9<br />

Powder pressing, ceramics,<br />

523–525<br />

Powder x-ray diffraction techniques,<br />

77–78<br />

Precipitation-hardenable stainless<br />

steels, 398<br />

Precipitation hardening, 436–442,<br />

G10<br />

heat treatments, 437–438<br />

mechanism, 439–442<br />

Prepreg production processes,<br />

658–659, G10<br />

Pressing:<br />

ceramics, powdered, 523–525<br />

glass, 515<br />

Prestressed concrete, 633, G10<br />

Primary bonds, 30–34, G10<br />

Primary creep, 265, 266<br />

Primary phase, 308, G10<br />

Principal quantum number, 23<br />

Principle of combined action,<br />

628, G10<br />

Process annealing, 422–423, G10<br />

Processing, materials, 3. See also<br />

Processing/structure/properties/<br />

performance correlations<br />

Processing/structure/properties/<br />

performance correlations:<br />

glass-ceramics, 45, 83, 452, 494–495,<br />

502, 529<br />

summary, 529<br />

<strong>introduction</strong>, 14–16<br />

polymer fibers, 19, 40, 533, 564,<br />

570, 619<br />

summary, 620<br />

silicon semiconductors, 19, 40, 91,<br />

117, 123, 144, 720, 772–773<br />

summary, 773<br />

steels (iron-carbon alloys), 45, 83,<br />

91, 117, 123, 144, 151, 187, 198,<br />

228–229, 282, 334, 343,<br />

384–385, 392, 445<br />

summary, 446<br />

topic timelines, 15–16<br />

Proeutectoid cementite, 327, G10<br />

Proeutectoid ferrite, 325, G10<br />

Propane, 535<br />

Properties, G10. See also Processing/<br />

structure/properties/performance<br />

correlations<br />

categories of, 3<br />

Proportional limit, 163, G10<br />

Predeposition step (diffusion in<br />

semiconductors), 138<br />

Protons, 19–20<br />

PTFE, see Polytetrafluoroethylene<br />

p-Type semiconductors, 738–739, G10<br />

Pultrusion, 657–658<br />

Pyrex glass:<br />

composition, 503<br />

density, A5<br />

electrical resistivity, A28<br />

index of refraction, 848<br />

joined to low-expansion alloys, 788<br />

mechanical properties, A8, A10,<br />

A14<br />

plane strain fracture toughness,<br />

A16<br />

thermal properties, 785, A19<br />

thermal shock, 794<br />

PyroCeram:<br />

composition, 503<br />

density, A5<br />

electrical resistivity, A28<br />

flexural strength, 486<br />

modulus of elasticity, 486<br />

plane strain fracture<br />

toughness, A16<br />

Poisson’s ratio, A10<br />

thermal properties, 785<br />

Q<br />

Quantum mechanics, 20, G10<br />

Quantum numbers, 22–23, G10<br />

magnetic, 23, 805<br />

Quartz, 464, 501, 519, 522<br />

grains, 501<br />

index of refraction, 848<br />

as piezoelectric material, 767

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