return to library home
return to buffalo.edu
  • Find Library Materials
  • My Accounts
  • Get Help
  • Libraries & Collections
  • About Us
  • Ask A Librarian
Articles+ (Multi-Search) BISON Catalog Electronic Journals Course Reserves Databases Forms A-Z Resources by Subject
My Library Card ILLiad Requests
Help A - Z Research Tips Instructional Services Faculty Support Student Support Alumni & Visitor Support Endnote Software
Arts & Sciences Libraries Health Sciences Library Law Library Music Library Special Collections Digital Library Center Libraries Annex
Contact Us Hours/Floor Plans Policies & Services Staff Directory Library Administration Events & Workshops Library Exhibits Employment Support Our Libraries
chatInstant Message emailEmail phonePhone inpersonIn Person
Libraries & Collections
 
  star icon Arts & Sciences Libraries
divider
  star icon Health Sciences Library
divider
  star icon Law Library
divider
  star icon Music Library
divider
  star icon Special Collections
divider
  star icon Digital Library Center
divider
  star icon Libraries Annex
 
 




Home > Libraries > Science & Engineering > Materials Properties Locator Database > Search Results

Search Results


Bison #:
SEL Reference TA403.H3 1974 v.3
Title:
CRC HANDBOOK OF MATERIALS SCIENCE, vol. 3
Author:
C.T. Lynch, CRC Press, 1974
Properties:
Electrical; Magnetic; Mechanical; Optical; Physical; Thermal
Materials:
Graphite; Nonmetallic solids; Polymers; Radioisotopes; Semiconductors; Superconductors
Identifiers:
Arc resistance; Coefficient of thermal expansion; Compressive strength; Critical temperature; Crystal structure; Curie temperature; Density; Dielectric strength; Dissipation factor; Elasticity modulus; Elongation; Flammability; Flexural strength; Hardness; Heat capacity; Heat distortion temperature; Impact strength; Lattice parameters; Mass absorption coefficient; Melting point; Modulus of elasticity; Neel temperature; Permeability; Porosity; Refractive index; Shear strength; Specific gravity; Specific resistance; Tear strength; Tensile strength; Thermal conductivity; Transmittance; Transparency; Vapor pressure; Volume resistivity; Water absorption; Wavelength
Note:
This volume of the handbook includes information on such materials as nuclear materials, biomedical materials, graphites, polymers, aluminum, ferrous alloys, nickel, and glass. The physical properties of these materials are tabulated along with phase diagram charts and standards. Each volume is thoroughly indexed.
Bison #:
SEL Reference TD426.M66 1996
Title:
GROUNDWATER CHEMICALS DESK REFERENCE, 2nd ed.
Author:
J.H. Montgomery, Lewis, 1996
Properties:
Environmental; Physical; Toxicological
Materials:
Organic chemicals
Identifiers:
Absorption coefficient; Bioconcentration factors; Boiling point; Diffusity in water; Dissociation constant; Environmental fate; Federal drinking water standards; Flash point; Half-life; Heat of fusion; Henry's law constant; Interfacial tension with water; Ionization potential; Lower explosive limit; Melting point; Odor thresholds in air; Partition coefficient; PEL - Permissible exposure limits; Solubility; TLV - Threshold limit values; Toxicity to aquatic organisms and mammals; Upper explosive limit; Vapor density; Vapor pressure
Note:
This handbook covers compounds designated as organic priority pollutants by the U.S. EPA under the Clean Water Act of 1977 as well as compounds most commonly found in the work environment. Compounds are arranged alphabetically, with each entry listing synonyms, structural formulae, chemical designation, empirical formulas, physical and chemical properities, flammability, commerical uses, selectd manufacturers and references. Also includes a list of abbreviations and symbols used in the book and a table of conversion factors.
Bison #:
SEL Reference TP848.H36 pt A
Title:
HANDBOOK OF GLASS DATA / PART A / SILICA GLASS AND BINARY SILICATE GLASSES
Author:
Mazurin, Streltsina, Shvaiko-Shvaikovskaya; Elsevier, 1983
Properties:
Electrical; Mechanical; Optical; Elastic; Thermal; Magnetic
Materials:
Silica and Binary silicate glasses
Identifiers:
absorption coefficient; bulk modulus; coefficent of gas permeation; compressibility; density; dielectric loss angle; diffusion coefficient; dispersion coefficient; electrical conductivity; electrical resistivity; energy of activation; enthalpy; frequency; glass transition temperature; heat conductivity; heat of solution; heat of crystallization; internal friction; linear thermal expansion coefficient; logarithmic damping coefficient; longitudinal sound velocity; loss coefficient; microhardness; permittivity; Poisson's ratio; pressure; process velocity; refractive index; shear modulus; specific heat; solubility coefficient; surface tension; temperature; temperature conductivity; transverse sound velocity; viscosity; volume; volume thermal expansion coefficient; wavelength; Young's modulus
Note:
Resource consists of tables and graphs depicting the various properties for silica glass and binary silicate glasses. First of a five-volume series on glass data. Contains author, subject, and formula indexes.
Bison #:
SEL Reference TP848.H36 pt B
Title:
HANDBOOK OF GLASS DATA / PART B / SINGLE-COMPONENT AND BINARY NON-SILICATE GLASSES
Author:
Mazurin, Streltsina, Shvaiko-Shvaikovskaya; Elsevier, 1983
Properties:
Electrical; Elastic; Chemical; Optical; Thermal; Physical; Mechanical; Magnetic
Materials:
Single-component and binary non-silicate oxide glasses
Identifiers:
absorption coefficient; bulk modulus; chemical durability; coefficient of gas permeation; compressibility; crystallization; density; diffusion; diffusion coefficient; dispersion coefficient; electrical conductivity; electrical resistivity; energy of activation; enthalpy; glass formation; heat of crystallization; heat of evaporation; heat of solution; frequency; internal friction; linear thermal expansion coefficient; longitudinal sound velocity; microhardness; permittivity; refractive index; shear modulus; solubility coefficient; specific heat; surface tension; thermal conductivity; thermal diffusivity; thermal expansion; transition temperature; transverse sound velocity; viscosity; volatilzation; wavelength; Young's modulus
Note:
Resource consists of tables and graphs depicting the various properties for single-component and binary non-silicate oxide glasses. Second of five-volume series on glass data. Contains author, subject, and formula indexes.
Bison #:
SEL Reference TP848.H36 pt C
Title:
HANDBOOK OF GLASS DATA / PART C / TERNARY SILICATE GLASSES
Author:
Mazurin, Streltsina, Shvaiko-Shvaikovskaya; Elsevier, 1987
Properties:
Electrical; Elastic; Chemical; Optical; Thermal; Physical; Mechanical
Materials:
Ternary silicate glasses
Identifiers:
absorption coefficient; bulk modulus; coefficient of gas permeation; compressibility; density; dielectric loss angle; diffusion coefficient; dispersion coefficient; electrical conductivity; electrical resistivity; energy of activation; enthalpy; frequency; glass transition temperature; heat of crystallization; heat of evaporation; heat of solution; internal friction; linear thermal expansion coefficient; logarithmic damping coefficient; longitudinal sound velocity; microhardness; permittivity; Poisson ratio; refractive index; shear modulus; specific heat; solubility coefficient; thermal conductivity; thermal diffusivity; transverse sound velocity; viscosity; volume thermal expansion coefficient; wavelength; Young's modulus
Note:
Resource consists of tables and graphs depicting the various properties for ternary silicate glasses. Third of five-volume series on glass data. Contains author, subject, and formula indexes.
Bison #:
SEL Reference TP848.H36 pt D
Title:
HANDBOOK OF GLASS DATA / PART D / TERNARY NON-SILICATE GLASSES
Author:
Mazurin, Streltsina, Shvaiko-Shvaikovskaya; Elsevier, 1991
Properties:
Electrical; Elastic; Chemical; Optical; Thermal; Physical; Mechanical
Materials:
Ternary non-silicate glasses
Identifiers:
absorption coefficient; bulk modulus; coefficient of gas permeation; compressibility; density; dielectric loss angle; diffusion coefficient; dispersion coefficient; electrical conductivity; electrical resistivity; energy of activation; enthalpy; frequency; glass transition temperature; heat of crystallization; heat of evaporation; heat of solution; internal friction; linear thermal expansion coefficient; logarithmic damping coefficient; longitudinal sound velocity; microhardness; permittivity; Poisson ratio; refractive index; shear modulus; specific heat; solubility coefficient; stress optical coefficient; thermal conductivity; thermal diffusivity; transverse sound velocity; viscosity; volume thermal expansion coefficient; wavelength; Young's modulus
Note:
Resource consists of tables and graphs depicting the various properties for ternary non-silicate glasses. Fourth of five-volume series on glass data. Contains author, subject, and formula indexes.
Bison #:
SEL Reference TP848.H36 pt E
Title:
HANDBOOK OF GLASS DATA / PART E / SINGLE-COMPONENT, BINARY, AND TERNARY OXIDE GLASSES
Author:
Mazurin, Streltsina, Shvaiko-Shvaikovskaya; Elsevier, 1993
Properties:
Electrical; Elastic; Chemical; Optical; Thermal; Physical; Mechanical
Materials:
Single-component, binary, and ternary oxide glasses
Identifiers:
absorption coefficient; bulk modulus; coefficient of gas permeation; compressibility; density; dielectric loss angle; diffusion coefficient; dispersion coefficient; electrical conductivity; electrical resistivity; energy of activation; enthalpy; frequency; glass transition temperature; heat of crystallization; heat of evaporation; heat of solution; internal friction; linear thermal expansion coefficient; logarithmic damping coefficient; longitudinal sound velocity; microhardness; permittivity; Poisson ratio; refractive index; shear modulus; specific heat; solubility coefficient; thermal conductivity; thermal diffusivity; transverse sound velocity; viscosity; volume thermal expansion coefficient; wavelength; Young's modulus
Note:
Resource consists of tables and graphs depicting the various properties for single-component, binary, and ternary oxide glasses. Fifth of five-volume series on glass data. Contains author, subject, and formula indexes.
Bison #:
SEL Reference TK7871.15.G3 P76 1996
Title:
PROPERTIES OF GALLIUM ARSENIDE 3rd ed.,
Author:
INSPEC, 1996
Properties:
Electrical; Optical; Physical; Spectral; Thermal
Materials:
Gallium arsenide; Semiconductors
Identifiers:
Absorption coefficient; Bulk modulus; Carrier concentrations; Coefficient of thermal expansion; Density; Dielectric constant; Diffusion; Electron mobility; Heat capacity; Hole mobility; Infrared absorption; Ionization rates; Lattice parameters; Photoconductivity; Photoluminescence; Refractive index; Resistivity; Thermal conductivity; Thermal diffusivity
Note:
This book, Volume 16 in the ELECTRONIC MATERIALS INFORMATION SERVICE (EMIS) DATA REVIEWS SERIES, contains physical, electronic, and optical properties of gallium arsenide.
Bison #:
SEL Reference TK7871.15.I53 P76 1991
Title:
PROPERTIES OF INDIUM PHOSPHIDE
Author:
INSPEC, 1991
Properties:
Electrical; Physical; Radioactive; Spectral; Thermal
Materials:
Indium phosphide; Semiconductors
Identifiers:
Absorption coefficient; Bulk modulus; Carrier concentration; Coefficient of thermal expansion; Density; Dielectric constant; Diffusion; Electron mobility; Heat capacity; Hole mobility; Infrared absorption; Ionization rates; Photoconductivity; Photoluminescence; Piezoelectric constant; Raman spectroscopy; Refractive index; Resistivity; Thermal conductivity
Note:
This book, Volume 6 in the ELECTRONIC MATERIALS INFORMATION SERVICE (EMIS) DATA REVIEWS SERIES, provides a compilation of important properties data for indium phosphide.
Bison #:
SEL Reference TN671.S55 1992
Title:
SMITHELLS METALS REFERENCE BOOK, 7th ed.
Author:
E.A. Brandes, Butterworth Heinemann, 1992
Properties:
Chemical; Crystallographic; Electrical; Magnetic; Mechanical; Physical; Radioactive; Thermal
Materials:
Alloys; Elements; Metals; Steel
Identifiers:
Atomic weight; Boiling point; Bulk modulus; Coefficient of resistivity; Coefficient of thermal expansion; Coercive force; Creep; Density; Electrical conductivity; Elongation; Entropy; Flux density; Fracture toughness; Free energy of formation; Hardness; Heat capacity; Heat of formation; Heat of fusion; Heat of vaporization; Impact energy; Lattice constants; Mass absorption coefficient; Maximum work temperature; Melting point; Modulus of elasticity; Modulus of rigidity; Molar heat capacity; Photoelectric emission coefficient; Poisson's ratio; Proof stress; Relative permeability; Resistivity; Shear strength; Specific gravity; Spectral emission coefficient; Sublimation point; Surface tension; Tensile strength; Thermal conductivity; Viscosity; Wavelength
Note:
This handbook contains information on the technology and science of metallic materials, including metallurgical processes and techniques and physical, chemical, electrical, mechanical, and magnetic properties of metals. There are chapters on shape memory alloys, vapor-deposited coatings, superplasticity, ceramics, x-ray analysis of metallic materials, crystallography, crystal chemistry, metallography, mechanical testing, sintered materials, friction and wear, engineering ceramics and other materials.
Bison #:
SEL Reference QC61.K3 1995
Title:
TABLES OF PHYSICAL AND CHEMICAL CONSTANTS AND SOME MATHEMATICAL FUNCTIONS, 16th ed.
Author:
G.W.C. Kay, T.H. Laby, Longman, 1995
Properties:
Acoustical; Atomic; Chemical; Electrical; Magnetic; Mechanical; Optical; Physical; Radioactive; Thermal
Materials:
Elements; Inorganic chemicals; Organic chemicals; Polymers
Identifiers:
Acidity constant; Activity coefficient; Atomic weight; Attenuation; Auger spectroscopy; Boiling point; Bond length; Bulk modulus; Coefficient of expansion; Coercivity; Critical pressure; Conductivity; Critical temperature; Cryoscopic constants; Density; Dielectric constant; Dipole length; Dipole moments; Dissociation constant; Elasticity; Electron diffusion; Electron mobility; Entropy; Free energy; Half-wave potential; Heat capacity; Heat of formation; Heat of fusion; Heat of vaporization; Ionic diffusion; Ionic mobility; Ionic radius; Ionization constant; Luminescence; Magnetic resonance; Magnetic susceptibility; Melting point; Molar conductivity; Molar heat capacity; Mossbauer effect; Neutron cross-sections; Radiation; Reflectance; Refractive index; Resistivity; Reverberation absorption coefficient; Rutherford scattering; Solubility; Sound reduction indices; Surface tension; Temperature coefficients; Tensile strength; Thermal conductivity; Thermocoupling temperature; UV-visible spectroscopy; Vapor pressure; Velocity of sound; Verdet constants; Virial coefficient; Viscosity; Wavelength; X ray photoemmision spectroscopy; X ray absorption edges
Note:
This book is arranged in eight parts: Units and fundamental constants, General physics, Chemistry, Atomic and nuclear physics, Miscellaneous engineering data, Statistical methods for the treatment of experimental data, Laboratory safety, and Introduction to quality assurance of measurements. Property coverage includes such items as wavelength standards, cosmic rays, atomic radii, Mossbauer effect, nuclear magnetic resonance, crystal structure, Auger spectroscopy, nuclear fission, neutron cross-sections, neutron moderation, diffusion and subatomic particles. Also covered are medical ultrasonics, fiber optics, high temperature superconductivity, atomic spectroscopy, infrared and Raman spectroscopy, mass and UV-visible spectrometry, flash points and explosive limits in air and autoignition temperatures, Rutherford scattering formulae and magnetic and electrostatic bending radii.
divider
return to buffalo.edu Site Search  |  Terms of Use  |   UB Privacy Policy  |  Accessibility