Libros sobre el tema "Material Properties Determination"

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1

Finckenor, J. L. Determination of significant composite processing factors by designed experiment: (MSFC Center Director's Discretionary Fund final report, project no. 95-23). MSFC, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 2003.

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2

George C. Marshall Space Flight Center., ed. Determination of significant composite processing factors by designed experiment: (MSFC Center Director's Discretionary Fund final report, project no. 95-23). MSFC, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 2003.

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3

American Concrete Institute. Committee 446. Fracture mechanics of concrete: Concepts, models and determination of material properties : report. Detroit, Mich: American Concrete Institute, 1992.

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4

Gundtoft, Hans Erik. Examination of Fibre Composites by Ultrasound for Defect Inspection and Determination of Material Properties. Roskilde, Denmark: Riso National Laboratory, 1988.

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5

IUTAM Symposium on Field Analyses for Determination of Material Parameters-- Experimental and Numerical Aspects (2000 Kiruna, Sweden). IUTAM Symposium on Field Analyses for Determination of Material Parameters-- Experimental and Numerical Aspects. Boston: Kluwer Academic Publishers, 2003.

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6

P, Stähle y Sundin K. G, eds. IUTAM Symposium on Field Analyses for Determination of Material Parameters-- Experimental and Numerical Aspects: Proceedings of the IUTAM Symposium held in Abisko National Park, Kiruna, Sweden, July 31-August 4, 2000. Dordrecht: Kluwer Academic Publishers, 2003.

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7

BV, Hoogovens Groep. Mathematical model for the determination of thermal spalling in refractory material on basis of the practical relationship of the appearance of rupture, physical properties and physical conditions. Luxembourg: Commission of the European Communities, 1985.

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8

1931-, Rossiter Bryant W. y Baetzold Roger C, eds. Determination of elastic and mechanical properties. New York: Wiley, 1991.

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9

Read, B. E. The determination of dynamic properties of polymers and composites. Michigan: UMI Books on Demand, 1999.

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10

Center, Langley Research, ed. Determination of stress coefficient terms in cracked solids for monoclinic materials with plane symmetry at x₃=0. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1998.

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11

S, Harlan Stephen y Geological Survey (U.S.), eds. Sediment magnetic data and thermomagnetic determinations of Holcene and Pleistocene soils and their parent materials from Zanesville, Ohio: Contributions to Quaternary paleoclimate studies of midcontinent loess deposits. [Reston, Va.?]: U.s. Dept. of the Interior, U.S. Geological Survey, 1999.

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12

Nondestructive Methods for Material Property Determination. Springer, 2012.

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13

Ruud, C. O. y R. E. Jr Green. Nondestructive Methods for Material Property Determination. Springer, 2012.

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14

Fracture mechanics of concrete: Concepts, models and determination of material properties. [Detroit, Mich.]: American Concrete Institute, 1991.

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15

Determination of terminal solid solubility of hydrogen in Zr-alloy pressure tube material using dilatometry technique. Mumbai: Bhabha Atomic Research Centre, 2004.

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16

(Editor), P. Ståhle y K. G. Sundin (Editor), eds. IUTAM Symposium on Field Analyses for Determination of Material Parameters - Experimental and Numerical Aspects (Solid Mechanics and Its Applications). Springer, 2003.

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17

Keshavarz, Mohammad Hossein. Combustible Organic Materials: Determination and Prediction of Combustion Properties. de Gruyter GmbH, Walter, 2022.

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18

Keshavarz, Mohammad Hossein. Combustible Organic Materials: Determination and Prediction of Combustion Properties. de Gruyter GmbH, Walter, 2018.

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19

Keshavarz, Mohammad Hossein. Combustible Organic Materials: Determination and Prediction of Combustion Properties. de Gruyter GmbH, Walter, 2018.

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20

Keshavarz, Mohammad Hossein. Combustible Organic Materials: Determination and Prediction of Combustion Properties. de Gruyter GmbH, Walter, 2022.

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21

Keshavarz, Mohammad Hossein. Combustible Organic Materials: Determination and Prediction of Combustion Properties. de Gruyter GmbH, Walter, 2022.

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22

Combustible Organic Materials: Determination and Prediction of Combustion Properties. de Gruyter, 2018.

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23

Rha, Cho-Kyun Cho-Kyun. Theory, Determination and Control of Physical Properties of Food Materials. Springer, 2011.

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24

Rha, Cho-Kyun Cho-Kyun. Theory, Determination and Control of Physical Properties of Food Materials. Springer, 2012.

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25

Towler, Brian F. Fundamental Principles of Reservoir Engineering. Society of Petroleum Engineers, 2002. http://dx.doi.org/10.2118/9781555630928.

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Fundamental Principles of Reservoir Engineering outlines the techniques required for the basic analysis of reservoirs prior to simulation. It reviews rock and fluid properties, reservoir statics, determination of original oil and gas in place by volumetrics and material balances, evaluation of drive mechanisms, fluid flow in porous media, aquifer influx, well testing, fluid distribution and displacement, and decline-curve analysis.
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26

Fracture Mechanics of Concrete Concept Models and Determination of Materials Properties/446.1R. Amer Concrete Inst, 1991.

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27

(Editor), Bryant W. Rossiter y Roger C. Baetzold (Editor), eds. Determination of Elastic and Mechanical Properties, Volume 7, Physical Methods of Chemistry, 2nd Edition. Wiley-Interscience, 1991.

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28

Waldon, Wade Christopher. The determination of photorefractive properties of chromium-doped strontium barium niobate via two-beam coupling experiments. 1993.

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29

Sediment magnetic data and thermomagnetic determinations of Holcene and Pleistocene soils and their parent materials from Zanesville, Ohio: Contributions to Quaternary paleoclimate studies of midcontinent loess deposits. [Reston, Va.?]: U.s. Dept. of the Interior, U.S. Geological Survey, 1999.

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30

Šiaučiūnas, Raimundas, Edita Prichockienė y Agnė Šmigelskytė. Ceramics Practicum. KTU leidykla „Technologija“, 2021. http://dx.doi.org/10.5755/e01.9786090217344.

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The book presents all the methods of testing ceramic raw materials and products made from ceramic materials: first of all, the methods of testing of the properties of clay are discussed; further, determination of its chemical and mineral composition is described followed by methods for testing the key characteristics of a ceramic body and slurry, and, finally, a detailed description of methodologies for determining the performance of construction and fine ceramic products is presented. This textbook is primarily intended for English-speaking students studying the modules Chemical Technology of Ceramic Materials, Synthesis of High-Temperature Materials, Building and Fine Ceramics and Refractory and Modern Ceramics at KTU Faculty of Chemical Technology. It will also be beneficial to students of other KTU faculties or any other universities whose programs deal with the production and processing of building materials.
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31

Janssen, Ted, Gervais Chapuis y Marc de Boissieu. Aperiodic Crystals. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198824442.001.0001.

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Until the 1970s all materials studied consisted of periodic arrays of unit cells, or were amorphous. In the following decades a new class of solid state matter, called aperiodic crystals, has been found. It is a long-range ordered structure, but without lattice periodicity. It is found in a wide range of materials: organic and inorganic compounds, minerals (including a substantial portion of the earth’s crust), and metallic alloys, under various pressures and temperatures. Because of the lack of periodicity the usual techniques for the study of structure and physical properties no longer work, and new techniques have to be developed. This book deals with the characterization of the structure, the structure determination, and the study of the physical properties, especially the dynamical and electronic properties of aperiodic crystals. The treatment is based on a description in a space with more dimensions than three, the so-called superspace. This allows us to generalize the standard crystallography and to look differently at the dynamics. The three main classes of aperiodic crystals, modulated phases, incommensurate composites, and quasicrystals are treated from a unified point of view which stresses the similarities of the various systems. The book assumes as a prerequisite a knowledge of the fundamental techniques of crystallography and the theory of condensed matter, and covers the literature at the forefront of the field.
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32

Boothroyd, Andrew T. Principles of Neutron Scattering from Condensed Matter. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198862314.001.0001.

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The book contains a comprehensive account of the theory and application of neutron scattering for the study of the structure and dynamics of condensed matter. All the principal experimental techniques available at national and international neutron scattering facilities are covered. The formal theory is presented, and used to show how neutron scattering measurements give direct access to a variety of correlation and response functions which characterize the equilibrium properties of bulk matter. The determination of atomic arrangements and magnetic structures by neutron diffraction and neutron optical methods is described, including single-crystal and powder diffraction, diffuse scattering from disordered structures, total scattering, small-angle scattering, reflectometry, and imaging. The principles behind the main neutron spectroscopic techniques are explained, including continuous and time-of-flight inelastic scattering, quasielastic scattering, spin-echo spectroscopy, and Compton scattering. The scattering cross-sections for atomic vibrations in solids, diffusive motion in atomic and molecular fluids, and single-atom and cooperative magnetic excitations are calculated. A detailed account of neutron polarization analysis is given, together with examples of how polarized neutrons can be exploited to obtain information about structural and magnetic correlations which cannot be obtained by other methods. Alongside the theoretical aspects, the book also describes the essential practical information needed to perform experiments and to analyse and interpret the data. Exercises are included at the end of each chapter to consolidate and enhance understanding of the material, and a summary of relevant results from mathematics, quantum mechanics, and linear response theory, is given in the appendices.
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33

Baky bitarap Türkmenistan - UNESKO: Taryhy-medeni gymmatlyklara baha bermek we dünýä mirasynyň ýadygärliklerini gorap saklamagyň ýollaryny kesgitlemek : halkara ylmy maslahatyň nutuklarynyň gysgaça beýany magtymguly aýynyň 25-27 si = Permanent neutral Turkmenistan - UNESCO : apraisal of the historical-cultural values and determination of the ways on the protection of the world heritage properties : abstracts of reports of the international scientific conference, 25-27 May = Postoi͡anno neĭtralʹnyĭ Turkmenistani͡unesko : ot͡senka istoriko-kulʹturnykh t͡sennosteĭ i opredelenie puteĭ sochranenii͡a pami͡atnikov vsemirnogo nasledi͡a : materialy mezhdunarodnoĭ nauchnoĭ konferent͡sii, 25-27 mai͡a. Aşgabat: [s.n.], 2006.

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