Books on the topic 'Granule properties'

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1

Cullen, Nora. The effects of acetate on the membrane properties of rat hippocampal dentate granule cells and its interaction with adenosine. Ottawa: National Library of Canada, 1990.

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2

Technology, Canada Centre For Mineral and Energy Technology Mineral and Energy. Anisotropic Properties Study of Lac du Bonnet Granite Specimens. S.l: s.n, 1986.

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3

A, Otooni Monde, ed. Grain size and mechanical properties: Fundamentals and applications : symposium held November 27-December 2, 1994, Boston, Massachusetts, U.S.A. Pittsburgh, Pa: Materials Research Society, 1995.

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4

Produkteigenschaften ultrafeiner Partikel: Mikromechanik, Fliess- und Kompressionsverhalten kohäsiver Pulver. Leipzig: Sächsische Akademie der Wissenschaften zu Leipzig, 2009.

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5

Marre, Jacques. The structural analysis of granitic rocks. New York: Elsevier, 1986.

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6

William, Leith, and Geological Survey (U.S.), eds. Composition and physical properties of granitic rocks from the NRDC/SAS seismic station sites, Eastern Kazakh SSR. [Reston, VA]: Dept. of the Interior, U.S. Geological Survey, 1991.

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7

Ross, Donald Clarence. Magnetic susceptibilities of modally analyzed granitic rocks from the southern Sierra Nevada, California. [Menlo Park, Calif.]: U.S. Geological Survey, 1989.

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8

Ross, Donald Clarence. Magnetic susceptibilities of modally analyzed granitic rocks from the southern Sierra Nevada, California. [Menlo Park, Calif.]: U.S. Geological Survey, 1989.

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9

Bernard, Cambou, Jean Michel, and Radjai Farhang, eds. Micromechanics of granular materials. London: ISTE, 2009.

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10

Tejchman, Jacek. Finite element modeling of shear localization in granular bodies in hypoplasticity with enhancements. Gdańsk: Gdańsk University of Technology Publishers, 2005.

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11

International Conference on Powders & Grains (3rd 1997 Durham, N.C.). Effect of particle size and bond strength in impact breakage of weak agglomerates Powders & grains 97: Proceedings of the third International Conference on Powders & Grains, Durham, North Carolina, 18-23 May 1997. Rotterdam: Balkema, 1997.

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12

A, Fleck N., Cocks A. C. F, and International Union of Theoretical and Applied Mechanics., eds. Mechanics of granular and porous materials: Proceedings of the IUTAM symposium, held in Cambridge, U.K., 15-17 July 1996. Dordrecht: Kluwer Academic Publisher, 1997.

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13

IUTAM, Symposium on Mechanics of Granular and Porous Materials (1996 Cambridge England). IUTAM Symposium on Mechanics of Granular and Porous Materials: Proceedings of the IUTAM Symposium held in Cambridge, U.K., 15-17 July 1996. Dordrecht: Kluwer Academic Publisher, 1997.

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14

Bushby, Richard J. Liquid Crystalline Semiconductors: Materials, properties and applications. Dordrecht: Springer Netherlands, 2013.

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15

Honda, Shigeo, and Shigeo Honda. TMR research in insulating granular magnetic materials. Hauppauge, N.Y: Nova Science Publishers, 2010.

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16

TMR research in insulating granular magnetic materials. Hauppauge, N.Y: Nova Science Publishers, 2010.

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17

Tumidajski, Tadeusz. Wybrane problemy stochastycznej analizy własności materiałów uziarnionych i procesów przeróbki surowców mineralnych: Selected problems of stochastic analysis of properties of grained materials and mineral processes. Kraków: Akademia Górniczo-Hutnicza im. Stanisława Staszica, 1992.

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18

Francois, Nicot, and Wan Richard, eds. Micromechanics of failure in granular geomaterials. London, UK: ISTE, 2009.

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19

International Workshop on Localisation and Bifurcation Theory for Soils and Rocks (4th 1997 Gifu, Japan). Localization and bifurcation theory for soils and rocks: Proceedings of the Fourth International Workshop on Localization and Bifurcation Theory for Soils and Rocks, Gifu, Japan, 28 September-2 October, 1997. Rotterdam: A.A. Balkema, 1998.

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20

Nield, Donald A. Convection in Porous Media. 4th ed. New York, NY: Springer New York, 2013.

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21

Otooni, Monde A. Grain Size and Mechanical Properties: Fundamentals and Applications : Symposium Held November 27-December 2, 1994, Boston, Massachusetts, U.S.A (Materials Research Society Symposium Proceedings). Materials Research Society, 1995.

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22

Italy), Studio Marmo (Florence, ed. Natural stones: Marbles and granites from all over the world. Lucca: Studio Marmo, 1992.

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23

Cambou, Bernard, Farhang Radja�, and Michel Jean. Micromechanics of Granular Materials. Wiley & Sons, Incorporated, John, 2013.

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24

Cambou, Bernard, Farhang Radja�, and Michel Jean. Micromechanics of Granular Materials. Wiley & Sons, Incorporated, John, 2013.

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25

Mechanics of Granular Media. Springer, 2007.

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26

Mathematical Modeling In Mechanics Of Granular Materials. Springer, 2012.

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27

Iskander, Magued, Stephen Bless, and Mehdi Omidvar. Rapid Penetration into Granular Media: Visualizing the Fundamental Physics of Rapid Earth Penetration. Elsevier Science & Technology Books, 2015.

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28

Wang, Yongqi, Sergio H. Faria, Nina Kirchner, and Kolumban Hutter. Continuum Description of Granular Materials. Springer, 2011.

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29

Bless, Stephen, and Mehdi Omidvar. Rapid Penetration into Granular Media: Visualizing the Fundamental Physics of Rapid Earth Penetration. Elsevier, 2015.

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30

Radjai, Fahrang, Bernard Cambou, and Michel Jean. Micromechanics of Granular Materials. Wiley & Sons, Incorporated, John, 2010.

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31

Cambou, Bernard, Farhang Radjaï, and Michel Jean. Micromechanics of Granular Materials. Wiley & Sons, Incorporated, John, 2010.

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32

D, Kolymbas, and Council of Europe, eds. Modern approaches to plasticity: Proceedings of a workshop held in Horton, Greece, 12-16 June 1992 under the patronage of the Council of Europe. Amsterdam: Elsevier, 1993.

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33

Kolymbas, D. Modern Approaches to Plasticity. Elsevier Science & Technology Books, 2012.

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34

M, Mehrabadi M., American Society of Mechanical Engineers. Materials Division., and American Society of Mechanical Engineers. Winter Meeting, eds. Mechanics of granular materials and powder systems: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Anaheim, California, November 8-13, 1992. New York: ASME, 1992.

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35

Ga.) American Society of Mechanical Engineers. Winter Meeting (1991 : Atlanta. Mechanics of Granular Materials & Powder Systems: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Anaheim, California, November 8-13, 1992 (MD Series Vol. 37). American Society of Mechanical Engineers, 1992.

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36

(Editor), N. A. Fleck, and A.C.F. Cocks (Editor), eds. IUTAM Symposium on Mechanics of Granular and Porous Materials (Solid Mechanics and Its Applications). Springer, 1997.

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37

Herminghaus, S. Where grains and fluids meet: the complex physics of wet granular matter. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198789352.003.0009.

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In this chapter, the physics of wet granular matter is discussed. The practical significance of wet granular matter goes of course well beyond the construction of sand sculptures. Most industrial raw materials are solids and come in granular form, and the processes into which they feed involve their being mixed with liquids and agglomerated, conveyed, kneaded, or cast in moulds. For appropriately engineering these processes, including the minimization of energy consumption, a deep understanding of the mechanical properties of this class of materials is indispensable. Furthermore, if we want to mitigate, or even reliably predict, such devastating events as land slides or mud flows, we need to study the dynamical behaviour of wet granular matter in detail. This applies as well to other, similar systems of relevance, such as ice and snow avalanches, which can be modelled as wet granular systems as well.
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38

O'Neill, Mary, Stephen M. Kelly, and Richard J. Bushby. Liquid Crystalline Semiconductors: Materials, properties and applications. Ingramcontent, 2014.

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39

Wet Granular Matter A Truly Complex Fluid. World Scientific Publishing Company, 2013.

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40

Terentjev, Eugene M., and David A. Weitz, eds. The Oxford Handbook of Soft Condensed Matter. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199667925.001.0001.

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This Handbook serves both as an introduction and an overview of the field of soft condensed matter. The discussion covers topics ranging from the fundamentals of colloid science to the principles and action of surfactants, modern directions of research in liquid crystals, and the key properties of foams. The book also explores the fundamental physics that controls the structure and mechanics of granular matter; how the unusual and often dramatic mechanical properties of concentrated polymer systems are determined by the physics of entanglements; the complex structures formed by block copolymers and the methods of structure analysis; rubber elasticity and new emerging classes of rubber-elastic materials; the physics of polyelectrolytes; the solvent dynamics in polymer gels, in equilibrium and under mechanical stress; the hierarchical structure and characteristics of an extracellular matrix; and the hierarchical structure and resulting physical properties of the cell cytoskeleton. The book concludes with an analysis of the properties of interfaces and membranes.
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41

C, Costes Nicholas, Porter Ronald F, and United States. National Aeronautics and Space Administration., eds. Mechanics of Granular Materials (MGM). Bellingham, Wash: Society of Photo-Optical Instrumentation Engineers, 1996.

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42

Mingarro, E. Characterization of Clay (Bentonite)/crushed Granite Mixtures to Build Barriers Against the Migration of Radionuclides: Diffusion Studies and Physical Properties. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1991.

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43

Francois, Nicot, and Wan Richard, eds. Micromechanics of failure in granular geomaterials. London, UK: ISTE, 2009.

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44

Francois, Nicot, and Wan Richard, eds. Micromechanics of failure in granular geomaterials. London, UK: ISTE, 2009.

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45

(Editor), Ching S. Chang, Anil Misra (Editor), Robert Y. Liang (Editor), and Marijan Babic (Editor), eds. Mechanics of Deformation and Flow of Particulate Materials: Proceedings of a Symposium Sponsored by the Engineering Mechanics Division of the American ... Engineers Committee on Properties of mater. American Society of Civil Engineers, 1997.

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46

Swenson, Julie. High-Speed Trains: Use Place Value Understanding and Properties of Operations to Add and Subtract. Rosen Publishing Group, 2014.

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47

High-Speed Trains: Use Place Value Understanding and Properties of Operations to Add and Subtract. Rosen Publishing Group, 2014.

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48

High-Speed Trains: Use Place Value Understanding and Properties of Operations to Add and Subtract. Rosen Classroom, 2014.

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49

Zapperi, Stefano. Crackling Noise. Oxford University PressOxford, 2022. http://dx.doi.org/10.1093/oso/9780192856951.001.0001.

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Abstract Crackling noise refers to an intermittent series of pulses of broadly distributed amplitude and duration that is observed in different contexts from the crumpling of a sheet of paper to the flow of fluids in porous media. Studying crackling noise is interesting because it reflects key microscopic processes inside the material, with each crackle in the noise corresponding to an internal avalanche event. A distinct statistical feature of crackling noise is the presence of power law distributed noise pulses and long-range correlations which are the hallmarks of critical phenomena. Hence, the physics of complex non-equilibrium disordered systems provides the natural theoretical framework to tackle crackling noise. The present book reviews the statistical properties of crackling noise, providing an introduction to the main theoretical concepts needed to interpret them. The book also contains a detailed discussion of several examples of crackling noise in materials, including fracture, plasticity, ferromagnetism, superconductivity, granular flow and fluid flow in porous media. A final chapter discusses the relevance of avalanche behavior for biological systems.
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50

Ronco, Pierre M. Kidney involvement in plasma cell dyscrasias. Edited by Giuseppe Remuzzi. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199592548.003.0150.

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Monoclonal proliferations of the B-cell lineage are characterized by abnormal and uncontrolled expansion of a single clone of B cells at different maturation stages, with a variable degree of differentiation to immunoglobulin-secreting plasma cells. Therefore, they are usually associated with the production and secretion in blood of a monoclonal immunoglobulin and/or a fragment thereof which may become deposited in tissues. These deposits can take the form of casts (in myeloma cast nephropathy), crystals (in myeloma-associated Fanconi syndrome), fibrils (in light-chain and exceptional heavy-chain amyloidosis), or granular precipitates (in monoclonal immunoglobulin deposition disease). They may disrupt organ structure and function, inducing life-threatening complications. All of the pathologic entities related to immunoglobulin deposition principally involve the kidney, which is not only explained by the high levels of renal plasma flow and glomerular filtration rate, but also by the sieving properties of the glomerular capillary wall and by the prominent role of the renal tubule in LC handling and catabolism.The different renal (and other) manifestations are related to the unique physicochemical characteristics of each paraprotein or immunoglobulin fragment, and the rate of their production.
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