Books on the topic 'Growth defects'

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1

D, Zolotkov V., Mordi͡u︡k V. S, and Smirnov, Leonid Stepanovich, fl. 1979-, eds. Rostovye i radiat͡s︡ionnye defekty kristallov li͡u︡minoforov dli͡a︡ istochnikov sveta. Novosibirsk: Izd-vo "Nauka," Sibirskoe otd-nie, 1986.

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2

Gabetta, G. Application of a two-mechanism model for environmentally-assisted crack growth. Washington, DC: Division of Engineering Safety, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1986.

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3

Gabetta, G. Application of a two-mechanism model for environmentally-assisted crack growth. Washington, DC: Division of Engineering Safety, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1986.

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4

Gabetta, G. Application of a two-mechanism model for environmentally-assisted crack growth. Washington, DC: Division of Engineering Safety, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1986.

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5

Michael, Dudley, and Materials Research Society Meeting, eds. Silicon carbide 2006--materials, processing, and devices: Symposium held April 18-20, 2006, San Francisco, California, U.S.A. Warrendale, Pa: Materials Research Society, 2006.

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6

Nykänen, Timo. Mk-factor equations and crack growth simulations for fatigue of fillet-welded t-joints. Lappeenranta: Lappeenranta University of Technology, 1993.

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7

Weingartner, D. H. Variations in the growth and defect of aspen (Populus tremuloides Michx.) clones in Northern Ontario. Ontario: Ministry of Natural Resources, 1985.

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8

Barney, Craig. Fatigue crack growth from unbridged defects in continuous fibre reinforced titanium metal matrix composites. Birmingham: University of Birmingham, 1995.

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9

Triboulet, R., and P. Siffert. CdTe and related compounds: Physics, defects, hetero- and nanostructures, crystal growth surfaces and applications. Edited by ScienceDirect (Online service). Oxford: Elsevier, 2010.

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10

International, Symposium on High Purity Silicon (9th 2006 Cancún Mexico). High purity silicon 9. Pennington, NJ: Electrochemical Society, 2006.

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11

International Symposium on High Purity Silicon (9th 2006 Cancún, Mexico). High purity silicon 9. Edited by Claeys Cor L, Electrochemical Society. Electronics and Photonics Division., and Electrochemical Society Meeting. Pennington, NJ: Electrochemical Society, 2006.

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12

Burns, J. K. Birth defects and their causes: [an introduction for medical and general readers from basic physiology to research level]. Salthill, Galway: Stress Books, 1994.

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13

International Symposium on High Purity Silicon (8th 2004 Honolulu, Hawaii). High purity silicon VIII: Proceedings of the international symposium. Edited by Claeys Cor L, Electrochemical Society Electronics Division, and Electrochemical Society Meeting. Pennington, NJ: Electrochemical Society, 2004.

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14

S, Ashok, ed. Defect engineering in semiconductor growth, processing, and device technology: Symposium held April 26-May 1, 1992, San Francisco, California, U.S.A. Pittsburgh, Pa: Materials Research Society, 1992.

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15

Hinds, Thomas E. Aspen sucker damage and defect in Colorado clearcut areas. Fort Collins, Colo: U.S. Dept. of Agriculture, Forest Service, Rocky Mountain Forest and Range Experiment Station, 1987.

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16

Hinds, Thomas E. Aspen sucker damage and defect in Colorado clearcut areas. Fort Collins, Colo: U.S. Dept. of Agriculture, Forest Service, Rocky Mountain Forest and Range Experiment Station, 1987.

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17

Yang, Guang. Flux pinning, defect analysis and growth of high temperature superconducting single crystals. Birmingham: University of Birmingham, 1994.

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18

Durbin, Kathie. Tree huggers: Victory, defeat & renewal in the Northwest ancient forest campaign. Seattle, WA: Mountaineers, 1996.

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19

Tree huggers: Victory, defeat & renewal in the Northwest ancient forest campaign. Seattle, WA: Mountaineers, 1996.

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20

Szerafin, Jerzy. Dyspersje cementowe w procesie iniekcyjnej naprawy defektów betonu. Lublin: Politechnika Lubelska, 2011.

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21

Ontario. Ministry of Natural Resources. Variations in the Growth and Defect of Aspen(Populus Tremuloides Michx.) Clones in Northern Ontario. S.l: s.n, 1985.

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22

Fontanesi, Luca, ed. The genetics and genomics of the rabbit. Wallingford: CABI, 2021. http://dx.doi.org/10.1079/9781780643342.0000.

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Abstract The purpose of the book is to present in one location a comprehensive overview of the progress of genetics in the rabbit, with a modern vision that integrates genomics to obtain a complete picture of the state of the art and of the applications in this species, defined according to the multiple uses and multi-faceted places that this species has in applied and fundamental biology. The 18 chapters cover several fields of genetics and genomics: Chapters 1 and 2 present the rabbit within the evolutionary framework, including the systematics, its domestication and an overview of the genetic resources (breeds and lines) that have been developed after domestication. Chapters 3-5 cover the rabbit genome, cytogenetics and genetic maps and immunogenetics in this species. Chapters 6-8 present the genetics and molecular genetics of coat colours, fibre traits and other morphological traits and defects. Chapters 9-13 cover the genetics of complex traits (disease resistance, growth and meat production traits, reproduction traits), reproduction technologies and genetic improvement in the meat rabbits. Chapters 14-18 present the omics vision, the biotech and biomodelling perspectives and applications of the rabbit. This book is addressed to a broad audience, including students, teachers, researchers, veterinarians and rabbit breeders.
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23

Xu, Donghong. Searching for high-copy-number suppressors of a E. coli growth defect caused by the excess of a plasmid partition protein. Ottawa: National Library of Canada, 1996.

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24

Freyhardt, H. C. Growth and Defect Structures. Springer, 2011.

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25

Dept.of Health. Congenital Limb Reduction Defects. Stationery Office Books, 1996.

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26

Friedrichs, Peter, Gerhard Pensl, Lothar Ley, and Tsunenobu Kimoto. Silicon Carbide : Volume 1: Growth, Defects, and Novel Applications. Wiley & Sons, Limited, John, 2011.

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27

Pizzini, Sergio, and Gudrun Kissinger. Silicon, Germanium, and Their Alloys: Growth, Defects, Impurities, and Nanocrystals. Taylor & Francis Group, 2014.

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28

Silicon, Germanium, and Their Alloys: Growth, Defects, Impurities, and Nanocrystals. Taylor & Francis Group, 2014.

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29

Pizzini, Sergio, and Gudrun Kissinger. Silicon, Germanium, and Their Alloys: Growth, Defects, Impurities, and Nanocrystals. Taylor & Francis Group, 2014.

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30

1953-, Brown Nigel, ed. Congenital limb reduction defects: Clues from developmental biology, teratology and epidemiology. London: Stationery Office, 1996.

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31

Friedrichs, Peter, Gerhard Pensl, Lothar Ley, and Tsunenobu Kimoto. Silicon Carbide Vol. 1 : Volume 1: Growth, Defects, and Novel Applications. Wiley & Sons, Incorporated, John, 2011.

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32

Sheen, Barbara. Diseases and Disorders - Birth Defects (Diseases and Disorders). Lucent Books, 2005.

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33

J, Ferrans Victor, Rosenquist Glenn C. 1931-, Weinstein Constance, and National Heart, Lung, and Blood Institute., eds. Cardiac morphogenesis: Proceedings of the meeting "Selected topics in cardiac morphogenesis," held December 5-7, 1984, in Alexandria, Virginia, U.S.A. New York: Elsevier, 1985.

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34

Siffert, Paul, and Robert Triboulet. CdTe and Related Compounds; Physics, Defects, Hetero- and Nano-Structures, Crystal Growth, Surfaces and Applications: Crystal Growth, Surfaces and Applications. Elsevier, 2009.

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35

Nakazawa, Makoto, Deepak Srivastava, Michael Artman, and D. Woodrow Benson. Cardiovascular Development and Congenital Malformations: Molecular and Genetic Mechanisms. Wiley & Sons, Incorporated, John, 2008.

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36

Nakazawa, Makoto, Deepak Srivastava, Michael Artman, and D. Woodrow Benson. Cardiovascular Development and Congenital Malformations: Molecular and Genetic Mechanisms. Wiley & Sons, Incorporated, John, 2008.

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37

CdTe and Related Compounds; Physics, Defects, Hetero- and Nano-structures, Crystal Growth, Surfaces and Applications. Elsevier, 2010. http://dx.doi.org/10.1016/c2009-0-17817-0.

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38

CdTe and Related Compounds; Physics, Defects, Hetero- and Nano-structures, Crystal Growth, Surfaces and Applications. Elsevier, 2010. http://dx.doi.org/10.1016/c2009-0-61369-6.

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39

Correlation of EBIC and SWBXT imaged defects and epilayer growth pits in 6H-SiC Schottky diodes. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2000.

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40

Meilhac, Sigolène M. Cardiac growth I: Cardiomyocyte proliferation. Edited by José Maria Pérez-Pomares, Robert G. Kelly, Maurice van den Hoff, José Luis de la Pompa, David Sedmera, Cristina Basso, and Deborah Henderson. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198757269.003.0009.

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Efficient contraction of the heart depends on the size and oriented architecture of the myocardium. This is severely compromised by myocardial infarction or in cardiomyopathies. Deciphering the mechanisms underlying heart growth has attracted much attention over the past decade, after the demonstration that the mammalian heart has some potential to regenerate, thus raising hopes that heart repair may become a reality. The mechanisms of cardiac growth during development have been well studied in the mouse model, taking advantage of sophisticated genetic engineering and new tools for tracking cell lineages and behaviour. We discuss the current view of the intrinsic regulation of cardiomyocyte behaviour, as well as how it is modulated by interplay with other cardiac cell types or with the environment. Such fundamental knowledge is important for understanding the origin of congenital heart defects and for the development of novel strategies of heart repair.
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41

United States. National Aeronautics and Space Administration., ed. Numerical modeling of twinning in GaAs crystals during space growth process: Final report for NAG3-1738. [Washington, DC: National Aeronautics and Space Administration, 1991.

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42

Numerical modeling of twinning in GaAs crystals during space growth process: Final report for NAG3-1738. [Washington, DC: National Aeronautics and Space Administration, 1991.

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43

Final technical report on protein crystal growth in low gravity ... June 1, 1992 through May 31, 1994. Stanford, Calif: Center for Materials Research, Stanford University, 1994.

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44

United States. National Aeronautics and Space Administration., ed. Prediction and verification of ductile crack growth from simulated defects in strength overmatched butt welds: A thesis ... [Washington, D.C: National Aeronautics and Space Administration, 1997.

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45

Huber, Daniel Anthony. The investigation of ZnSe buffer layers for reduction of defects in heteroepitaxial growth of GaAs on silicon. 1992.

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46

Formation of the Heart and its Regulation. Birkhäuser, 2012.

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47

Tomanek, Robert J., and Robert B. Runyan. Formation of the Heart and its Regulation. Birkhäuser, 2012.

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48

Chevallier, J., S. Ashok, and K. Sumino. Defect Engineering in Semiconductor Growth, Processing and Device Technology: Symposium Held April 26-May 1, 1992, San Francisco, California, U.S.A (Materials Research Society Symposium Proceedings). Materials Research Society, 1992.

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49

Tomanek, Robert J., and Robert B. Runyan. Formation of the Heart and Its Regulation. Birkhauser Verlag, 2012.

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50

(Editor), Robert J. Tomanek, and Robert B. Runyan (Editor), eds. Formation of the Heart & Its Regulation (Cardiovascular Molecular Morphogenesis). Birkhauser, 2001.

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