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1

Bansa, Patrice B. Property characterization of CVD nickel. Ottawa: National Library of Canada, 2001.

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2

Yoo, Abraham. Microstructural and magnetic characterization of electrodeposited nanocrystalline nickel. Ottawa: National Library of Canada, 2003.

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3

Center, Lewis Research, red. Characterization and cycle tests of lightweight nickel electrodes. Cleveland, Ohio: Lewis Research Center, 1989.

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4

Britton, Doris L. Characterization and cycle tests of lightweight nickel electrodes. Cleveland, Ohio: Lewis Research Center, 1989.

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5

Chern, E. James. Eddy current characterization of magnetic treatment of materials. Greenbelt, Md: National Aeronautics and Space Administration, Goddard Space Flight Center, 1992.

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6

Karim, Salma. Preparation and characterization of supported and unsupported nickel complexes. Uxbridge: Brunel University, 1991.

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7

Robertson, Kevin. Characterization of nickel hydroxide sludge using the variable pressure SEM. Montréal, Qué: Dept.of Mining, Metals and Materials Engineering, McGill University, 2004.

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8

C, Wilcox Roy, i United States. National Aeronautics and Space Administration., red. Determination of cleavage planes and fracture characterization of Ni-based single crystal superalloys: Final progress report. Auburn, AL: Dept. of Mechanical Engineering, Auburn University, 1992.

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9

G, Sandefur Paul, Young Clarence P i Langley Research Center, red. Braze alloy process and strength characterization studies for 18 nickel grade 200 maraging steel with application to wind tunnel models. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1991.

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10

Flint, R. Warren. Niche characterization of dominant estuarine benthic species. College Station, Tex: Sea Grant College Program, Texas A&M University, 1986.

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11

Characterization of cobalt-dipped nickel electrodes with Fibrex substrates. [Washington, D.C.]: National Aeronautics and Space Administration, 1995.

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12

Ramachandran, Kartik. Synthesis and characterization of novel materials for electrochemical devices. 1996.

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13

Choo, Tuck Chow. Flow characterization across a diaphragm in a nickel chloride electrowinning cell by laser Doppler velocimetry. 1985.

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14

Characterization of the Surface Film Growth During the Electrochemical Process; Part 1: Nickel - Sea Water System. Storming Media, 1999.

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15

Microtextural Characterization of Shear Textures in the Thermo- Mechanically Affected Zone of Friction Stir Processed Nickel Aluminum Bronze. Storming Media, 2003.

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16

Hudspeth, Quentin. Characterization of Two Carbon-Sixty Systems: Electron-Doped Carbon-sixty Monolayers on Thin-film Metal Underlayers and Composite Films of Carbon-sixty and Nickel. Creative Media Partners, LLC, 2018.

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17

Hudspeth, Quentin. Characterization of Two Carbon-sixty Systems: Electron-doped Carbon-sixty Monolayers on Thin-film Metal Underlayers and Composite Films of Carbon-sixty and Nickel. Dissertation Discovery Company, 2018.

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18

Winkler, Adolf. Reaction studies on nanostructured surfaces. Redaktorzy A. V. Narlikar i Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533046.013.12.

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This article examines the properties of some self-organized nanostructured surfaces with respect to specific model reactions, from a surface-science point of view. It begins with an overview of the most important types of nanostructured surfaces, their preparation and characterization. It then considers the fundamentals of reaction processes, focusing on the kinetics and dynamics of adsorption and desorption. It also describes the experimental techniques used in the context of reaction studies under ultrahigh-vacuum conditions. Finally, it presents some experimental results of model reactions, including hydrogen adsorption and desorption on stepped nickel surfaces, methanol adsorption on self-assembled copper-copper oxide surfaces, and hydrogen desorption and water formation on vanadium-oxide nanostructures on palladium surfaces.
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19

Kupplungen und Kupplungssysteme in Antrieben 2019. VDI Verlag, 2019. http://dx.doi.org/10.51202/9783181023419.

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Der Bericht ist ausschließlich als PDF-Dokument erschienen! Inhalt Vorwort 1 Keynote Mobilitätsszenarien und deren Einfluss auf Einsatz und Entwicklung von Kupplungssystemen – Einfluss aktueller Trends auf die Anforderungen an Kupplungssysteme 3 A. Albers, S. Ott, IPEK-Institut für Produktentwicklung am KIT, Karlsruhe Trockenlaufende Kupplungen – energieeffiziente und zukunftsfähige Systeme Trockenlaufende Lamellenkupplungen – Eine neue Option zur Verwirklichung einer hochintegrierten aktiven Drehmomentregelung für konventionelle und elektrifizierte Antriebe 13 F. Nickel, M. Mühlegger, Miba Frictec GmbH, Roitham, Austria Experimental characterization and modeling of automotive dry clutch friction lining wear – Clutch lifetime prediction 25 M. Hoic´, B. Škugor, J. Deur, University of Zagreb, Zagreb; Croatia; A. Tissot, Ford-Werke GmbH, Cologne Analyse des Schädigungs- und Erholungsverhaltens trockenlaufender Friktionspaarungen 37 T. Klotz, S. Ott, A. Albers, IPEK – In...
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20

Lampman, Steve, red. Weld Integrity and Performance. ASM International, 1997. http://dx.doi.org/10.31399/asm.tb.wip.9781627083591.

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Weld Integrity and Performance is a convenient reference and sourcebook for anyone involved in the application, fabrication, or assessment of welded structures. It provides detailed information on relevant topics including weld solidification, weldability testing, weld characterization, discontinuities and imperfections, cracking phenomena, inspection and evaluation techniques, fatigue and fracture control, fracture mechanics, fitness-for-service testing, repair welding, and weld corrosion. An entire section, the largest by far in the book, covers the basic metallurgy and engineering properties of weldments made from carbon and low-alloy steels, stainless steels, aluminum alloys, titanium alloys, nickel-base alloys, and refractory metals, including tantalum, niobium, molybdenum, and tungsten alloys. The book also provides insights into the origins of failure associated with different welding processes and includes an appendix with information on the weldability of common alloys (including cast irons) as well as process selection guidelines, recommended preheat and interpass temperatures and postweld heat treatments for pipe welds and pressure vessels, and qualification codes and standards. For information on the print version, ISBN 978-0-87170-600-8, follow this link.
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