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1

Shepherd, Peter. Integrated Circuit Design, Fabrication and Test. Macmillan Education UK, 1996. http://dx.doi.org/10.1007/978-1-349-13656-8.

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2

2003, Shukla Prashant, and Bhabha Atomic Research Centre, eds. Enstar detector: Fabrication and test measurement. Bhabha Atomic Research Centre, 2003.

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3

C, O'Shea Donald, ed. Diffractive optics: Design, fabrication, and test. SPIE Optical Engineering Press, 2004.

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4

Shepherd, Peter. Integrated circuit design, fabrication, and test. McGraw-Hill, 1996.

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5

Rogo, C. Variable area radial turbine fabrication and test program. Army Aviation Research & Technology Activity, Propulsion Directorate, 1986.

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6

Marable, R. W. Design, fabrication, and test of the RL10 derivative II chamber/primary nozzle. Pratt and Whitney Aircraft, 1989.

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7

Roc, Berenguer, and Meléndez Juan 1974-, eds. GPS & Galileo: Dual RF front-end receiver and design, fabrication, and test. McGraw-Hill, 2009.

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8

Sharp, G. Richard. A new fabrication method for precision antenna reflectors for space flight and ground test. Lewis Research Center, 1991.

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9

Stoney, Robert Brian. Design, fabrication and test of a vertical attitude takeoff and landing unmanned air vehicle. Naval Postgraduate School, 1993.

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10

United States. National Aeronautics and Space Administration., ed. Test plans, lightweight durable TPS tasks, 1,2,4,5, and 6. Rockwell Aerospace, Space Systems Division, 1994.

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11

United States. National Aeronautics and Space Administration., ed. High-temperature test facility at the NASA Lewis Engine Components Research Laboratory. National Aeronautics and Space Administration, 1990.

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12

United States. National Aeronautics and Space Administration., ed. High-temperature test facility at the NASA Lewis Engine Components Research Laboratory. National Aeronautics and Space Administration, 1990.

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13

United States. National Aeronautics and Space Administration., ed. High-temperature test facility at the NASA Lewis Engine Components Research Laboratory. National Aeronautics and Space Administration, 1990.

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14

Sargent, Joseph Patrick. A design, fabrication and test of a precision positioning servo drive for a multiplexed imaging system. Naval Postgraduate School, 1991.

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15

Center, Lewis Research, ed. Design considerations for lightweight space radiators based on fabrication and test experience with a carbon-carbon composite prototype heat pipe. National Aeronautics and Space Administration, Lewis Research Center, 1998.

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16

J, Anderson William. Roller-gear drives for robotic manipulators, design, fabrication and test: Final report for NASA Lewis Research Center, contract NAS 3-25803. National Aeronautics and Space Administration, 1991.

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17

J, Anderson William, and United States. National Aeronautics and Space Administration., eds. Roller-gear drives for robotic manipulators, design, fabrication and test: Final report for NASA Lewis Research Center, contract NAS 3-25803. National Aeronautics and Space Administration, 1991.

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18

J, Anderson William, and United States. National Aeronautics and Space Administration., eds. Roller-gear drives for robotic manipulators, design, fabrication and test: Final report for NASA Lewis Research Center, contract NAS 3-25803. National Aeronautics and Space Administration, 1991.

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19

Center, Lewis Research, ed. Fiber optic control system integration for advanced aircraft: Electro-optic and sensor fabrication, integration, and environmental testing for flight control systems : laboratory test results. Lewis Research Center, NASA, 1994.

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20

Stanley, Ruthberg, and United States. National Bureau of Standards., eds. Development of test structures for characterization of the fabrication and performance of radiation-hardened CCD imagers: Annual report for December 1, 1983 to November 30, 1984. U.S. Dept. of Commerce, National Bureau of Standards, 1986.

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21

Boussey, Jumana. Microsystems Technology: Fabrication, Test & Reliability. ISTE Publishing Company, 2003.

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22

O'Shea, Donald C., Thomas J. Suleski, Alan D. Kathman, and Dennis W. Prather. Diffractive Optics: Design, Fabrication, and Test. SPIE, 2003. http://dx.doi.org/10.1117/3.527861.

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23

Shepherd, Peter. Integrated Circuit Design, Fabrication and Test. Macmillan Education UK, 1996.

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24

Diffractive optics: Design, fabrication, and test. SPIE Press, 2004.

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25

Diffractive Optics: Design, Fabrication, and Test. SPIE, 2003.

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26

MICROSYSTEMS TECHNOLOGY: FABRICATION, TEST AND RELIABILITY; ED. BY JUMANA BOUSSEY. KOGAN PAGE, 2003.

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27

Green sand additives: Properties, applications, and effects of misuse, including indicative test results. 3rd ed. American Foundrymen's Society, 2016.

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28

Development, Fabrication and Ground Test of an Inflatable Structure Space-Flight Experiment. Storming Media, 2003.

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29

Smart Pixels for Optical Processing and Communications: Design, Models, Fabrication and Test. Storming Media, 1998.

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30

(Editor), Donald C. O'Shea, Thomas J. Suleski (Editor), Alan D. Kathman (Editor), and Dennis W. Prather (Editor), eds. Diffractive Optics: Design, Fabrication, and Test (SPIE Tutorial Texts in Optical Engineering Vol. TT62). SPIE Publications, 2003.

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31

The design and fabrication of an optical periscope for core viewing of fast breeder test reactor (FBTR). Bhabha Atomic Research Centre, 2004.

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32

The Design, Fabrication and Test of Feeds, Radiating Elements and LinearSubarrays for a Small Prototype Planar Array Antenna. Storming Media, 2000.

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33

Wünschendorff, E. Traité de Télégraphie Sous-Marine : Historique Composition et Fabrication des Cables Télégraphiques : Immersion et Réparation des Cables Sous-Marins : Essais Électriques : Recherche des défauts : Transmission des Signaux: Exploitation des Ligne... Creative Media Partners, LLC, 2018.

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34

Design considerations for lightweight space radiators based on fabrication and test experience with a carbon-carbon composite prototype heat pipe. National Aeronautics and Space Administration, Glenn Research Center, 2002.

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35

National Aeronautics and Space Administration (NASA) Staff. Design Considerations for Lightweight Space Radiators Based on Fabrication and Test Experience with a Carbon-Carbon Composite Prototype Heat Pipe. Revised. Independently Published, 2018.

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36

Considerations in the Selection and Evaluation of Interim Petroleum-Based Coatings. AMPP, 1987. https://doi.org/10.5006/nace_rp0487-1987.

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Scope The purpose of this recommended practice is to inform industry of considerations in the selection and performance criteria of interim petroleum-based coatings. Quality control criteria are listed to enable the manufacturer and user to select appropriate test procedures to maintain prescribed standards. Interim petroleum-based coatings, formulated specifically for temporary corrosion prevention, have been used for more than 50 years to prevent a wide variety of corrosion problems. The type of coating selected depends on performance requirements; traditionally, that the coating can: (1) be
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37

Sarkar, Ajoy K., Ingrid Johnson, and Allen C. Cohen. J.J. Pizzuto’s Fabric Science. 12th ed. Bloomsbury Publishing Inc, 2023. http://dx.doi.org/10.5040/9781501367816.

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The twelfth edition of J.J. Pizzuto’s Fabric Science provides the most current and comprehensive overview and introduction to the textile industry--from fibers and finishes to applications in fashion design, fashion business, fashion merchandising, apparel product development, textile production management, and interior design. With an increased emphasis on textile sustainability, this best-selling book continues to meet the needs of both students and professionals in the textile, fashion, and related industries. Based on their combined experience in both education and the industry, the author
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