Books on the topic 'Elastin fibers'

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1

Chen, Li Che Ted. A unique method of determining the elastic and engineering constants of unidirectional fibre-reinforced composite plates using ultrasound. [Downsview, Ont.]: Department of Aerospace Science and Engineering, University of Toronto, 1990.

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2

Chen, Li Che Ted. A unique method of determining the elastic and engineering constants of unidirectional fibre-reinforced composite plates using ultrasound. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1991.

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3

Johnson, W. S. Elastic-plastic stress concentrations around crack-like notches in continuous fiber reinforced metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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4

Johnson, W. S. Elastic-plastic stress concentrations around crack-like notches in continuous fiber reinforced metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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5

Ramamurthi, Anand. Elastic Fiber Matrices. CRC Press, 2016. http://dx.doi.org/10.1201/9781315370842.

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6

J, Nagem Raymond, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Division, eds. Energy in elastic fiber embedded in elastic matrix containing incident SH wave. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Division, 1989.

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7

National Aeronautics and Space Administration (NASA) Staff. Energy in Elastic Fiber Embedded in Elastic Matrix Containing Incident Sh Wave. Independently Published, 2018.

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8

Elastic Fiber Matrices: Biomimetic Approaches to Regeneration and Repair. Taylor & Francis Group, 2016.

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9

Ramamurthi, Anand, and Chandrasekhar Kothapalli. Elastic Fiber Matrices: Biomimetic Approaches to Regeneration and Repair. Taylor & Francis Group, 2018.

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10

Ramamurthi, Anand, and Chandrasekhar Kothapalli. Elastic Fiber Matrices: Biomimetic Approaches to Regeneration and Repair. Taylor & Francis Group, 2018.

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11

Ramamurthi, Anand, and Chandrasekhar Kothapalli. Elastic Fiber Matrices: Biomimetic Approaches to Regeneration and Repair. Taylor & Francis Group, 2018.

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12

Ramamurthi, Anand, and Chandrasekhar Kothapalli. Elastic Fiber Matrices: Biomimetic Approaches to Regeneration and Repair. Taylor & Francis Group, 2018.

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13

Larry, Dickinson, and United States. National Aeronautics and Space Administration., eds. A final technical report entitled trans-laminar-reinforced (TLR) composites: Under grant #NAG-1-1647. [Williamsburg, VA: College of] William & Mary, 1997.

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14

Larry, Dickinson, and United States. National Aeronautics and Space Administration., eds. A final technical report entitled trans-laminar-reinforced (TLR) composites: Under grant #NAG-1-1647. [Williamsburg, VA: College of] William & Mary, 1997.

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15

A final technical report entitled trans-laminar-reinforced (TLR) composites: Under grant #NAG-1-1647. [Williamsburg, VA: College of] William & Mary, 1997.

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16

A, Leckie Frederick, and Lewis Research Center, eds. Mechanical behavior of a continuous fiber reinforced aluminum matrix composite subjected to transverse and thermal loading. [Cleveland, Ohio]: National Aeronautics and Space Administration, Lewis Research Center, 1991.

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17

1951-, Pindera M. J., Wilt Thomas E, and United States. National Aeronautics and Space Administration., eds. Influence of fiber architecture on the elastic and inelastic response of metal matrix composites. [Washington, D.C.]: National Aeronautics and Space Administration, 1995.

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18

Influence of fiber architecture on the elastic and inelastic response of metal matrix composites. [Washington, D.C.]: National Aeronautics and Space Administration, 1995.

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19

Center, NASA Glenn Research, ed. Implementation of fiber substructuring into strain rate dependent micromechanics analysis of polymer matrix composites. Cleveland, Ohio: National Aeronautics and Space Administration, Glenn Research Center, 2001.

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20

Elastic-plastic stress concentrations around crack-like notches in continuous fiber reinforced metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1987.

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21

Elasto-plastic analysis of interface layers for fiber reinforced metal matrix composites. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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22

A, Leckie Frederick, and United States. National Aeronautics and Space Administration., eds. Elasto-plastic analysis of interface layers for fiber reinforced metal matrix composites. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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23

United States. National Aeronautics and Space Administration., ed. Elastic-plastic finite element analyses of an unidirectional, 9 vol % tungsten fiber reinforced copper matrix composite. [Washington, DC: National Aeronautics and Space Administration, 1993.

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24

United States. National Aeronautics and Space Administration., ed. Elastic-plastic finite element analyses of an unidirectional, 9 vol % tungsten fiber reinforced copper matrix composite. [Washington, DC: National Aeronautics and Space Administration, 1993.

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25

United States. National Aeronautics and Space Administration., ed. Elastic-plastic finite element analyses of an unidirectional, 9 vol % tungsten fiber reinforced copper matrix composite. [Washington, DC: National Aeronautics and Space Administration, 1993.

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26

United States. National Aeronautics and Space Administration., ed. Elastic-plastic finite element analyses of an unidirectional, 9 vol % tungsten fiber reinforced copper matrix composite. [Washington, DC: National Aeronautics and Space Administration, 1993.

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27

Datta, Debasish. Optical Networks. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198834229.001.0001.

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This book presents an in-depth deliberation on optical networks in four parts, capturing the past, present, and ensuing developments in the field. Part I has two chapters presenting an overview of optical networks and the enabling technologies. Part II has three chapters dealing with the single-wavelength optical networks: optical LANs/MANs, optical access networks using passive optical network architecture, SONET/SDH, optical transport network and resilient packet ring. Part III consists of four chapters on WDM-based optical networks, including WDM-based local/metropolitan networks (LANs/MANs) using single and multihop architectures over passive-star couplers, WDM/TWDM access networks as an extension of PONs with WDM transmission, WDM metro ring networks covering circuit-switched (using point-to-point WDM and wavelength-routed transmission) plus packet-switched architectures and WDM long-haul backbone networks presenting the offline and online design methodologies using wavelength-routed transmission. Part IV deals with some selected topics in six chapters. The first deals with transmission impairments and power-consumption issues in optical networks, while the next three chapters deal with the survivable optical networks, network control and management techniques, including GMPLS, ASON, and SDN/SDON, and datacenter networks using electrical, optical, and hybrid switching techniques. The final two chapters present elastic optical networks using flexible grid for better utilization of the optical-fiber spectrum and optical packet and burst-switched networks. The three appendices present the basics of the linear programming techniques, noise processes encountered in the optical communication systems, and the fundamentals of queuing theory and its applications in telecommunication networks. (238 words)
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28

A, Bahei-El-Din Y., Mirdamadi M, and Langley Research Center, eds. Time-dependent deformation of titanium metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1995.

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29

Time-dependent deformation of titanium metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1995.

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30

A, Bahei-El-Din Y., Mirdamadi M, and Langley Research Center, eds. Time-dependent deformation of titanium metal matrix composites. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1995.

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31

Ryan, Victoria, Arthur Marsh, and John B. Amethurst. Historical Directory of Trade Unions: Cotton, Wool and Worsted, Linen and Jute, Silk, Elastic Web, Lace and Net, Hosiery and Knitwear, Textile Finis (Historical Directory of Trade Unions). Ashgate Publishing, 1994.

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32

Ryan, Victoria, and Arthur Marsh. Historical Directory of Trade Unions: Volume 4, Including Unions in Cotton, Wood and Worsted, Linen and Jute, Silk, Elastic Web, Lace and Net, Hosiery and Knitwear, Textile Finishing, Tailors and Garment Workers, Hat and Cap, Carpets and Textile Engineering. Taylor & Francis Group, 2016.

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33

Ryan, Victoria, and Arthur Marsh. Historical Directory of Trade Unions: Volume 4, Including Unions in Cotton, Wood and Worsted, Linen and Jute, Silk, Elastic Web, Lace and Net, Hosiery and Knitwear, Textile Finishing, Tailors and Garment Workers, Hat and Cap, Carpets and Textile Engineering. Taylor & Francis Group, 2016.

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