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1

Blewett, Jennifer Mary. Micromanipulation of plant cell mechanical properties. University of Birmingham, 2000.

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2

D, Vannucci Raymond, and United States. National Aeronautics and Space Administration., eds. Mechanical properties characterization of composite sandwich materials intended for space antenna applications. National Aeronautics and Space Administration, 1987.

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3

Fourné, Franz. Synthetic fibers: Machines and equipment, manufacture, properties : handbook for plant engineering, machine design, and operation. Hanser/Gardner Publications, 1998.

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4

Feughelman, Max. Mechanical properties and structure of alpha-keratin fibres: Wool, human hair, and related fibres. UNSW Press, 1997.

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5

Feughelman, Max. Mechanical properties and structure of alpha-keratin fibres: Wool, human hair and related fibres. UNSW Press, 1997.

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6

Jörg, Müssig, ed. Industrial application of natural fibres: Structure, properties, and technical applications. Wiley, 2010.

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7

Persson, Sverker. Mechanics of cutting plant material. American Society of Agricultural Engineers, 1987.

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8

W, Wallace John, and Langley Research Center, eds. Mechanical properties of the fiberglass prepreg system used for the National Transonic Facility replacement blade set. NASA Langley Research Center, 1991.

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9

Kullaa, Jyrki. Constitutive modelling of fibre-reinforced brittle materials. VTT, Technical Research Centre of Finland, 1998.

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10

Bansal, Narottam P. Effects of fiber/matrix interface and its composition on mechanical properties of Hi-Nicalon/celsian composites. National Aeronautics and Space Administration, Glenn Research Center, 1999.

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11

Bansal, Narottam P. Effects of fiber/matrix interface and its composition on mechanical properties of Hi-Nicalon/celsian composites. National Aeronautics and Space Administration, Glenn Research Center, 1999.

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12

Bansal, Narottam P. Effects of fiber/matrix interface and its composition on mechanical properties of Hi-Nicalon/celsian composites. National Aeronautics and Space Administration, Glenn Research Center, 1999.

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13

Center, Langley Research, ed. Processing and properties of fiber reinforced polymeric matrix composites: I.IM7/LARC(TM)-PETI-7 polyimide composites. National Aeronautics and Space Administration, Langley Research Center, 1995.

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14

Fornes, R. E. Report on NASA grant 1562 for research entitled "Effects of high energy radiation on the mechanical properties of epoxy/graphite fiber reinforced composites" covering the period January 1, 1984 - December 31, 1984. National Aeronautics and Space Administration, 1985.

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15

D, Gilbert R., Memory Jasper D, United States. National Aeronautics and Space Administration., and North Carolina State University, eds. Report on NASA grant 1562 for research entitled "Effects of high energy radiation on the mechanical properties of epoxy/graphite fiber reinforced composites" covering the period January 1, 1984 - December 31, 1984. National Aeronautics and Space Administration, 1985.

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16

D, Gilbert R., Memory Jasper D, United States. National Aeronautics and Space Administration., and North Carolina State University, eds. Report on NASA grant 1562 for research entitled "Effects of high energy radiation on the mechanical properties of epoxy/graphite fiber reinforced composites" covering the period January 1, 1984 - December 31, 1984. National Aeronautics and Space Administration, 1985.

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17

1938-, Gyekenyesi John P., Bhatt Ramakrishna T, and Lewis Research Center, eds. Mechanical behavior of fiber reinforced SiC/RBSN ceramic matrix composites: Theory and experiment. Lewis Research Center, 1991.

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18

1938-, Gyekenyesi John P., Bhatt Ramakrishna T, and Lewis Research Center, eds. Mechanical behavior of fiber reinforced SiC/RBSN ceramic matrix composites: Theory and experiment. Lewis Research Center, 1991.

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19

A, Naik Rajiv, and Langley Research Center, eds. A macro-mechanics analysis of a notched metal matrix composite. National Aeronautics and Space Administration, Langley Research Center, 1990.

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20

B, Lease Kevin, and United States. National Aeronautics and Space Administration., eds. Studies of the role of surface treatment and sizing of carbon fiber surfaces on the mechanical properties of composites containing carbon fibers: Final report, Kansas NASA-EPSCoR Program ... National Aeronautics and Space Administration, 1996.

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21

A, Naik Rajiv, and Langley Research Center, eds. A macro-mechanics analysis of a notched metal matrix composite. National Aeronautics and Space Administration, Langley Research Center, 1990.

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22

A, Setlock John, and United States. National Aeronautics and Space Administration., eds. Sapphire reinforced alumina matrix composites. National Aeronautics and Space Administration, 1994.

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23

Mattheck, C. Wood: The internal optimization of trees. Springer, 1995.

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24

Shustov, Yuriy, Sergey Kiryuhin, Aleksandr Davydov, et al. Textile Materials Science: laboratory workshop. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1172012.

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Abstract:
The main types of tests carried out in determining the characteristics of the structure of fibers, threads, webs, their mechanical and physical properties are considered.
 The laboratory workshop is designed to assist students in self-preparation for performing, conducting laboratory work on textile materials science and preparing reports on them, as well as in choosing research areas that can be performed within the framework of a particular laboratory work.
 The construction and content of the laboratory workshop meets the requirements of the federal state educational standards of
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25

Kozlowski, Ryszard Michal, and Malgorzata Muzyczek. Natural Fibers: Properties, Mechanical Behavior, Functionalization and Applications. Nova Science Publishers, Incorporated, 2017.

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26

Thermo-Mechanical Properties of Ceramic Fibres (Research Reports in Materials Science). Parthenon Publishing Group, 1986.

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27

Gebai, Sarah S., Ali M. Hallal, and Mohammad S. Hammoud. Mechanical Properties of Natural Fiber Reinforced Polymers: Emerging Research and Opportunities. IGI Global, 2018.

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28

Bunsell, A. R. Handbook of Tensile Properties of Textile and Technical Fibres. Elsevier Science & Technology, 2009.

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29

Physical properties of plant and animal materials: Structure, physical characteristics, and mechanical properties. 2nd ed. Gordon and Breach, 1986.

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30

Mohsenin, Nuri N. Physical Properties of Plant and Animal Materials: v. 1: Physical Characteristics and Mechanical Properties. Routledge, 2020. http://dx.doi.org/10.4324/9781003062325.

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31

Physical Properties of Plant and Animal Materials : V. 1: Physical Characteristics and Mechanical Properties. Taylor & Francis Group, 2020.

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32

Mohsenin, Nuri N. Physical Properties of Plant and Animal Materials : V. 1: Physical Characteristics and Mechanical Properties. Taylor & Francis Group, 2020.

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33

Mohsenin, Nuri N. Physical Properties of Plant and Animal Materials : V. 1: Physical Characteristics and Mechanical Properties. Taylor & Francis Group, 2020.

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34

Mohsenin, Nuri N. Physical Properties of Plant and Animal Materials : V. 1: Physical Characteristics and Mechanical Properties. Taylor & Francis Group, 2020.

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35

Optical fiber, fiber coating, and connector ferrule geometry: Results of interlaboratory measurement comparisons. U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1995.

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36

Zafeiropoulos, Nikolaos E. Interface Engineering of Natural Fibre Composites for Maximum Performance. Elsevier Science & Technology, 2016.

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37

Fourne, Franz. Synthetic Fibers: Machines and Equipment, Manufacture, Properties : Handbook for Plant Engineering, Machine Design, and Operation. Hanser Gardner Publications, 1999.

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38

Effect of fiber reinforcements on thermo-oxidative stability and mechanical properties of polymer matrix composites. National Aeronautics and Space Administration, 1991.

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39

Persson, Sverker. Mechanics of cutting plant material. Am. Soc. Agricultural Engineers, 1987.

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40

Feughelman, Max. Mechanical Properties and Structure of Alpha-Keratin Fibers: Wool, Human Hair and Related Fibres. UNSW Press, 1996.

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41

Ayala, Angel Andres Leal. Effect of Intermolecular Hydrogen Bonding on the Micro-Mechanical Properties of High Performance Organic Fibers. ProQuest, UMI Dissertation Publishing, 2012.

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42

Synthetic fibers: Machines and equipment, manufacture, properties : handbook for plant engineering, machine design, and operation. Hanser, 1999.

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43

Amir Moohmend & Sandeep Salhotra. Study of Mechanical Properties of Concrete by Incorporation of Coated and Uncoated Pet Fibers (coated with Ggbs). Independently Published, 2018.

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44

A macro-mechanics analysis of a notched metal matrix composite. National Aeronautics and Space Administration, Langley Research Center, 1990.

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45

Kubler, Hans, and C. Mattheck. Wood: The Internal Optimization of Trees. Springer, 1997.

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46

Kubler, Hans, and C. Mattheck. Wood: The Internal Optimization of Trees (Springer Series in Wood Science). Springer-Verlag Telos, 1995.

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47

Zydroń, Tymoteusz. Wpływ systemów korzeniowych wybranych gatunków drzew na przyrost wytrzymałości gruntu na ścinanie. Publishing House of the University of Agriculture in Krakow, 2019. http://dx.doi.org/10.15576/978-83-66602-46-5.

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The aim of the paper was to determine the influence of root systems of chosen tree species found in the Polish Flysch Carpathians on the increase of soil shear strength (root cohesion) in terms of slope stability. The paper's goal was achieved through comprehensive tests on root systems of eight relatively common in the Polish Flysch Carpathians tree species. The tests that were carried out included field work, laboratory work and analytical calculations. As part of the field work, the root area ratio (A IA) of the roots was determined using the method of profiling the walls of the trench at a
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