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1

Crews, John H. Measurement of multiaxial ply strength by an off-axis flexure test. National Aeronautics and Space Administration, Langley Research Center, 1992.

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2

Crews, John H. Measurement of multiaxial ply strength by an off-axis flexure test. National Aeronautics and Space Administration, Langley Research Center, 1992.

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3

United States. National Aeronautics and Space Administration., ed. Durability testing of commercial ceramic materials: Final report. National Aeronautics and Space Administration, 1996.

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4

United States. National Aeronautics and Space Administration., ed. Durability testing of commercial ceramic materials: Final report. National Aeronautics and Space Administration, 1996.

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5

Ibrahim, Hisham H. H. Flexural behavior of high strength concrete columns. Dept. of Civil Engineering, University of Alberta, 1994.

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6

Morrell, Roger. Flexural strength testing of ceramics and hardmetals. NPL, 1997.

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7

Alca, Nedim. Effect of size on flexural behaviour of high-strength concrete beams. Dept. of Civil Engineering, University of Alberta, 1993.

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8

J, Cios Krzysztof, and United States. National Aeronautics and Space Administration., eds. Fuzzy sets predict flexural strength and density of silicon nitride ceramics. National Aeronautics and Space Administration, 1993.

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9

Center, Langley Research, ed. Test methods for textile composites. National Aeronautics and Space Administration, Langley Research Center, 1994.

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10

Harrington, M. The torque test: A proposed new test to establish the tensile strength of concrete. Queen Mary and Westfield College, 1998.

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11

Mohammad, Louay N., Mostafa A. Elseifi, Ramendra Das, and Wei Cao. Validation of the Louisiana Interlayer Shear Strength Test for Tack Coat. Transportation Research Board, 2018. http://dx.doi.org/10.17226/25123.

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12

Mohammad, Louay N., Mostafa A. Elseifi, Ramendra Das, and Wei Cao. Validation of the Louisiana Interlayer Shear Strength Test for Tack Coat. Transportation Research Board, 2018. http://dx.doi.org/10.17226/25458.

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13

Brooks, Chad Matthew. Weld strength and crack growth ductility from the Lazy-L test. Available from National Technical Information Service, 1995.

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14

Rajulu, Sudhakar L. A comparison of hand grasp breakaway strengths and bare-handed grip strengths of the astronauts, SML III test subjects, and the subjects from the general population. Lyndon B. Johnson Space Center, 1993.

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15

Establishment, Building Research, ed. Measuring the compressive strength of masonry materials: The screw pull-out test. Building Research Establishment, 1997.

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16

Hal, Rothman. A test of adversity and strength: Wildland fire in the National Park system. U.S. National Park Service], 2005.

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17

Cold Regions Research and Engineering Laboratory (U.S.), ed. Axial double-ball test versus the uniaxial unconfined compression test for measuring the compressive strength of freshwater and sea ice. US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1993.

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18

Ozyildirim, H. Celik. Exploratory investigation of high-performance fiber-reinforced cementitious composites for crack control. Virginia Transportation Research Council, 2008.

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19

Hanhijarvi, Antti. Computational optimisation of test specimen for planar shear strength tests of wood based panels. VTT, Technical Research Centre of Finland, 1998.

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20

Bansal, Narottam P. Solid state synthesis and properties of monoclinic celsian. National Aeronautics and Space Administration, 1996.

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21

Curtis, P. T. An improved engineering test method for the measurement of the compressive strength of unidirectional carbon fibrecomposites. HMSO, 1991.

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22

P, Bansal Narottam, Gyekenyesi John P, and NASA Glenn Research Center, eds. Dependency of shear strength on test rate in SiC/BSAS ceramic matrix composite at elevated temperature. NASA Glenn Research Center, 2003.

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23

Choi, Sung Rak. Dependency of shear strength on test rate in SiC/BSAS ceramic matrix composite at elevated temperature. NASA Glenn Research Center, 2003.

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24

United States. National Aeronautics and Space Administration., ed. Milestone 5: Test report - task 5, subtask 5.2, tile to foam strength tests : cooperative agreement NCC8-39. Rockwell Aerospace, Space Systems Division, 1994.

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25

United States. National Aeronautics and Space Administration., ed. Milestone 5: Test report - task 5, subtask 5.2, tile to foam strength tests : cooperative agreement NCC8-39. Rockwell Aerospace, Space Systems Division, 1994.

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26

Mital, Subodh K. Fiber pushout test: A three-dimensional finite element computational simulation. NASA, 1990.

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27

Li, Jian. Simplified data reduction methods for the ECT test for mode III interlaminar fracture toughness. National Aeronautics and Space Administration, Langley Research Center, 1995.

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28

M, Manderscheid J., and Lewis Research Center, eds. Simplified cyclic structural analyses of SSME turbine blades. National Aeronautics and Space Administration, Lewis Research Center, 1986.

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29

Kogan, Efim. Ordinary differential equations and calculus of variations. INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1058922.

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The textbook contains theoretical information in a volume of the lecture course are discussed in detail and examples of typical tasks and test tasks and tasks for independent work. 
 Designed for students enrolled in directions of preparation 15.03.03 "Applied mechanics" 01.03.02 "mathematics" (specialization "Mathematical modeling"), major 23.05.01 "Land transport and technological means" (specialization "Dynamics and strength of transport and technological systems"). Can be used by teachers for conducting practical classes.
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30

Standard test method for flexural strength of advanced ceramics at ambient temperature. ASTM International, 2008.

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31

Durability testing of commercial ceramic materials: Final report. National Aeronautics and Space Administration, 1996.

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32

A. C. I. American Concrete Institute. ACI: Concrete Strength Testing Technician - Testing for Flexural Strength of Concrete Specimens. Elsevier Science & Technology Books, 2009.

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33

Cadick, C. Test of Strength. Independently Published, 2022.

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34

Moran-Wall, Christine. Test of Strength. Austin Macauley Publishers Ltd., 2023.

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35

Moran-Wall, Christine. Test of Strength. Austin Macauley Publishers Ltd., 2023.

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36

Heeringa, Roger L. The ultimate strength flexural behavior of reinforced concrete block masonry. 1989.

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37

Fuzzy sets predict flexural strength and density of silicon nitride ceramics. National Aeronautics and Space Administration, 1993.

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38

Desktop Strongman: Test Your Strength! Running Press, 2020.

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39

Hon, John Wai Man. Effect of mix parameter on the flexural strength of steel fibre reinforced concrete. 2000.

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40

Joe, Kim. Prime Test: Endurance and Strength Booster. Independently Published, 2019.

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41

Field-use early-strength shotcrete test system. Dept. of Health and Human Services, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 2011.

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42

Stonelifting: An Ancient Test of Strength Revived. Independently Published, 2018.

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43

Storm, Christian George, and W. C. Cope. Sand Test for Determining the Strength of Detonators. Creative Media Partners, LLC, 2023.

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44

Test Your Go Strength: Fifty Whole Board Problems. Ishi Press International, 1991.

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45

Test Methods for Flexural Properties of Unreinforced and Reinforced Plastics and Electrical Insulating Materials (D790). Astm Intl, 1990.

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46

Vogt, James J. Evaluation of the tensile and flexural properties and internal bond of medium density fiberboard using stress wave speed and attenuation. 1985.

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47

Srividya, S., and K. Chandrasekharan Nair. An invitro sudy on the flexural strength of porcelain veneers: Influence of preparation design and bonding agent. LAP Lambert Academic Publishing, 2012.

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48

III, Hood Nicholas. Test, the Strength, the Endurance and the Way Out. Independent Publisher, 2015.

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49

Ferdy. Graphbook for Mathematics: Test Your Strength with Graph Work. Independently Published, 2020.

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50

Effects of thermal and mechanical fatigue on the flexural strength of G40-600/PMR-15 cross-ply laminates. NASA, 1993.

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