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1

Ajdukiewicz, Andrzej. Reinforced-concrete slab-column structures. Amsterdam: Elsevier, 1990.

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2

Ajdukiewicz, Andrzej. Reinforced-concrete slab-column structures. Amsterdam: Elsevier, 1989.

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3

Kwieciński, Marek. Collapse load design of slab-beam systems. Chichester, West Sussex, England: Ellis Horwood, 1989.

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4

American Concrete Institute. Committee 352. Recommendations for design of slab-column connections in monolithic reinforced concrete structures. [Detroit]: American Concrete Institute, 1988.

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5

Eitel, Amy. Development of a load test for the evaluation and rating of short-span reinforced concrete slab bridges. Cleveland, Ohio: Dept. of Civil Engineering, Case Western Reserve University, 2002.

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6

Gibbs, Robert J. Comparative study of design methods for two-way reinforced concrete slab systems: An engineering report in civil engineering. Springfield, Va: Available from the National Technical Information Service, 1990.

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7

L, Gamble W., ed. Reinforced concrete slabs. 2nd ed. New York: Wiley, 2000.

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8

Monotti, Mario. Reinforced concrete slabs: Compatibility limit design. Zurich: Verlag der Fachvereine Hochschulverlag AG an der ETH Zurich, 2004.

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9

Limit analysis of reinforced concrete slabs. Zurich: Institut für Baustatik und Konstruktion ETH Zürich, 2002.

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10

Strip method design handbook. London: E & FN Spon, 1996.

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11

ACI Committee 421. Guide to shear reinforcement for slabs. Farmington Hills, Mich: American Concrete Institute, 2008.

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12

Design of concrete structures for retaining aqueous liquids: Design tables to BS 8007. London: Thomas Telford, 1996.

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13

Xiao, Yilin. Analyses of reinforced concrete cantilever bridge decks under the live truck loads. Halifax: Nova Scotia CAD/CAM Centre, Dalhousie University, 1997.

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14

Battista, Danny D. Minimum reinforcement requirements for reinforced high-strength concrete slabs. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1993.

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15

Ostertag, Claudia. Use of fiber reinforced concrete in bridge approach slabs. Sacramento, Calif: California Dept. of Transportation, Division of Research and Innovation, 2008.

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16

Design data for rectangular beams and slabs to BS 8110:Part 1. [London]: Palladian, 1987.

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17

G, Ghoneim Mashhour. Strength and stability of reinforced concrete plates under combined inplane and lateral loads. Edmonton, Alta: Dept. of Civil Engineering, University of Alberta, 1992.

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18

Philipose, K. E. Degradation of normal portland and slag cement concrete under load, due to reinforcement corrosion. Chalk River, Ont: Chalk River Laboratories, 1992.

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19

Liu, Rongtang. Development and evaluation of cement-based patching materials for repair of corrosion-damaged reinforced concrete slabs. West Lafayette, Ind: Purdue University Dept. of Civil Engineering, 2001.

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20

Al-Dafiry, Hamoud Ahmed. Impact resistance of reinforced fibrous concrete beams and one-way slabs. Birmingham: University of Birmingham, 1991.

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21

Angelakos, Bill. Experimental study of reinforced concrete slabs subjected to thermal and mechanical loads. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1993.

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22

Samad, Abdul Aziz Abdul. The response of reinforced concrete slabs subjected to biaxial bending and twisting movements. Manchester: University of Manchester, 1994.

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23

Ng, Kee Ee. Effect of alkali silica reaction on the punching shear capacity of reinforced concrete slabs. Birmingham: University of Birmingham, 1991.

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24

Bas, Ayhan. Behaviour of reinforced concrete beam-column connections with floor slabs under bi-directional lateral loading. Ottawa: National Library of Canada, 1990.

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25

Kwieciński, Marek. Projektowanie żelbetowych układów płytowo-żebrowych metodami teorii plastyczności. Warszawa: Państwowe Wydawn. Nauk., 1986.

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26

Leonovich, Sergey, Nikolay Chernoivan, Viktor Tur, and Dmitriy Litvinovskiy. Technology of reconstruction of buildings and structures. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1867636.

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The monograph provides the basics of technology for the production of general construction and finishing works performed during the reconstruction of existing industrial and civil facilities: strengthening and restoration of exploited structures, as well as the construction of new buildings and structures designed at the reconstructed facility. The issues of conducting field surveys of operated buildings and structures in order to prepare a conclusion on the technical condition of load-bearing and enclosing structures are considered. The main design solutions and technology of work during the reconstruction (repair, reinforcement) of load-bearing and enclosing structures of operated facilities made of the following materials are given: monolithic and precast reinforced concrete; metal structures; brickwork; elements of wooden structures. The technology of rehabilitation (repair) of finishing coatings is given: monolithic plaster, wall and floor cladding with ceramic tiles and synthetic coatings, as well as repair of surfaces lined with slabs made of natural materials (granite, marble). The effective technology of construction of building structures of shallow foundations, double-layer insulated brick walls, buildings with a monolithic reinforced concrete supporting frame; the device of a waterproof carpet made of PVC membranes, etc. are described. For civil engineers. It can be useful for students, postgraduates and teachers of technical universities.
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27

Leesti, Peter. Reinforced concrete slab elements in pure torsion. 1985.

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28

Early striking and improved backpropping for efficient flat slab construction. Crowthorne, Berkshire: British Cement Association, 2001.

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29

Khalifa, Waseem U. Investigating the response of reinforced concrete slab elements in pure torsion. 1986.

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30

Construction Engineering Research Laboratories (U.S.), ed. Investigation of the use of visoelastic damping devices to rehabilitate a lightly reinforced concrete slab-column structure. [Champaign, IL]: US Army Corps of Engineers, Construction Engineering Research Laboratories, 1998.

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31

Gamble, William L., and Robert Park. Reinforced Concrete Slabs. Wiley & Sons, Incorporated, John, 2008.

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32

Park, Robert, and William L. Gamble. Reinforced Concrete Slabs, 2nd Edition. Wiley, 1999.

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33

Aci Committee 445--Shear and Torsion. Punching Shear in Reinforced Concrete Slabs. American Concrete Institute, 2005.

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34

Whittle, Robin. Design of Reinforced Concrete Flat Slabs. Construction Industry Research and Information Ass, 1994.

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35

Tang, Kevin *. Membrane action in reinforced concrete slabs. 1989.

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36

The response of reinforced concrete slabs to concentrated loading. Auckland: University of Auckland, School of Engineering, Department of Civil Engineering, 1986.

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37

Hillerborg, A. Strip Method Design Handbook. Taylor & Francis Group, 2017.

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38

I, Brailovskiĭ M., and Nauchno-issledovatelʹskiĭ, proektno-konstruktorskiĭ i tekhnologicheskiĭ institut betona i zhelezobetona (Soviet Union)., eds. Betonnye konstrukt͡s︡ii mashin i oborudovanii͡a︡: Sbornik nauchnykh trudov. Moskva: Nauchno-issl. proektno-konstruktorskiĭ i tekhnologicheskiĭ in-t betona i zhelezobetona Gosstroi͡a︡ SSSR, 1990.

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39

Hillerborg, A. Strip Method Design Handbook. Taylor & Francis Group, 2012.

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40

Hillerborg, A. Strip Method Design Handbook. Taylor & Francis Group, 2003.

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41

Hillerborg, A. Strip Method Design Handbook. Taylor & Francis Group, 1995.

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42

Hillerborg, A. Strip Method Design Handbook. Taylor & Francis Group, 2012.

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43

Johnston, Andrew. Use of steel fibre reinforced concrete to produce structural continuity in precast reinforced concrete slabs. 1999.

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44

Włodzimierz, Starosolski, Ajdukiewicz Andrzej, and Polska Akademia Nauk. Komitet Inżynierii Lądowej i Wodnej., eds. Badania doświadczalne żelbetowych ustrojów płytowo-słupowych. Warszawa: Państwowe Wydawn. Nauk., 1988.

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45

Lovrovich, John Steven. Effects of span-to-thickness ratio on the punching shear behavior of reinforced concrete slabs. 1988.

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46

Association, British Cement, and European Concrete Building Project, eds. Prefabricated punching shear reinforcement for reinforced concrete flat slabs. Crowthorne, Berkshire: British Cement Association, 2001.

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47

Reinforced Concrete Design Charts: For beams and slabs in 30 grade concrete. Spon Press, 1998.

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48

Association, Construction Industry Research and Information, and Robin Whittle. Design of Reinforced Concrete Flat Slabs to B.S.8110 (Report). Construction Industry Research and Information Ass, 1985.

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49

Mensch, L. J. Reinforced Concrete Pocket Book: Containing Useful Tables, Rules and Illustrations for the Convenient Design, Rational Construction and Ready Computation of Cost of Reinforced Concrete Girders, Slabs, Footings etc. , Etc. Creative Media Partners, LLC, 2018.

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50

Mensch, L. J. Reinforced Concrete Pocket Book: Containing Useful Tables, Rules and Illustrations for the Convenient Design, Rational Construction and Ready Computation of Cost of Reinforced Concrete Girders, Slabs, Footings etc. , Etc. Creative Media Partners, LLC, 2018.

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