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1

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

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2

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

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3

ACI Committee 302. Guide for concrete floor and slab construction. American Concrete Institute, 1997.

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4

Soltesz, Steven M. Injected polyurethane slab jacking: Interim report. Oregon Dept. of Transportation, Research Group, 2000.

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5

Soltesz, Steven M. Injected polyurethane slab jacking: Final report. Oregon Dept. of Transportation, Research Group, 2002.

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6

Association, Portland Cement, ed. Concrete slab surface defects: Causes, prevention, repair. Portland Cement Association, 1987.

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7

Kwieciński, Marek. Collapse load design of slab-beam systems. Ellis Horwood, 1989.

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8

Gross, John L. Analysis of shoring loads and slab capacity for multistory concrete construction. U.S. Dept. of Commerce, National Bureau of Standards, 1986.

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9

Bahnfleth, William P. Three-dimensional modelling of heat transfer from slab floors. US Army Corps of Engineers, Construction Engineering Research Laboratory, 1989.

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10

Merritt, David K. Construction of the Iowa Highway 60 precast prestressed concrete pavement bridge approach slab demonstration project. Iowa Highway Research Board, 2007.

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11

Merritt, David K. Construction of the Iowa Highway 60 precast prestressed concrete pavement bridge approach slab demonstration project. Iowa Highway Research Board, 2007.

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12

Tompkins, L. Khazanovich and D. Incorporating Slab/Underlying Layer Interaction into the Concrete Pavement Analysis Procedures. Transportation Research Board, 2017. http://dx.doi.org/10.17226/24842.

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13

Kramer, George. Slab, beam & girder bridges in Oregon: Historic context statement. Heritage Research Associates, 2004.

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14

Kramer, George. Slab, beam & girder bridges in Oregon: Historic context statement. Heritage Research Associates, 2004.

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15

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

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16

Daly, Albert F. Assessment implications from tests on a model concrete beam and slab bridge. Transport and Road Research Laboratory, Structures Group, Bridges Division, 1991.

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17

Jutila, Aarne. The effect of bracing on the behaviour of double girder slab bridges. Finnish Academy of Technical Sciences, 1985.

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18

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

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19

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

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20

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

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21

Office, Energy Efficiency. Energy efficiency in new housing: Site practice for tradesmen ground floors insulating below an in-situ concrete slab. Department of the Environment, 1993.

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22

Great Britain. Energy Efficiency Office. and Building Research Energy Conservation Support Unit., eds. Energy efficiency in new housing: Site practice for tradesmen : ground floors: insulating below an in-situ concrete slab. Energy Efficiency Office, 1993.

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23

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

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24

Aris, Anuar Bin Mohd. Warping of concrete slabs. University of Birmingham, 1989.

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25

K, Dhir Ravindra, Newlands Moray D, and Harrison T. A, eds. Concrete floors and slabs. Thomas Telford, 2002.

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26

Association, Concrete Manufacturers. Precast concrete floor slabs. 2nd ed. Concrete Manufacturers Association, 1999.

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27

Bennett, D. F. H. Structural concrete updates: High-strength concrete, lightweight concrete and shearheads. Published on behalf of the industry sponsors of the Reinforced Concrete Campaign by the British Cement Association, 1990.

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28

Barnbrook, G. Ground-supported concrete floor slabs. Cement and Concrete Association, 1987.

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29

Barnbrook, G. Ground-supported concrete floor slabs. Cement and Concrete Association, 1987.

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30

Barnbrook, G. Ground-supported concrete floor slabs. Cement and Concrete Association, 1987.

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31

Canada Mortgage and Housing Corporation., ed. Airtightness of concrete basement slabs. CMHC, 2000.

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32

Dmitrievich, Glukhovskiĭ Viktor, ed. Proizvodstvo betonov i konstrukt͡s︡iĭ na osnove shlakoshchelochnykh vi͡a︡zhushchikh. "Budivelʹnyk", 1988.

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33

Lummerding, Terry. Slabjacking. Terry Lummerding, 1998.

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34

360, American Concrete Institute Committee. Design of slabs on grade. American Concrete Institute, 1992.

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35

ACI Committee 421. Guide to shear reinforcement for slabs. American Concrete Institute, 2008.

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36

Farny, James A. Concrete floors on ground. 3rd ed. Portland Cement Association, 2001.

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37

Krichevskiĭ, A. P. Konstrukt͡s︡ionnyĭ shlakopemzobeton dli͡a︡ promyshlennogo stroitelʹstva. Stroĭizdat, 1986.

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38

Kiernożycki, Włodzimierz. Rysy i naprężenia wywołane wpływami technologicznymi w masywnych płytach fundamentowych. Wydawn. Uczelniane Politechniki Szczecińskiej, 1986.

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39

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. Nauchno-issl. proektno-konstruktorskiĭ i tekhnologicheskiĭ in-t betona i zhelezobetona Gosstroi͡a︡ SSSR, 1990.

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40

Association, British Cement. Deflections in concrete slabs and beams: Report of a joint project of the British Cement Association, The Concrete Society and The Concrete Centre. Concrete Society, 2005.

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41

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

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42

St. Onge, Ruff Construction Services., ed. Concrete floor slabs for industrial facilities. St. Onge, Ruff Construction Services, 1997.

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43

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

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44

Martin, Ross. Guide for surface finish of concrete slabs on ground. American Society of Concrete Contractors, 2006.

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45

Kosmatka, Steven H. Finishing concrete slabs with color and texture. Portland Cement Association, 1991.

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46

Kosmatka, Steven H. Finishing concrete slabs with color and texture. 2nd ed. Portland Cement Association, 2004.

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47

Serykh, R. L. Konstrukt͡s︡ii iz shlakoshchelochnykh betonov. Stroĭizdat, 1988.

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48

ACI Committee 226., ed. Ground granulated blast-furnace slag as a cementitious constituent in concrete. American Concrete Institute, 1988.

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49

ACI Committee 302. Guide for concrete slabs that receive moisture-sensitive flooring materials. American Concrete Institute, 2006.

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50

Pajari, Matti. Shear resistance of prestressed hollow core slabs on flexible supports. Technical Research Centre of Finland, 1995.

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