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1

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

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2

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

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3

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

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4

Kramer, Steven L. Bridge approach slab effectiveness: Final report, Research Project GC 8286, Task 35, Bridge Approach Slab Effectiveness. Washington State Dept. of Transportation, Washington State Transportation Commission, in cooperation with the U.S. Dept. of Transportation, Federal Highway Administration, 1991.

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5

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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6

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

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7

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

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8

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

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9

Building Technologies Program (U.S.), ed. Measure guideline: Air sealing mechanical closets in slab-on-grade homes. U.S. Department of Energy, Energy Efficiency and Renewable Energy, Building Technologies Program, 2012.

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10

Ben, Hunt W. Rustic construction: Making furniture, fixtures and outdoor structures using bark, branches, and slab lumber. Meyerbooks, 1995.

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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

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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13

Nash, G. F. J. Bridges to BS5400: Tables and graphs for simply supported beam and slab design. Constrado, 1985.

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14

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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15

Sasayama, Tadayasu. Tadayasu Sasayama exhibition: Slab constructions. Gallery White Art, 1996.

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16

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

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17

Daniels, Byron J. Good construction practice for composite slabs. Eurpean Convention for Structural Steelwork, 1993.

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18

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

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19

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

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20

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

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21

(Firm), Leading Edge Reports, ed. Construction aggregates--crushed stone, sand, gravel, and slag. Leading Edge Reports, 1990.

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22

Both, Cornelis. The fire resistance of composite steel-concrete slabs. Delft Univ. Press, 1998.

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23

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

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24

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

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25

Buettner, Donald R. PCI manual for the design of hollow core slabs. Prestressed Concrete Institute, 1985.

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26

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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27

Buettner, Donald R. PCI manual for the design of hollow core slabs. 2nd ed. Prestressed Concrete Institute, 1998.

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28

American Society of Civil Engineers. Specifications for the design and construction of composite slabs. And, Commentary on the Specifications for the design and construction of composite slabs. American Society of Civil Engineers, 1985.

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29

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

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30

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

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31

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

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32

Knapton, John. Single pour industrial floor slabs: Specification, design, construction and behaviour. T. Telford, 1999.

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33

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

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34

Rackham, J. W. Design of asymmetric slimflor beams with precast concrete slabs. Steel Construction Institute, 2006.

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35

Fédération internationale de la précontrainte. and Fédération internationale du béton, eds. Recommendations for the design of post-tensioned slabs and foundation rafts. SETO, 1998.

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36

Sven, Kinnunen, and Fédération internationale du béton, eds. Punching of structural concrete slabs: Technical report. International Federation for Structural Concrete, 2001.

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37

Diaz, Alberto Mendoza. Behavior of long prestressed pavement slabs and design methodology. Center for Transportation Research, Bureau of Engineering Research, University of Texas at Austin, 1986.

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38

Madsen, Jens Chr. Slid og slæb: En skildring i ord og billeder af håndværkerlivet i Grønland 1950-1970. Forlaget Atuagkat, 1999.

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39

ACI Committee 340., ed. Design of two-way slabs: In accordance with the strength design method of ACI 318-83. American Concrete Institute, 1985.

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40

Ringo, Boyd C. Designing floor slabs on grade: Step-by-step procedures, sample solutions, and commentary. Aberdeen Group, 1992.

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41

Ringo, Boyd C. Designing floor slabs on grade: Step-by-step procedures, sample solutions, and commentary. 2nd ed. Aberdeen Group, 1996.

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42

New York (State). Metropolitan Transportation Authority. Office of the Inspector General. An investigation into the construction of high-level passenger platforms by the Long Island Rail Road. The Office, 1987.

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43

Leonovich, Sergey, Nikolay Chernoivan, Viktor Tur, and Dmitriy Litvinovskiy. Technology of reconstruction of buildings and structures. 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.
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44

Newhook, John Patrick. The behaviour of steel-free concrete bridge deck slabs under static loading conditions. Nova Scotia CAD/CAM Centre, Dalhousie University, 1997.

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45

Ekinci, Ekrem Bug ra. I slam hukukunda deg is ʹmenin s♯łn♯łr♯ł. Ar♯ł Sanat Yay♯łnevi, 2005.

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46

Slab-on-grade construction. CMHC, 2000.

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47

Zallen, Rubin M., and David B. Peraza. Engineering Considerations for Lift-Slab Construction. American Society of Civil Engineers, 2003.

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48

Guide for Concrete Floor and Slab Construction. Amer Concrete Inst, 2004.

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49

NCCER. 27307-14 Foundations and Slab-On-Grade Trainee Guide. Pearson Education, Limited, 2014.

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50

Offices, American Association Of State Highway and Transportation. Effective Slab Width for Composite Steel Bridge Members. Transportation Research Board National Resear, 2005.

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