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1

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

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2

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

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3

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

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4

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

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5

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

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6

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

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7

Kramer, Steven L. Bridge approach slab effectiveness: Final report, Research Project GC 8286, Task 35, Bridge Approach Slab Effectiveness. [Olympia, Wash.?]: 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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8

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

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9

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

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10

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

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11

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

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12

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

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13

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

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14

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

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15

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

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16

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

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17

SLAC/KEK, Linear Collider Workshop on Damping Ring (1992 Tsukuba-shi Japan). Proceedings of the SLAC/KEK Linear Collider Workshop on Damping Ring: June 8-10, 1992, KEK, Tsukuba, Japan. Tsukuba-shi, Ibaraki-ken, Japan: National Laboratory for High Energy Physics, 1992.

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18

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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19

Specialists' Meeting on Shielding Aspects of Accelerators, Targets, and Irradiation Facilities (6th 2002 Menlo Park, Calif.). Proceedings of the Sixth Meeting of the Task Force on Shielding Aspects of Accelerators, Targets and Irradiation Facilities: Stanford Linear Accelerator Center (SLAC), Menlo Park, CA, USA, 10-12 April 2002. Paris: Nuclear Energy Agency, Organisation for Economic Co-operation and Development, 2004.

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20

Slab-on-grade construction. [Ottawa]: CMHC, 2000.

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21

Brito, Jorge de, Ravindra K. Dhir OBE, Chao Qun Lye, and Raman Mangabhai. Sustainable Construction Materials: Copper Slag. Elsevier Science & Technology, 2016.

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22

Sustainable Construction Materials: Copper Slag. Elsevier Science & Technology, 2016.

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23

Sustainable Construction Materials: Copper Slag. Elsevier, 2017. http://dx.doi.org/10.1016/c2015-0-00465-8.

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24

Wang, George. Utilization of Slag in Civil Infrastructure Construction. Elsevier Science & Technology, 2016.

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25

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

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26

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

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27

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

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28

The Utilization of Slag in Civil Infrastructure Construction. Elsevier, 2016. http://dx.doi.org/10.1016/c2014-0-03995-0.

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29

Fucic, Aleksandra, Ivanka Netinger Grubesa, Ivana Barisic, and Samitinjay S. Bansode. Characteristics and Uses of Steel Slag in Building Construction. Elsevier Science & Technology, 2016.

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30

Characteristics and Uses of Steel Slag in Building Construction. Elsevier, 2016. http://dx.doi.org/10.1016/c2014-0-03994-9.

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31

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

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32

International Council for Building Research, Studies and Documentation., ed. Early striking and improved backpropping for efficient slab construction u. BRE, 2001.

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33

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

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34

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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35

Guide for Concrete Floor and Slab Construction (ACI Committee Report 302.1). Amer Concrete Inst, 1996.

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36

Guide for Concrete Floor and Slab Construction (Seminar Course Manuals, 4). Amer Concrete Inst, 1996.

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37

Mercati, Flavio. Shape Dynamics and the Linking Theory. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198789475.003.0012.

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This chapter explains in detail the current Hamiltonian formulation of SD, and the concept of Linking Theory of which (GR) and SD are two complementary gauge-fixings. The physical degrees of freedom of SD are identified, the simple way in which it solves the problem of time and the problem of observables in quantum gravity are explained, and the solution to the problem of constructing a spacetime slab from a solution of SD (and the related definition of physical rods and clocks) is described. Furthermore, the canonical way of coupling matter to SD is introduced, together with the operational definition of four-dimensional line element as an effective background for matter fields. The chapter concludes with two ‘structural’ results obtained in the attempt of finding a construction principle for SD: the concept of ‘symmetry doubling’, related to the BRST formulation of the theory, and the idea of ‘conformogeometrodynamics regained’, that is, to derive the theory as the unique one in the extended phase space of GR that realizes the symmetry doubling idea.
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38

Khaleel, Mohammad Amhad. Development of design criteria for continuous skew slab-and-girder bridges /Mohammad A.A. Khaleel. 1988.

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39

Fanselow, Gisbert. Syntactic and Prosodic Reflexes of Information Structure in Germanic. Edited by Caroline Féry and Shinichiro Ishihara. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199642670.013.40.

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This chapter deals with syntactic and prosodic reflexes of information structure in the Germanic languages. It begins with an overview of givenness and word order variation in the TP, along with aboutness topics and the prosodic prominence of topics and foci. It then considers the postulation of a focus head in Germanic and how contrast seems to intensify the acoustic properties of topics and foci. It shows how the left edge of verb second clauses acts as a slot for placing contrastive elements in all Germanic languages, but that the position is also filled on purely formal grounds. The article also describes the conditions of information structure that decide whether an XP can go to the position preceding the finite verb/auxiliary in the verb second (V2) constructions. Finally, it discusses two types of V2 constructions: unrestricted V2 constructions and pragmatically restricted V2 constructions.
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40

Andriessen, J. H. J. Verdun 1916: Verdwijnende Getuigen: De Slag in Woord En Beeld. De Bataafsche Leeuw, 2001.

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41

Papakostas, Christos. Dancecapes of Dionysus. Edited by Anthony Shay and Barbara Sellers-Young. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199754281.013.35.

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This paper aims to study dance and its relation to the construction and the negotiation of cultural identity of the ethnic group of locals (dopioi) in the community of Kali Vrysi in the Prefecture of Drama, in Eastern Macedonia (Greece). The linguistic otherness (the villagers spoke a local Slav idiom) of Kalivrysians (Kalivrysiotes) in the past cast doubt on their Greekness. This resulted in social, ethnic, and cultural stigmatization of the community. The dancing ritual of babougera, characterized as distant echo of Dionysian cult, has a central role in the community’s identity formation. A recent example of the appearance of the babougera ritual, the closing ceremony of the Olympic Games in Athens (2004). In this dancescape of modernity, Kalivrysiotes negotiate their identity and appear as “super-Greeks.”
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42

Designing with stone: A guide to the use of marble, granite, slate and stone in modern building construction and decoration. Maidenhead: Ealing Publications Ltd., 1999.

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43

Schiff, Brian. Interpretation in Practice. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780199332182.003.0009.

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“Interpretation in Practice,” Chapter 8 of A New Narrative for Psychology, compares analytic strategies in two studies central to the canon of narrative psychology: Amia Lieblich’s “Looking at Change: Natasha 21” and Michael Bamberg’s “Form and Functions of ‘Slut Bashing’ in Male Identity Constructions in 15-year-olds.” The two studies provide an excellent contrast between competing approaches to narrative research—big story and small story research. Lieblich’s analysis of Natasha’s transition to life in Israel is holistic, concentrating mostly on the person, while Bamberg’s analysis of a group of 15-year-old boys discussing a girl is microanalytic, emphasizing the linguistic and conversational properties that sculpt identity. The chapter enters into the debate on big and small stories, arguing that despite their differences in approach, they employ the same hermeneutic strategies for understanding narratives and would benefit from a more sustained discussion and consideration of the essential questions of who, where, and when.
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44

Berse, Andreas A. Carrera: 50 years on track. 2014.

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