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1

Casandjian, Charles, Noël Challamel, Christophe Lanos, and Jostein Hellesland. Reinforced Concrete Beams, Columns and Frames. John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118639511.

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2

Hellesland, Jostein, Noël Challamel, Charles Casandjian, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames. John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118635360.

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3

Emara, Mohamed Basil. Shear deformations in reinforced concrete frames. National Library of Canada, 1990.

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4

Cox, Wilfred. Nonlinear analysis of reinforced concrete portal frames. University of East London, 2001.

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5

Casandjian, Charles. Reinforced concrete beams, columns and frames: Mechanics and design. ISTE, 2013.

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6

Elezaby, Yehia K. Modelling and design of unbraced reinforced concrete frames. Dept. of Civil Engineering, University of Alberta, 1992.

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7

Fulop, Alexander L. Deformation-controlled procedure for nonlinear analysis of reinforced concrete frames. National Library of Canada = Bibliothèque nationale du Canada, 1993.

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8

Pettinga, J. Didier. Dynamic behaviour of reinforced concrete frames designed with direct displacement- based design. Rose school, 2005.

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9

Sullivan, Timothy J. Seismic design of frame-wall structures. IUSS Press, 2006.

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10

Goodsir, W. J. The design of coupled frame-wall structures for seismic actions. Dept. of Civil Engineering, University of Canterbury, 1985.

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11

Moehle, Jack P. Review of seismic research results on existing buildings: Product 3.1 of the Proposition 122 Seismic Retrofit Practices Improvement Program. California Seismic Safety Commission, 1994.

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12

béton, Comité euro-international du, ed. RC frames under earthquake loading: State of the art report. T. Telford, 1996.

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13

Establishment, Building Research, ed. Innovation in concrete frame construction, 1995-2015. BRE, 2005.

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14

Akanshu, Sharma, and Bhabha Atomic Research Centre, eds. Experimental and analytical investigation on behavior of scaled down reinforced concrete framed structure under monotonic pushover loads. Bhabha Atomic Research Centre, 2008.

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15

Akanshu, Sharma, and Bhabha Atomic Research Centre, eds. Experimental and analytical investigation on behavior of scaled down reinforced concrete framed structure under monotonic pushover loads. Bhabha Atomic Research Centre, 2008.

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16

Sharma, Akanshu. Nonlinear seismic analysis of reinforced concrete framed structures considering joint distortion. Bhabha Atomic Research Centre, 2011.

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17

Association, British Cement, and Reinforced Concrete Council, eds. Economic concrete frame elements: A pre-scheme design handbook for the rapid sizing and selection of reinforced concrete frame elements in multi-storey buildings. BCA, 1997.

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18

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.
 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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19

Alekseenko, Vasiliy, and Oksana Zhilenko. Design, construction and operation of buildings in seismic areas. INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1000210.

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The main purpose of the textbook is to acquaint students and engineers with the principles of design and construction of buildings and structures in seismic areas.
 The tutorial sets out the basic principles of design and construction of frame, large-panel buildings, buildings with load-bearing walls made of small-piece stones and large blocks, buildings made of local materials, frameless buildings made of monolithic reinforced concrete. The design requirements for buildings in earthquake-prone areas are described, and the main requirements for the production of works and implementation of anti-seismic measures during construction are outlined. Architectural, construction, design and technological aspects of construction in seismic areas are revealed.
 Meets the requirements of Federal state educational standards of higher education of the latest generation.
 It is intended for students studying in the areas of training 08.03.01 and 08.04.01 "Construction" in the following disciplines: "Design, construction and operation of buildings in seismic areas", "Theory and design of buildings and structures in seismic areas".
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20

Aas-Jakobsen and M. Grenacher. Analysis of Slender Reinforced Concrete Frames. Birkhauser Verlag, 2013.

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21

Analysis of Slender Reinforced Concrete Frames. Birkhäuser Boston, 2014.

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22

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Mechanics and Design. Wiley & Sons, Incorporated, John, 2013.

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23

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Mechanics and Design. Wiley & Sons, Incorporated, John, 2012.

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24

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Mechanics and Design. Wiley & Sons, Incorporated, John, 2013.

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25

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Mechanics and Design. Wiley & Sons, Incorporated, John, 2013.

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26

Challamel, No, Charles Casandjian, Jostein Hellesland, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Mechanics and Design. Wiley & Sons, Incorporated, John, 2013.

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27

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Section and Slender Member Analysis. Wiley & Sons, Incorporated, John, 2013.

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28

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Section and Slender Member Analysis. Wiley & Sons, Incorporated, John, 2013.

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29

Reinforced concrete beams, columns and frames: Section and slender member analysis. ISTE, 2013.

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30

Challamel, No, Charles Casandjian, Jostein Hellesland, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Section and Slender Member Analysis. Wiley & Sons, Incorporated, John, 2013.

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31

Casandjian, Charles, Jostein Hellesland, Noël Challamel, and Christophe Lanos. Reinforced Concrete Beams, Columns and Frames: Section and Slender Member Analysis. Wiley & Sons, Incorporated, John, 2012.

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32

Casandjian, Charles, Jostein Hellesland, Noël Challamel, Christophe Lanos, and Noël Challamel. Reinforced Concrete Beams, Columns and Frames: Section and Slender Member Analysis. Wiley & Sons, Incorporated, John, 2013.

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33

Lai, Shing-Sham. Inelastic analysis of reinforced concrete space frames under biaxial earthquake motions. 1985.

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34

Shanmugananthan, Ramanathan. Nonlinear analysis of three-dimensional reinforced concrete frames under viable loads. 1985.

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35

Clarke, J. D. The optimality criteria method used to design reinforced concrete frames to CP110. 1985.

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36

Beton, Comite Euro-International Du. Rc Frames Under Earthquake Loading: State of the Art Report. Telford, 1996.

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37

Naji, Jamal Hadi. Non-linear finite element analysis of reinforced concrete panels and infilled frames under monotonic and cyclic loading. 1989.

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38

Improving concrete frame construction. British Cement Association on behalf of the project partners, 2000.

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39

Zakhartsov, Oleksandr M. Interpolation functions for reinforced concrete frame analysis. 2002.

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40

Balopoulou, Stavroula *. Nonlinear response of a reinforced concrete frame. 1988.

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41

Experimental and analytical investigation on behavior of scaled down reinforced concrete framed structure under monotonic pushover loads. Bhabha Atomic Research Centre, 2008.

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42

Duong, Kien Vinh. Seismic behaviour of a shear-critical reinforced concrete frame: An experimental and numerical investigation. 2006.

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