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1

Cor, Wagenaar, Dings Mieke, and Linders Jannes, eds. Ideals in concrete: Exploring Central and Eastern Europe. NAi Publishers, 2004.

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2

Bernard, Marrey, ed. Freyssinet: La précontrainte et l'Europe, 1930-1945 = Freyssinet : der Spannbeton und Europa, 1930-1945 = Freyssinet : prestressing and Europe, 1930-1945. Éditions du Linteau, 2000.

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3

Walter, Podolny, United States. Federal Highway Administration. Office of International Programs., United States. Federal Highway Administration. Office of Policy., American Trade Initiatives Inc, and Avalon Integrated Services Inc, eds. Performance of concrete segmental and cable-stayed bridges in Europe. U.S. Dept. of Transportation, Federal Highway Administration, International Technology Exchange Program, [Office of International Programs, 2001.

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4

W, Beeby A., ed. Designers' guide to EN 1992-1-1 and EN 1992-1-2: Eurocode 2: design of concrete structures : general rules and rules for buildings and structural fire design. Thomas Telford, 2005.

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5

Ranzi, Gianluca, ed. Time-dependent behaviour and design of composite steel-concrete structures. International Association for Bridge and Structural Engineering (IABSE), 2021. http://dx.doi.org/10.2749/sed018.

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<p>Steel-concrete composite structures are widely used throughout the world for buildings and bridges. A distinguishing feature of this form of construction is the combination of concrete and steel components to achieve enhanced structural performance. <p>The time-dependent response of concrete and its infl uence on the service behaviour and design of composite structures are the main focus of this SED. For the fi rst time, a publication combines a state-of-the-art review of the research with the available design specifi cations of Europe, Australia and New Zealand, and USA. This p
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6

Luís, Borges, Davaine Laurence 1975-, European Convention for Constructional Steelwork, and Associação Portuguesa de Construcao Metalica e Mista, eds. Fatigue design of steel and composite structures: Eurocode 3: Design of Steel Structures, Part 1-9 Fatigue, Eurocode 4: Design of Composite Steel and Concrete Structures. European Convention for Constructional Steelwork, 2011.

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7

Schneuwly, Daniela. Europäische Tage des Denkmals: Stein und Beton = Journées européennes du patrimoine : pierre et beton = Giornate europee del patrimonio : pietra e calcestruzzo : 8./9.9.2012. Edited by Nationale Informationsstelle für Kulturgüter-Erhaltung (Switzerland). Nationale Informationsstelle für Kulturgüter-Erhaltung NIKE, 2012.

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8

Arya, Chanakya. Design of structural elements: Concrete, steelwork, masonry and timber design to British Standards and Eurocodes. 2nd ed. Spon Press, 2003.

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9

1948-, Bennett David. Concrete Elegance One. Riba Publishing, 2006.

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10

Ideals in concrete: Exploring Central and Eastern Europe. NAi Publishers, 2003.

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11

Carvalho, Eduardo, Alain Pecker, Peter Fajfar, and Michael Fardis. Seismic Design of Concrete Buildings to Eurocode 8. Taylor & Francis Group, 2017.

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12

Carvalho, Eduardo, Alain Pecker, Peter Fajfar, and Michael Fardis. Seismic Design of Concrete Buildings to Eurocode 8. Taylor & Francis Group, 2015.

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13

Pecker, Alain, Michael N. Fardis, Eduardo C. Carvalho, and Peter Fajfar. Seismic Design of Concrete Buildings to Eurocode 8. Taylor & Francis Group, 2015.

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14

Carvalho, Eduardo, Alain Pecker, Peter Fajfar, and Michael Fardis. Seismic Design of Concrete Buildings to Eurocode 8. Taylor & Francis Group, 2015.

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15

Carvalho, Eduardo, Alain Pecker, Peter Fajfar, and Michael Fardis. Seismic Design of Concrete Buildings to Eurocode 8. Taylor & Francis Group, 2015.

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16

Chiew, Sing-Ping, and Yanqing Cai. Design Examples for High Strength Steel Reinforced Concrete Columns: A Eurocode 4 Approach. Taylor & Francis Group, 2018.

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17

Manual for detailing reinforced concrete structures to EC2. Spon Press, 2012.

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18

Vayas, Ioannis, and Aristidis Iliopoulos. Design of Steel-Concrete Composite Bridges to Eurocodes. Taylor & Francis Group, 2017.

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19

Vayas, Ioannis, and Aristidis Iliopoulos. Design of Steel-Concrete Composite Bridges to Eurocodes. Taylor & Francis Group, 2013.

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20

Concrete Repair to En 1504: Diagnosis, Design, Products and Practice. Taylor & Francis Group, 2014.

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21

Raupach, Michael, and Till Büttner. Concrete Repair to En 1504: Diagnosis, Design, Principles and Practice. Taylor & Francis Group, 2014.

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22

Raupach, Michael, and Till Büttner. Concrete Repair to En 1504: Diagnosis, Design, Principles and Practice. Taylor & Francis Group, 2014.

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23

Chiew, Sing-Ping, and Y. Q. Cai. Design Examples for High Strength Steel Reinforced Concrete Columns. Taylor & Francis Group, 2021.

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24

Design Examples for High Strength Steel Reinforced Concrete Columns: A Eurocode 4 Approach. CRC Press, 2018.

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25

Chiew, Sing-Ping, and Yanqing Cai. Design Examples for High Strength Steel Reinforced Concrete Columns: A Eurocode 4 Approach. Taylor & Francis Group, 2018.

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26

Chiew, Sing-Ping, and Yanqing Cai. Design Examples for High Strength Steel Reinforced Concrete Columns: A Eurocode 4 Approach. Taylor & Francis Group, 2018.

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27

Chiew, Sing-Ping, and Yanqing Cai. Design Examples for High Strength Steel Reinforced Concrete Columns: A Eurocode 4 Approach. Taylor & Francis Group, 2018.

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28

Bhatt, Prab, Ban Seng Choo, and T. J. MacGinley. Reinforced Concrete Design to Eurocodes: Design Theory and Examples, Fourth Edition. Taylor & Francis Group, 2014.

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29

Bhatt, Prab, Ban Seng Choo, and T. J. MacGinley. Reinforced Concrete Design to Eurocodes: Design Theory and Examples, Fourth Edition. Taylor & Francis Group, 2014.

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30

Reinforced Concrete Design to Eurocodes: Design Theory and Examples, Fourth Edition. Taylor & Francis Group, 2017.

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31

Reinforced Concrete Design to Eurocodes: Design Theory and Examples, Fourth Edition. Taylor & Francis Group, 2014.

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32

Bhatt, Prab, Ban Seng Choo, and T. J. MacGinley. Reinforced Concrete Design to Eurocodes: Design Theory and Examples, Fourth Edition. Taylor & Francis Group, 2014.

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33

Pfeifer, Günter, Antje M. Liebers, and Per Brauneck. Exposed Concrete: Technology and Design. Birkhäuser Basel, 2005.

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34

Vayas, Ioannis, and Aristidis Iliopoulos. Design of Steel-Concrete Composite Bridges to Eurocodes. Taylor & Francis Group, 2013.

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35

Vayas, Ioannis. Design of Steel-Concrete Composite Bridges to Eurocodes. Taylor & Francis Group, 2013.

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36

Design Of Steelconcrete Composite Bridges To Eurocodes. Taylor & Francis Inc, 2013.

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37

Steele, James M. Greenwood Encyclopedia of Homes through World History. Greenwood, 2009. http://dx.doi.org/10.5040/9798216971085.

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The Industrial Revolution made possible the mass production of traditional construction materials such as brick and lumber, as well the manufacture of new ones, such as float glass, steel and reinforced concrete. This revolutionized house design because conventional solid bearing walls could be replaced with steel or reinforced concrete columns, and glass walls, allowing more flexible floor plans and light.The need for resources to feed the Industrial Revolution led to Colonial enterprise, which imposed foreign styles on indigenous societies. Independence movements after World War II resulted
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38

Arya, Chanakya. Design of Structural Elements: Concrete, Steelwork, Masonry and Timber Designs to Eurocodes. Taylor & Francis Group, 2022.

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39

Arya, Chanakya. Design of Structural Elements: Concrete, Steelwork, Masonry and Timber Design to British Standards and Eurocodes. Taylor & Francis Group, 2004.

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40

Arya, Chanakya. Design of Structural Elements: Concrete, Steelwork, Masonry and Timber Design to British Standards and Eurocodes. Taylor & Francis Group, 2002.

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41

Design of structural elements: Concrete, steelwork, masonry and timber design to Eurocodes and British standards. 2nd ed. Spon Press, 2002.

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42

Design of structural elements: Concrete, steelwork, masonry, and timber designs to British standards and Eurocodes. 3rd ed. Taylor & Francis, 2009.

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43

Arya, Chanakya. Design of Structural Elements: Concrete, Steelwork, Masonry and Timber Designs to British Standards and Eurocodes, Third Edition. Taylor & Francis Group, 2009.

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44

Arya, Chanakya. Design of Structural Elements: Concrete, Steelwork, Masonry and Timber Designs to British Standards and Eurocodes, Third Edition. Taylor & Francis Group, 2009.

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45

CAWS, Catherine, Marie-Josée HAMEL, Catherine JEANNEAU, and Christian OLLIVIER. Formation en langues et littératie numérique en contextes ouverts. Editions des archives contemporaines, 2021. http://dx.doi.org/10.17184/eac.9782813003911.

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Le développement de la littératie et de la citoyenneté numériques est au cœur de plusieurs projets sociétaux. Diverses publications académiques, nombre de propositions de cadres et d’approches mises en œuvre dans de nombreux pays tout comme des recommandations (nationales et transnationales) de politique éducative en témoignent. Cet ouvrage s’inscrit dans ce mouvement. Rédigé par des didacticien-ne-s des langues, il s’ancre résolument dans le domaine de l’enseignement-apprentissage des langues où il entend ouvrir des pistes pour permettre à la didactique des langues de contribuer à cette éduca
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