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1

Structural Engineers Association of California. and International Conference of Building Officials., eds. Seismic design manual. Sacramento, Calif: Structural Engineers Association of California, 1999.

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2

Ballast, David Kent. Advances in seismic building design. Monticello, Ill., USA: Vance Bibliographies, 1988.

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3

American Institute of Steel Construction. Seismic design manual. 2nd ed. [Chicago]: American Institute of Steel Construction, 2012.

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4

Papagiannopoulos, George A., George D. Hatzigeorgiou, and Dimitri E. Beskos. Seismic Design Methods for Steel Building Structures. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-80687-3.

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5

Brenda, Wong, and British Columbia Heritage Trust, eds. Seismic building upgrading for Vancouver's Gastown. [Victoria, B.C.]: British Columbia Heritage Trust, 1985.

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6

Council, Applied Technology. Quantification of building seismic performance factors. [Washington, D.C.]: U.S. Dept. of Homeland Security, FEMA, 2009.

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7

Canada, National Research Council, Institute for Research in Construction (Canada), and Applied Technology Council, eds. Manual for screening of buildings for seismic investigations. Ottawa, Canada: The Council, 1993.

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8

Robert, Klopp, ed. Design and analysis of steel structures in seismic zones. Stuttgart: IRB Verlag, 1989.

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9

Ahmed, Elghazouli, ed. Seismic design of buildings to Eurocode 8. Abingdon, Oxon: Taylor & Francis, 2009.

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10

K, Ghosh S. Impact of the seismic design provisions of the International building code. Northbrook, IL: Structures and Codes Institute, 2001.

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11

Venture, SAC Joint, United States. Federal Emergency Management Agency, Structural Engineers Association of California, Applied Technology Council, and California Universities for Research in Earthquake Engineering, eds. Recommended seismic design criteria for new steel moment-frame buildings. [Washington, D.C.]: Federal Emergency Management Agency, 2000.

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12

California. Legislature. Senate. Committee on Insurance. Code red ink: Hospitals struggle financially with seismic safety mandates. Sacramento, CA: Senate Publications, 2000.

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13

Medhekar, Manoj S. Seismic evaluation of steel buildings with concentrically braced frames. Edmonton, Alta., Canada: Dept. of Civil and Environmental Engineering, University of Alberta, 1997.

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14

Construction, American Institute of Steel. Seismic provisions for structural steel buildings. Chicago, Ill: American Institute of Steel Construction, 2002.

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15

United States. Federal Emergency Management Agency. Quantification of building seismic performance factors: Component equivalency methodology. Washington, D.C: U.S. Department of Homeland Security, FEMA, National Earthquake Hazards Reduction Program, 2011.

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16

Robert, Klopp, ed. Design and analysis of concrete structures in seismic zones. Stuttgart: IRB Verlag, 1989.

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17

Fédération internationale du béton. Task Group 7.3., ed. Seismic design of precast concrete building structures: State-of-art report. Lausanne, Switzerland: International Federation for Structural Concrete, 2003.

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18

1953-, Baradar Majid, ed. Seismic design of building structures: A professional's introduction to earthquake forces and design details. 8th ed. Belmont, CA: Professional Publications, 2001.

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19

M, McMullin Kurt, ed. Seismic design of building structures: A professional's introduction to earthquake forces and design details. 9th ed. Belmont, CA: Professional Publications, 2008.

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20

Lindeburg, Michael R. Seismic design of building structures: A professional's introduction to earthquake forces and design details. Belmont, CA: Professional Publications, 2011.

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21

Seismic design of building structures: A professional's introduction to earthquake forces and design details. 6th ed. Belmont, CA: Professional Publications, 1994.

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22

R, Lindeburg Michael, ed. Seismic design of building structures: A professional's introduction to earthquake forces and design details. 5th ed. Belmont, CA: Professional Publications, 1990.

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23

Seismic design of building structures: A professional's introduction to earthquake forces and design details. 7th ed. Belmont, CA: Professional Publications, 1996.

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24

Robert, Klopp, ed. Design and analysis of multi-story buildings in seismic zones. Stuttgart: IRB Verlag, 1989.

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25

Construction, American Institute of Steel. Seismic provisions for structural steel buildings (1997). Chicago, Ill: American Institute of Steel Construction, 2000.

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26

Look, David W. The seismic retrofit of historic buildings: Keeping preservation in the forefront. [Washington, D.C.?]: U.S. Dept. of the Interior, National Park Service, Cultural Resources, Heritage Preservation Services, 1997.

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27

Look, David W. The seismic retrofit of historic buildings: Keeping preservation in the forefront. [Washington, D.C.?]: U.S. Dept. of the Interior, National Park Service, Cultural Resources, Heritage Preservation Services, 1997.

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28

American Society of Civil Engineers. Handbook for the seismic evaluation of buildings: A prestandard. [Washington, D.C.]: Federal Emergency Management Agency, 1998.

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29

American Institute of Steel Construction., ed. Seismic provisions for structural steel buildings. Chicago, IL: American Institute of Steel Construction, 1997.

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30

M, Mazzolani Federico, ed. Innovative steel structures for seismic protection of buildings: PRIN 2001. Monza (Milan): Polimetrica, 2006.

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31

United States. Bureau of Reclamation, ed. FEMA 310, seismic evaluation of buildings, Boise District Office Building, Boise, Ada County, Idaho. Denver, Colorado: U.S. Department of the Interior, Bureau of Reclamation, 1999.

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32

Christopher, Rojahn, Poland Chris D, Scawthorn Charles, Applied Technology Council, United States. Federal Emergency Management Agency, and National Earthquake Hazards Reduction Program (U.S.), eds. Rapid visual screening of buildings for potential seismic hazards: Supporting documentation. Redwood City, Calif: Applied Technology Council, 1995.

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33

United States. Federal Emergency Management Agency, ed. Rapid visual screening of buildings for potential seismic hazards: Supporting documentation. Washington, DC: FEMA, 2015.

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34

Christopher, Rojahn, Poland Chris D, Scawthorn Charles, Applied Technology Council, United States. Federal Emergency Management Agency., and National Earthquake Hazards Reduction Program (U.S.), eds. Rapid visual screening of buildings for potential seismic hazards: Supporting documentation. Redwood City, Calif: Applied Technology Council, 1988.

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35

S, Lew H., United States. Interagency Committee on Seismic Safety in Construction, and National Institute of Standards and Technology (U.S.), eds. Standards of seismic safety for existing federally owned and leased buildings. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2002.

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36

Mario, De Stefano, and SpringerLink (Online service), eds. Seismic Behaviour and Design of Irregular and Complex Civil Structures. Dordrecht: Springer Netherlands, 2013.

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37

E, Kimbro Edna, and Ginell William S, eds. Planning and engineering guidelines for the seismic retrofitting of historic adobe structures. Los Angeles: Getty Conservation Institute, 2002.

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38

Moseley, V. J. "Jon", Andreas Lampropoulos, Eftychia Apostolidi, and Christos Giarlelis. Characteristic Seismic Failures of Buildings. Edited by Stephanos E. Dritsos. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2019. http://dx.doi.org/10.2749/sed016.

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<p>Earthquakes can cause considerable fatalities, injuries and financial loss. The forces of nature cannot be blamed, as the problem lies with the structures in seismic regions that may not have been designed or constructed to a sufficient degree to resist earthquake actions or they may have design flaws. This Structural Engineering Document (SED) concerns reinforced concrete and masonry buildings together with geotechnical aspects and presents in a concise and practical way the state of the art of current understanding of building failures due to earthquakes. It classifies the different types of seismic failure, explains the reasons for each failure, describes good practices to avoid such failures and also describes seismic retrofitting/upgrading procedures for pre-earthquake strengthening and post-earthquake repair and/or strengthening techniques for deficient buildings. Carefully selected photographs and diagrams illustrate the different failure types. This document could be considered as quite unique, as this is the first time such material concerning characteristic seismic failures of buildings has been presented together in one single document. It is intended to be a valuable educational reference textbook aimed at all levels of experience of engineers. It provides background information, ideas, guidance and reassurance to engineers in earthquake regions faced with the task of building a safer future for the public and to protect lives. <p> <iframe width="560" height="315" src="https://www.youtube-nocookie.com/embed/Oddi3VTtxCM" frameborder="0" allow="accelerometer; autoplay; encrypted-media; gyroscope; picture-in-picture" allowfullscreen></iframe>
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39

Christopher, Rojahn, Scawthorn Charles, Applied Technology Council, United States. Federal Emergency Management Agency., and National Earthquake Hazards Reduction Program (U.S.), eds. Rapid visual screening of buildings for potential seismic hazards: A handbook. 2nd ed. Redwood City, Calif: Applied Technology Council, 2002.

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40

Christopher, Rojahn, Scawthorn Charles, Applied Technology Council, United States. Federal Emergency Management Agency, and National Earthquake Hazards Reduction Program (U.S.), eds. Rapid visual screening of buildings for potential seismic hazards: A handbook. 2nd ed. Redwood City, Calif: Applied Technology Council, 2002.

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41

Building Seismic Safety Council (U.S.). NEHRP handbook for the seismic evaluation of existing buildings. Washington, D.C: The Council, 1992.

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42

American Institute of Steel Construction., ed. Seismic provisions for structural steel buildings, including supplement no. 1. Chicago, Ill: American Institute of Steel Construction, Inc., 2005.

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43

Structural Engineers Association of California., ed. Built to resist earthquakes: ATC/SEAOC training curriculum: the path to quality seismic design and construction. Redwood City, Calif: ATC/SEAOC Joint Venture (Applied Technology Council and the Structural Engineers Association of California), 1999.

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44

Council, Applied Technology. Seismic evaluation and retrofit of multi-unit wood-frame buildings with weak first stories. Washington, D.C: Federal Emergency Management Agency, National Earthquake Reduction Program, 2012.

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45

Provisions, Building Seismic Safety Council (U S. ). Committee on Encouraging Widespread Use of the NEHRP Recommended. Improving the seismic safety of new buildings: A non-technical explanation of the NEHRP recommended provisions. [Washington, D.C: The Council, 1986.

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46

United States. Federal Emergency Management Agency, BSSC Program on Improved Seismic Safety Provisions, and National Institute of Building Sciences (Washington, D.C.), eds. NEHRP handbook for the seismic evaluation of existing buildings. Washington, D.C: The Council, 1998.

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47

P, Fajfar, and Krawinkler Helmut, eds. Seismic design methodologies for the next generation of codes: Proceedings of the International Workshop on Seismic Design Methodologies for the Next Generation of Codes, Bled, Slovenia, 24-27 June 1997. Rotterdam: Balkema, 1997.

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48

V, Leyendecker Edgar, and Geological Survey (U.S.), eds. USGS Spectral response maps and their relationship with seismic design forces in building codes. [Denver, CO]: U.S. Geological Survey, 1995.

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49

National Earthquake Hazards Reduction Program (U.S.), Building Seismic Safety Council (U.S.), BSSC Program on Improved Seismic Safety Provisions, and United States. Federal Emergency Management Agency., eds. NEHRP recommended provisions (National Earthquake Hazards Reduction Program) for seismic regulations for new buildings. Washington, D.C: The Council, 1995.

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50

Venture, SAC Joint, United States. Federal Emergency Management Agency, Structural Engineers Association of California, Applied Technology Council, and California Universities for Research in Earthquake Engineering, eds. Recommended seismic evaluation and upgrade criteria for existing welded steel moment-frame buildings. [Washington, D.C.]: Federal Emergency Management Agency, 2000.

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