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1

Takewaki, Izuru, Abbas Moustafa, and Kohei Fujita. Improving the Earthquake Resilience of Buildings. Springer London, 2013. http://dx.doi.org/10.1007/978-1-4471-4144-0.

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2

National Research Council (U.S.). Committee on Seismology and Geodynamics and National Research Council (U.S.). Board on Earth Sciences and Resources, eds. National earthquake resilience: Research, implementation, and outreach. National Academies Press, 2011.

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3

Nepal, Lutheran World Federation. From relief to resilience: LWF Nepal's response to the Gorkha earthquake. The Lutheran World Federation Nepal, 2016.

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4

Nepal) Humanitarian Accountability Monitoring Initiative (Pātan. Nepal Earthquake 2015: Building resilience, rebuilding lives findings from the ground. Humanitarian Accountability Monitoring Initiative (HAMI), 2015.

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5

Takewaki, Izuru. Improving the Earthquake Resilience of Buildings: The worst case approach. Springer London, 2013.

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6

Cimellaro, Gian Paolo, Satish Nagarajaiah, and Sashi K. Kunnath, eds. Computational Methods, Seismic Protection, Hybrid Testing and Resilience in Earthquake Engineering. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-06394-2.

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7

American Society of Civil Engineers. Technical Council on Lifeline Earthquake Engineering, ed. Seismic resilience of natural gas systems: Improving performance. American Society of Civil Engineers, 2012.

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8

Apostolidi, Eftychia, Stephanos Dritsos, Christos Giarlelis, et al. Seismic Isolation and Response Control. Edited by Andreas Lampropoulos. International Association for Bridge and Structural Engineering (IABSE), 2021. http://dx.doi.org/10.2749/sed019.

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<p>The seismic resilience of new and existing structures is a key priority for the protection of human lives and the reduction of economic losses in earthquake prone areas. The modern seismic codes have focused on the upgrade of the structural performance of the new and existing structures. However, in many cases it is preferrable to mitigate the effects of the earthquakes by reducing the induced loads in the structures using seismic isolation and response control devices. The limited expertise in the selection and design of the appropriate system for new and existing structures is the m
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9

Fischinger, Matej, ed. Performance-Based Seismic Engineering: Vision for an Earthquake Resilient Society. Springer Netherlands, 2014. http://dx.doi.org/10.1007/978-94-017-8875-5.

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10

Elsayed, Doaa Salaheldin Ismail. Emergency architecture and resilient city transformation: A proposed matrix for post-earthquake reconstruction. Maggioli editore, 2017.

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11

Bartolomucci, Carla. Terremoti e resilienza nell'architettura aquilana: Persistenze, trasformazioni e restauro del Palazzo Carli Benedetti. Edizioni Quasar, 2018.

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12

National Earthquake Resilience. National Academies Press, 2011. http://dx.doi.org/10.17226/13092.

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13

Committee on National Earthquake Resilience?Research, Implementation, and Outreach, Board on Earth Sciences and Resources, Committee on Seismology and Geodynamics, Division on Earth and Life Studies, and National Research Council. National Earthquake Resilience: Research, Implementation, and Outreach. National Academies Press, 2011.

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14

Committee on National Earthquake Resilience?Research, Implementation, and Outreach, Board on Earth Sciences and Resources, Committee on Seismology and Geodynamics, Division on Earth and Life Studies, and National Research Council. National Earthquake Resilience: Research, Implementation, and Outreach. National Academies Press, 2011.

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15

National Earthquake Resilience - Research, Implementation, and Outreach Committee, Board on Earth Sciences and Resources, Committee on Seismology and Geodynamics, Division on Earth and Life Studies, and National Research Council. National Earthquake Resilience: Research, Implementation, and Outreach. National Academies Press, 2011.

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16

Migration and resilience: Expereinces from Nepal's 2015 earthquake. Centre for the Study of Labour and Mobility, 2015.

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17

Borland, Janet. Earthquake Children: Building Resilience from the Ruins of Tokyo. Harvard University, Asia Center, 2020.

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18

Earthquake Children: Building Resilience from the Ruins of Tokyo. Harvard University, Asia Center, 2020.

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19

Cimellaro, Gian Paolo. Urban Resilience for Emergency Response and Recovery: Fundamental Concepts and Applications. Springer London, Limited, 2016.

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20

Cimellaro, Gian Paolo. Urban Resilience for Emergency Response and Recovery: Fundamental Concepts and Applications. Springer, 2016.

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21

Cimellaro, Gian Paolo. Urban Resilience for Emergency Response and Recovery: Fundamental Concepts and Applications. Springer, 2018.

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22

Takewaki, Izuru, Abbas Moustafa, and Kohei Fujita. Improving the Earthquake Resilience of Buildings: The worst case approach. Springer, 2012.

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23

Takewaki, Izuru, Abbas Moustafa, and Kohei Fujita. Improving the Earthquake Resilience of Buildings: The Worst Case Approach. Springer London, Limited, 2014.

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24

World Health Organization. Regional Office for South-East Asia and SEARO. Nepal Earthquake 2015: An Insight into Risks - a Vision for Resilience. World Health Organization, 2016.

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25

Improving The Earthquake Resilience Of Buildings The Worst Case Approach Izuru Takewaki Abbas Moustafa Kohei Fujita. Springer, 2012.

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26

Hough, Susan Elizabeth, and Roger G. Bilham. After the Earth Quakes. Oxford University Press, 2005. http://dx.doi.org/10.1093/oso/9780195179132.001.0001.

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Earthquakes rank among the most terrifying natural disasters faced by mankind. Out of a clear blue sky-or worse, a jet black one-comes shaking strong enough to hurl furniture across the room, human bodies out of bed, and entire houses off of their foundations. When the dust settles, the immediate aftermath of an earthquake in an urbanized society can be profound. Phone and water supplies can be disrupted for days, fires erupt, and even a small number of overpass collapses can snarl traffic for months. However, when one examines the collective responses of developed societies to major earthquak
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27

Amaral Ferreira, Mónica, and Beatriz Zapico Blanco. Practical guide for Earthquake resilient schools. 2020th ed. Editorial Universidad de Sevilla, 2020. http://dx.doi.org/10.12795/9788447230532.

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This guide is intended to be a resource, and not a manual, for increasing the resilience of an educational community, by showing the community what they can do on their own account and how they can strengthen their ability to handle seismic risk (for example, being informed and familiarised with the characteristics that affect the vulnerability of an area in the event of an earthquake, and prepared to protect the students under their tutelage before the earth shakes).
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28

Cimellaro, Gian Paolo, Satish Nagarajaiah, and Sashi K. Kunnath. Computational Methods, Seismic Protection, Hybrid Testing and Resilience in Earthquake Engineering: A Tribute to the Research Contributions of Prof. Andrei Reinhorn. Springer, 2015.

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29

Takewaki, Izuru, ed. Evaluation of Building Resilience under Earthquake Input Using Single, Double and Multiple Impulses. Frontiers Media SA, 2017. http://dx.doi.org/10.3389/978-2-88945-270-5.

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30

Shrestha, Chandra Bahadur. Building Back Better after the 2015 Nepal Earthquake: Laying the Foundation for Resilience. Springer, 2022.

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31

Building Back Better after the 2015 Nepal Earthquake: Laying the Foundation for Resilience. Springer, 2023.

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32

Cimellaro, Gian Paolo, Satish Nagarajaiah, and Sashi K. Kunnath. Computational Methods, Seismic Protection, Hybrid Testing and Resilience in Earthquake Engineering: A Tribute to the Research Contributions of Prof. ... Geological and Earthquake Engineering). Springer, 2014.

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33

Cimellaro, Gian Paolo, Satish Nagarajaiah, and Sashi K. Kunnath. Computational Methods, Seismic Protection, Hybrid Testing and Resilience in Earthquake Engineering: A Tribute to the Research Contributions of Prof. ... Geological and Earthquake Engineering). Springer, 2016.

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34

Vale, Lawrence J., and Thomas J. Campanella, eds. The Resilient City. Oxford University Press, 2005. http://dx.doi.org/10.1093/oso/9780195175844.001.0001.

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In 1871, the city of Chicago was almost entirely destroyed by what became known as The Great Fire. Thirty-five years later, San Francisco lay in smoldering ruins after the catastrophic earthquake of 1906. Or consider the case of the Jerusalem, the greatest site of physical destruction and renewal in history, which, over three millennia, has suffered wars, earthquakes, fires, twenty sieges, eighteen reconstructions, and at least eleven transitions from one religious faith to another. Yet this ancient city has regenerated itself time and again, and still endures. Throughout history, cities have
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35

Hall, C. Michael, Russell Wordsworth, Sanna Malinen, and Rob Vosslamber. Business and Post-Disaster Management: Business, Organisational and Consumer Resilience and the Christchurch Earthquakes. Taylor & Francis Group, 2016.

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36

Hall, C. Michael, Russell Wordsworth, Sanna Malinen, and Rob Vosslamber. Business and Post-Disaster Management: Business, Organisational and Consumer Resilience and the Christchurch Earthquakes. Taylor & Francis Group, 2016.

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37

Hall, C. Michael, Russell Wordsworth, Sanna Malinen, and Rob Vosslamber. Business and Post-Disaster Management: Business, Organisational and Consumer Resilience and the Christchurch Earthquakes. Taylor & Francis Group, 2016.

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38

Business and Post-Disaster Management: Business, Organisational and Consumer Resilience and the Christchurch Earthquakes. Taylor & Francis Group, 2016.

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39

Stoddard Jr., Frederick J., Robert J. Ursano, and Stephen J. Cozza. Population Trauma. Edited by Frederick J. Stoddard, David M. Benedek, Mohammed R. Milad, and Robert J. Ursano. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190457136.003.0010.

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This chapter reviews trauma- and stressor-related disorders (TSRDs) as they relate to disaster, defined by the World Health Organization as “a severe disruption, ecological and psychosocial, which greatly exceeds the coping capacity of the affected community.” Some are human-made such as a terrorist event or shooting, while others are due to natural events such as earthquake or hurricane. Humanitarian emergencies are also a class of disasters. Since most but not all people and communities are resilient, the prevalence of TSRDs after disaster and what interventions are optimal is highly relevan
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40

Santos-Reyes, Jaime, ed. Earthquakes - Impact, Community Vulnerability and Resilience. IntechOpen, 2019. http://dx.doi.org/10.5772/intechopen.77465.

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41

Strategic framework for resilient livelihoods in earthquake-affected areas of Nepal. International Centre for Integrated Mountain Development, 2015.

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42

Lucini, Barbara. Disaster Resilience from a Sociological Perspective: Exploring Three Italian Earthquakes As Models for Disaster Resilience Planning. Springer International Publishing AG, 2016.

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43

Lucini, Barbara. Disaster Resilience from a Sociological Perspective: Exploring Three Italian Earthquakes As Models for Disaster Resilience Planning. Springer London, Limited, 2014.

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44

Lucini, Barbara. Disaster Resilience from a Sociological Perspective: Exploring Three Italian Earthquakes as Models for Disaster Resilience Planning. Springer, 2014.

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45

Disaster Resilience from a Sociological Perspective: Exploring Three Italian Earthquakes as Models for Disaster Resilience Planning. Springer, 2014.

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46

Resilienza versus catastrofe: Da Lisbona 1755 a Messina 1908 : esperienze, temi e problemi della ricerca antisismica. LetteraVentidue, 2021.

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47

Fischinger, Matej. Performance-Based Seismic Engineering: Vision for an Earthquake Resilient Society. Springer London, Limited, 2014.

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48

Fischinger, Matej. Performance-Based Seismic Engineering: Vision for an Earthquake Resilient Society. Springer, 2014.

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49

Fischinger, Matej. Performance-Based Seismic Engineering: Vision for an Earthquake Resilient Society. Springer Netherlands, 2016.

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50

Performance-Based Seismic Engineering: Vision for an Earthquake Resilient Society. Springer Netherlands, 2014.

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