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lúdica pero irrevocablemente responsable a toda la comunidad
en la gestión de este riesgo.


REFERENCIAS BIBLIOGRÁFICAS



Alam, M. S., Barbosa, A. R., Scott, M. H., Cox, D. T., & van de
Lindt, J. W. (2018). Development of Physics-Based Tsunami
Fragility Functions Considering Structural Member Failures.
Journal of Structural Engineering, 144(3), 04017221.

Bernard, E., & Titov, V. (2015a). Evolution of tsunami warning
system and products. Retrieved from
http://rsta.royalsocietypublishing.org/content/roypta/373/20
53/20140371.full.pdf
Bernard, E., & Titov, V. (2015b). Evolution of tsunami warning
systems and products. Philosophical Transactions of the Royal
Society A: Mathematical, Physical and Engineering Sciences,
373(2053). https://doi.org/10.1098/rsta.2014.0371
Bryant, E. (2014). TSUNAMI The Underrated Hazard (Third Edit).
Springer. https://doi.org/10.1007/978-3-319-06133-7

Bryant, Edward. (2014). Tsunami (Third). Cham: Springer
International Publishing. https://doi.org/10.1007/978-3-319-
06133-7

Buis, A. (2017). News | Scientists Look to Skies to Improve
Tsunami Detection. Retrieved July 25, 2019, from
https://www.jpl.nasa.gov/news/news.php?feature=6848#.W
SYQmy6Dgb0.twitter
Coïsson, P., Lognonné, P., Walwer, D., & Rolland, L. M. (2015).
First tsunami gravity wave detection in ionospheric radio
occultation data. Earth and Space Science, 2(5), 125-133.
https://doi.org/10.1002/2014EA000054





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