Tiempo en la casa No. 63 • julio-agosto 2020
29 Duguid, J. P., 1946, “The size and the duration of air-carriage of respiratory droplet and droplet nuclei”, Journal of Hygiene ( London ), 44, 471-479. elifesciences, 2020, https://elifesciences.org/ , descargado el 28 de marzo de 2020. Fehr, A. R., y S. Perlman, 2015,“Coronaviruses: An Overview of Their Replication and Pathogenesis”, Helena Jane Maier et al. (eds.), Coronaviruses: Methods and Protocols, Methods in Molecular Biology , vol. 1282, Springer Science+Business Media, Nueva York, Cap 1. Gunn, R., y G. Kinzer, 1949, “The terminal velocity of fall for water droplets in stag- nant air”, Journal of Meteorology , 6, 243. Guo, Z. D., Z. Y. Wang, S. F. Zhang, X. Lii, L. Lii, C. Lii, Y. Cuii, R. B. Fu, Y. Z. Dong, X. Y. Chii, M. Y. Zhang, K. Liiu, C. Cao, B. Liiu, K. Zhang, Y. W. Gao, B. Lu y W. Chen, 2020, “Aerosol and Surface Distribution of Severe Acute Respiratory Syndrome Coronavirus 2 in Hospital Wards, Wuhan, China, 2020”, Centers for Disease Control and Prevention , Dispatch Early Release . Guy, J. S., J. J. Breslin, B. Brehaus, S. Vivrette y L. G. Smith, 2000, “Characterization of a Coronavirus Isolated from a Diarrheic Foal”, Journal of Clinical Microbi- ology , 4523-4536. Hołyst, R.,M. Litniewski, D. Jakubczyk, K. Kolwas,M. Kolwas, K. Kowalski, S.Migacz, S. Palesa y M. Zientara, 2013,“Evaporation of freely suspended single droplets: experimental, theoretical and computational simulations”, Reports of Progress in Physics , 76 034601. Hołyst, R., M. Litniewskia y D. Jakubczykb, 2017, “Evaporation of liquid droplets of nano- and micro-meter size as a function of molecular mass and intermo- lecular interactions: experiments and molecular dynamics simulations”, Soft Matter , 15, 5858. Mora, X., 2014, “Las ecuaciones de Navier-Stokes, ¿Impredictibilidad incluso sin mariposas?”, Revista Metode , doi: 10.7203/metode.8.9415. Morency, F., S. Hallé, L. Dufresne y C. Émond, 2008,“Evaluation of diffusion models for airborne nanoparticles transport and dispersion”, in Advances in Fluid Mechanics VII, WIT Transactions on Engineering Sciences , 59, 2008, WIT Press, pp 111-121. Moskal, A., y A. C. Payatakes, 2006,“Estimation of the diffusion coefficient of aerosol particle aggregates using Brownian simulation in the continuum regime”, Journal of Aerosol Science , 37, 1081–1101. Nicas, M., W. W. Nazaroff y A. Hubbard, 2005, “Toward understanding the risk of secondary airborne infection: emission of respirable pathogens”, Journal of Occupational & Environmental Hygiene , 2, 143–154. 1909 Perrin, J., 1909, “Mouvement brownien et réalité moléculaire”, Annales de chimie et de physique , 18, 5-114. Romero Rochín, V., 2005, “El movimiento browniano”, en www.smf.mx/boletin/ abril
Made with FlippingBook
RkJQdWJsaXNoZXIy MjE0NjI2