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Physics of Fluids (Woodbury, N.Y. : 1994)|September 21, 2020
Visualizing droplet dispersal for face shields and masks with exhalation valvesSiddhartha Verma, Manhar Dhanak, John FrankenfieldPhysics of Fluids (Woodbury, N.Y. : 1994)|September 9, 2020
Universal trends in human cough airflows at large distancesPadmanabha Prasanna Simha, Prasanna Simha Mohan RaoPhysics of Fluids (Woodbury, N.Y. : 1994)|September 28, 2020
Weather impact on airborne coronavirus survivalTalib Dbouk, Dimitris DrikakisPhysics of Fluids (Woodbury, N.Y. : 1994)|October 26, 2020
A mathematical framework for estimating risk of airborne transmission of COVID-19 with application to face mask use and social distancingRajat Mittal, Charles Meneveau, Wen WuPhysics of Fluids (Woodbury, N.Y. : 1994)|March 22, 2021
Why coronavirus survives longer on impermeable than porous surfacesSanghamitro Chatterjee, Janani Srree Murallidharan, Amit Agrawal, et al.Physics of Fluids (Woodbury, N.Y. : 1994)|January 10, 2022
Exposure risk analysis of COVID-19 for a ride-sharing motorbike taxiR Hetherington, A B M Toufique Hasan, A Khan, et al.Physics of Fluids (Woodbury, N.Y. : 1994)|November 22, 2021
Challenges in simulating and modeling the airborne virus transmission: A state-of-the-art reviewFarzad Pourfattah, Lian-Ping Wang, Weiwei Deng, et al.Physics of Fluids (Woodbury, N.Y. : 1994)|November 22, 2021
Evaluating a transparent coating on a face shield for repelling airborne respiratory dropletsBibek Kumar, Sanghamitro Chatterjee, Amit Agrawal, et al.Physics of Fluids (Woodbury, N.Y. : 1994)|November 22, 2021
Flow dynamics of droplets expelled during sneezingPrateek Bahl, Charitha de Silva, C Raina MacIntyre, et al.Physics of Fluids (Woodbury, N.Y. : 1994)|March 28, 2017
Quantification of mixing in vesicle suspensions using numerical simulations in two dimensionsG Kabacaoğlu, B Quaife, G BirosPageof 23