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S.-H. Sheldon Tai

University of Maryland, College Park

College Park

College Park, MD 20742

United States

SCHOLARLY PAPERS

3

DOWNLOADS

975

TOTAL CITATIONS

4

Scholarly Papers (3)

1.

Relative Efficacy of Masks and Respirators as Source Control for Viral Aerosol Shedding from People Infected with SARS-CoV-2: A Human Controlled Trial

Number of pages: 18 Posted: 15 Nov 2023
University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, The University of Hong Kong - WHO Collaborating Centre for Infectious Disease Epidemiology and Control and - Maryland Institute for Applied Environmental Health
Downloads 892 (66,353)
Citation 4

Abstract:

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Source control, SARS-CoV-2, surgical masks, respirators, exhaled breath aerosols

2.

3d Printed Microcyclones for Enhanced Collection, Separation, and Recovery of Sub-Micrometer Bioaerosols

Number of pages: 25 Posted: 04 Mar 2025
University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, affiliation not provided to SSRN, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, - Maryland Institute for Applied Environmental Health and - College Park
Downloads 54 (1,063,489)

Abstract:

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cyclones, bioaerosols, inertial separation

3.

3d Printed Microcyclones for Enhanced Collection, Separation, and Recovery of Submicrometer Bioaerosols

Number of pages: 28 Posted: 12 Jun 2025
University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, Charles III University of Madrid, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, University of Maryland, College Park, - Maryland Institute for Applied Environmental Health and - College Park
Downloads 29 (1,345,526)

Abstract:

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cyclones, bioaerosols, inertial separation