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polystyrene latex spheres (psl  (Thermo Fisher)


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    Thermo Fisher polystyrene latex spheres (psl
    Polystyrene Latex Spheres (Psl, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/polystyrene+latex+spheres+%28psl/pm38719037-70-18-22?v=Thermo+Fisher
    Average 90 stars, based on 1 article reviews
    polystyrene latex spheres (psl - by Bioz Stars, 2026-07
    90/100 stars

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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    https://www.bioz.com/product/polystyrene+latex+spheres+%28psl/pm38719037-70-18-22?v=Thermo+Fisher
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    Magsphere polystyrene latex (psl) spheres
    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are <t>monodisperse</t> <t>polystyrene</t> <t>latex</t> <t>particles</t> <t>(PSL)</t> with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.
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    (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are monodisperse polystyrene latex particles (PSL) with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.

    Journal: ACS Applied Engineering Materials

    Article Title: Design and Evaluation of 3D-Printed Lattice Structures as High Flow Rate Aerosol Filters

    doi: 10.1021/acsaenm.4c00562

    Figure Lengend Snippet: (a) Deposition efficiency ( F ) with respect to superficial velocity ( U f ) for lattice columns with four different lattice unit cell geometries. (b) F with respect to interstitial velocity ( U i ) for lattice columns with four different lattice unit cell geometries. Error bars represent mean ± one standard deviation of the deposition efficiency ( n = 3). Aerosol particles used in this study are monodisperse polystyrene latex particles (PSL) with an aerodynamic diameter ( d ae ) of 1 μm. (c) Flow direction relative to unit cell orientations.

    Article Snippet: To generate aerosol particles of controlled sizes, we suspended monodisperse polystyrene latex sphere (PSL) microbeads (Polyscience Polybeads Microspheres) of five different sizes, including 1.06, 2.07, 3.1, 4.78, and 5.93 μm, in methanol and aerosols were generated with a Collison jet nebulizer (CJN).

    Techniques: Standard Deviation, Aerosol