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Published byRussell Bradley Modified over 6 years ago
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Date of download: 11/5/2017 Copyright © ASME. All rights reserved. From: Spatial-Temporal Stability of an Electrified Viscoelastic Liquid Jet J. Fluids Eng. 2013;135(9): doi: / Figure Legend: Schematic of an electrified viscoelastic liquid jet
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Date of download: 11/5/2017 Copyright © ASME. All rights reserved. From: Spatial-Temporal Stability of an Electrified Viscoelastic Liquid Jet J. Fluids Eng. 2013;135(9): doi: / Figure Legend: Contours of ωr = constant in the complex k-plane when Eu varies (Re = 3000, b = 100, Q = 0.001, We = 3, λ2/λ1 = 0.1) (a) Eu = 0.01, (b) Eu = 0.1, (c) Eu = 0.3, and (d) Eu = 0.5
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Date of download: 11/5/2017 Copyright © ASME. All rights reserved. From: Spatial-Temporal Stability of an Electrified Viscoelastic Liquid Jet J. Fluids Eng. 2013;135(9): doi: / Figure Legend: Contours of ωr = constant in the complex k-plane when λ2/λ1 varies (Re = 3000, b = 100, Q = 0.001, We = 3, Eu = 0.1) (a) λ2/λ1 = 0.1, (b) λ2/λ1 = 0.5, (c) λ2/λ1 = 1, and (d) λ2/λ1 = 1.5
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Date of download: 11/5/2017 Copyright © ASME. All rights reserved. From: Spatial-Temporal Stability of an Electrified Viscoelastic Liquid Jet J. Fluids Eng. 2013;135(9): doi: / Figure Legend: Contours of ωr = constant in the complex k-plane when We varies (Re = 3000, b = 100, Q = 0.001, Eu = 0.1, λ2/λ1 = 0.1) (a) We = 0.5, (b) We = 1, (c) We = 4, and (d) We = 5
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Date of download: 11/5/2017 Copyright © ASME. All rights reserved. From: Spatial-Temporal Stability of an Electrified Viscoelastic Liquid Jet J. Fluids Eng. 2013;135(9): doi: / Figure Legend: Contours of ωr = constant in the complex k-plane when Re varies (We = 3, b = 100, Q = 0.001, Eu = 0.1, λ2/λ1 = 0.1) (a) Re = 100, (b) Re = 500, (c) Re = 3000, and (d) Re = 5000
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Date of download: 11/5/2017 Copyright © ASME. All rights reserved. From: Spatial-Temporal Stability of an Electrified Viscoelastic Liquid Jet J. Fluids Eng. 2013;135(9): doi: / Figure Legend: Contours of ωr = constant in the complex k-plane when Q varies (Re = 3000, b = 100, Eu = 0.1, We = 3, λ2/λ1 = 0.1) (a) Q = 0.001, (b) Q = 0.005, (c) Q = 0.01, and (d) Q = 0.1
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