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Depression of an Infinite Liquid Surface by an Incompressible Gas Jet
W. E. Olmstead
, S. Raynor
Engineering Sciences and Applied Mathematics
Research output
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Contribution to journal
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Article
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peer-review
18
Scopus citations
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Dive into the research topics of 'Depression of an Infinite Liquid Surface by an Incompressible Gas Jet'. Together they form a unique fingerprint.
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Keyphrases
Liquid Surfaces
100%
Gas Jet
100%
Integral Equations
50%
Jet Velocity
25%
Small Angle
25%
Numerical Solution
25%
Surface Profile
25%
Asymptotic Solution
25%
Free Stream
25%
Two-dimensional Potential
25%
Nonlinear Singular Integral Equations
25%
Linear Correction
25%
Conformal Mapping Method
25%
Finite Hilbert Transform
25%
Nonlinear Algebraic Equations
25%
Mathematics
Integral Equation
100%
Nonlinear
50%
Asymptotics
50%
Singular Integral Equation
50%
Nonlinear Algebraic Equation
50%
Conformal Mapping
50%
Streamlines
50%
Numerical Solution
50%
Hilbert Transform
50%
Engineering
Liquid Surface
100%
Two Dimensional
25%
Jet Velocity
25%
Streamlines
25%
Surface Profile
25%
Conformal Mapping
25%
Numerical Solution
25%
Mapping Method
25%
Linear Algebraic Equation
25%
Physics
Liquid Surface
100%
Integral Equations
75%
Numerical Solution
25%