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Particle trajectories in nonlinear gravity-capillary waves
S. J. Hogan
*
*
Corresponding author for this work
Department of Engineering Mathematics
Applied Nonlinear Mathematics
Research output
:
Contribution to journal
›
Article (Academic Journal)
›
peer-review
9
Citations (Scopus)
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Earth and Planetary Sciences
Trajectory
100%
Gravitation
75%
Capillary Wave
75%
Length
50%
Magnitude
50%
Wave
50%
Particle
50%
Surface Tension
50%
Time
25%
Ratio
25%
Implication
25%
Distance
25%
Observation
25%
Wind
25%
Particle Trajectory
25%
Engineering
Trajectories
100%
Surfaces
50%
Drift Velocity
50%
Short Wave
25%
Subsurface
25%
Gravity Wave
25%
Particle Trajectory
25%
Penetration Depth
25%
Restoring Force
25%
Physics
Gravitation
75%
Magnitude
50%
Particle
50%
Gravity Wave
50%
Ratios
25%
Distance
25%
Particle Trajectories
25%
Mathematics
Nonlinear
50%
Drift Velocity
50%
Restoring Force
25%
Subsurface
25%
Material Science
Surface
50%