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The 61 pages that link to Hydrodynamics, each with the reason it gives.
Lateral lineNarrower topic: The sensory system detects flow patterns shaped by hydrodynamic forces.
Suction feedingNarrower topic: Water flow around the mouth governs how prey accelerates toward it.
Fish locomotionNarrower topic: Water flow around a swimming fish determines its drag and generated thrust.
SwimmingNarrower topic: Water resistance and flow around the body shape swimming speed and technique.
Caudal finNarrower topic: Water flow around the fin determines its lift, drag, and thrust.
PinnipedNarrower topic: Streamlined bodies and flippers shape how pinnipeds move through water.
PlesiosauriaNarrower topic: Hydrodynamic principles help explain how plesiosaur flippers moved through water.
Undulatory locomotionNarrower topic: In water, the moving body transfers momentum to fluid to produce thrust.
FlipperNarrower topic: Fluid forces explain how flipper shape and movement produce swimming force.
Plesiosaur locomotionNarrower topic: Fluid forces explain how flipper shape and motion could produce thrust and lift.
Open water swimmingNarrower topic: Water resistance and flow explain why currents and swimmer position affect speed.
Cetacean locomotionNarrower topic: It describes the fluid forces acting on swimming cetaceans.
Coarse-grainingNarrower topic: Hydrodynamic fields summarize microscopic motion into a small set of large-scale variables.
Cat's Eye NebulaNarrower topic: Fluid instabilities help explain the nebula's intricate filaments and knots.
Wing-propelled divingNarrower topic: Water’s density and viscosity determine the forces acting on wings and bodies during dives.
ArchelonNarrower topic: Streamlining and drag shaped the swimming demands on Archelon's large body.
SeaplaneNarrower topic: Water resistance and lift shape how a seaplane accelerates and rises onto the surface.
Water slideNarrower topic: Water flow across the flume affects drag, lubrication, and ride behavior.
Whirligig beetleNarrower topic: Its streamlined body and paddle-like legs move through water with little resistance.
Aquatic animalNarrower topic: Water resistance shapes the bodies and swimming strategies of aquatic animals.
Helmholtz's theoremsNarrower topic: Helmholtz's results belong to the mathematical foundations of fluid motion.
OoliteNarrower topic: Fluid motion helps determine whether ooids roll, grow, or settle.
Swim finNarrower topic: A fin gains thrust by pushing water backward, while water resistance opposes its motion.
Animal finNarrower topic: Water resistance and flow around a fin shape its swimming performance.
WatercraftNarrower topic: Watercraft design must manage drag, lift, and flow around the hull.