Linked from
The 15 pages that link to No-slip condition, each with the reason it gives.
Boundary conditionsRelated: It supplies a velocity constraint at the fluid–solid interface.
Laminar flowRelated: It sets the slow-moving boundary layer that shapes laminar flow near walls.
Stokes' lawRelated: It sets the fluid motion at the sphere's surface in the standard derivation.
StreamlineRelated: It constrains streamline behavior where fluid meets a stationary wall.
Taylor–Couette flowRelated: It transfers each cylinder's rotation to the fluid at the walls.
Faxén's lawRelated: The sphere's no-slip boundary condition underlies its hydrodynamic force.
Hele-Shaw cellRelated: No-slip at both plates creates the strong velocity variation across the gap.
Rayleigh problemRelated: It makes the fluid next to the plate move with the plate immediately.