No-slip boundaries for off-grid LBM - The classical in hydrodynamics no-slip condition (V=0, dP/dn=0) has got many realizations in the Lattice Boltzmann Method (LBM) due to the kinetic picture of the fluid and staircase approximation of the boundary shape. In the off-grid setting (OLBM), the latter assumption is relaxed, which comes with its own upsides and challenges. This talk will present recent results on how LBM-typical implementations of no-slip behave in OLBM, concerning the distributions of pressure, velocity, and wall shear stress on the surface of a cylinder in an "unbounded" Stokes flow, as well as its drag coefficient. Can one just copy-paste the no-slips from LBM to OLBM, or is some special approach needed when space and velocity discretizations are decoupled?...