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Explores the structure and mechanics of the arterial wall, focusing on collagen, elastin, pressure-diameter relation, compliance, and viscoelastic effects.
Explores the bending stiffness of soft neural interfaces, including axons and penetrating probes, with ideal geometrical models and elastic modulus ranges.
Explores elastic strain energy using Castigliano's theorem for determining vertical displacements in beams and calculating deflections in coil springs.
Explores viscosity in Newtonian fluids, discussing shear stress, shear strain rate, and compressibility, with examples of shear thickening and shear thinning behaviors.