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Lecture
Naturally Curved Hair in 2D
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Structural Mechanics: Beam Bending and Boundary Conditions
Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
Beam Bending I
Covers stress, strain tensors, material constants, and beam bending fundamentals.
Simple Shear: General Notions and Applications
Explores simple shear, shear stress, strain energy, stress analysis, and torsional shear stress in simple twist.
Naturally Curved Hair in 2D
Explores the behavior of naturally curved hair in a 2D space under gravity.
Moment of Inertia and Neutral Axis
Explains stress, bending moment, and moment of inertia in beam sections.
Deformations and Elasticity
Covers deformations, elasticity, stress distribution, and force transmission in cells.
Naturally Curved Hair Mechanics
Delves into the mechanics of naturally curved hair, exploring its shape under gravity and the effects of weak and strong gravity.
Torsion: Deriving Hooke's Law and Solving Torsion Problems
Covers torsional loads, Hooke's law derivation, solving problems, and examples in hollow and composite shafts.
Naturally Curved Hair in 2D
Delves into the mechanics of slender structures, analyzing naturally curved hair in 2D under gravity.
Soft neural interfaces: Bending stiffness
Explores the bending stiffness of soft neural interfaces, including axons and penetrating probes, with ideal geometrical models and elastic modulus ranges.