Imagine a material that can be soft along one edge, extremely stiff along another, and capable of changing between these states simply by applying a small deformation. Even more surprising, this transformation can happen without requiring large forces or significant energy. This is the remarkable idea behind transformable topological mechanical metamaterials (TTMMs) —engineered structures whose geometry, rather than their chemical composition, determines how they respond to forces, vibrations and motion. Researchers including Rocklin and his team have shown that carefully designed mechanical lattices can be reversibly transformed between states with dramatically different mechanical and acoustic properties. During this transformation, properties such as edge stiffness and the speed at which sound travels through the material can change by orders of magnitude. The work brings together three fascinating areas of physics: mechanical metamaterials, soft deformation and topology . What Are...