KnowraTensorLinked fromLinked fromThe 22 pages that link to Tensor, each with the reason it gives.All 22Broader topic 2Related 3Narrower topic 14Compared with 3AnisotropyNarrower topic: Tensors encode many direction-dependent properties, including stress, conductivity, and optical response.Riemann curvature tensorNarrower topic: Tensorial transformation rules make curvature independent of the chosen coordinates.Stress–energy tensorNarrower topic: Tensor transformation rules make its physical content independent of coordinates.Tensor fieldNarrower topic: Each point receives one of these multilinear objects.Tensor calculusNarrower topic: Tensor calculus applies algebraic and differential operations to these objects.Vector (physics)Narrower topic: Tensors generalize vectors to quantities with multiple directional inputs and outputs.Four-vectorNarrower topic: Four-vectors are rank-one tensors, part of a broader transformation hierarchy.Lorentz covarianceNarrower topic: Tensor equations preserve their form when Lorentz transformations mix spacetime components.Cauchy stress tensorNarrower topic: The stress components depend on axes, while the represented physical quantity does not.Einstein notationNarrower topic: Tensor components are the quantities Einstein notation most often represents.General covarianceNarrower topic: Tensor equations retain their form when coordinate components change.Finite strain theoryNarrower topic: Deformation gradients and strain measures are tensors that encode coordinate-independent geometry.Curie's principleNarrower topic: Tensor form makes symmetry restrictions on material responses calculable.Ricci calculusNarrower topic: Ricci calculus expresses geometric quantities as tensors so equations remain meaningful across coordinate systems.