🎬how the magnetic stress tensor decomposes to show that magnetic fields simultaneously exert tension

The visualizations powerfully confirm that the magnetic field tensor product ( FijFjkF_{i j} F_{j k} ) and the Maxwell Stress Tensor ( TikT_{i k} ) are defined by the interplay between isotropic energy and field direction. The tensor product FijFjkF_{i j} F_{j k} is constructed by subtracting the highly directional dyadic product (BiBk)\left(B_i B_k\right) from the uniform isotropic term (B2δik)\left(B^2 \delta_{i k}\right). This leads to the fundamental physical interpretation of TikT_{i k}, which is composed of the dyadic term (representing tension/pulling force along the field lines) and the isotropic term (representing pressure perpendicular to the field lines). When the components are summed, the resulting TikT_{i k} tensor is always positive along the field direction (net tension) and negative perpendicular to the field direction (net pressure/compression), precisely illustrating the classic physical effect of magnetic fields on surrounding media.

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