## Diakoptics: piecewise solution of large-scale systems, Part 2 |

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admittance matrix algebraic diagram algebraic structure analogue analysis applied forces ArA9 artificial network assumed axes calculated circuit combinatorial topology components concepts coupled currents cut coils degrees of freedom diagonal DIAKOPTICS diffusion-type network displacements elastic field elastic structures electric-circuit model electrical network end-points ENGINEERING LABORATORY SCHENECTADY equations of solution established exist flow forces F Gabriel Kron given graph ground Hooke's law impedances impressed intersection network inverse matrix isolated subdivisions junction network junction-pair junction-points large number LARGE-SCALE SYSTEMS Chapter law of transformation linear matrix of transformation mesh network method of tearing network of Fig non-linear problem non-physical original system partial differential equations partitioned physical system PIECEWISE SOLUTION POISSON-TYPE NETWORKS primitive intersection radial beam reference frame replaced representation represented rows and columns scalar shown in Fig solved steps sum-network tensor network tensor-coil tensorial form tie-line topological model true inverse matrix types ultimate building-block variables vector voltages zero