| Material.ThermodynamicState[nFM_1 + 1,nVs[2],nVs[3]] | states_1 | | Temperature at nodal interfaces |
| Material.ThermodynamicState[nVs[1],nFM_2 + 1,nVs[3]] | states_2 | | Temperature at nodal interfaces |
| Material.ThermodynamicState[nVs[1],nVs[2],nFM_3 + 1] | states_3 | | Temperature at nodal interfaces |
| SI.Concentration[nFM_1 + 1,nVs[2],nVs[3],nC] | Cs_1 | | Concentration at nodal interfaces |
| SI.Concentration[nVs[1],nFM_2 + 1,nVs[3],nC] | Cs_2 | | Concentration at nodal interfaces |
| SI.Concentration[nVs[1],nVs[2],nFM_3 + 1,nC] | Cs_3 | | Concentration at nodal interfaces |
| SI.Area[nFM_1,nVs[2],nVs[3]] | crossAreas_1 | | Cross sectional area of heat transfer |
| SI.Area[nVs[1],nFM_2,nVs[3]] | crossAreas_2 | | Cross sectional area of heat transfer |
| SI.Area[nVs[1],nVs[2],nFM_3] | crossAreas_3 | | Cross sectional area of heat transfer |
| SI.Length[nFM_1,nVs[2],nVs[3]] | lengths_1 | | Length of heat transfer |
| SI.Length[nVs[1],nFM_2,nVs[3]] | lengths_2 | | Length of heat transfer |
| SI.Length[nVs[1],nVs[2],nFM_3] | lengths_3 | | Length of heat transfer |
| SI.DiffusionCoefficient[nFM_1 + 1,nVs[2],nVs[3],nC] | D_abs_1 | | Diffusion coefficient |
| SI.DiffusionCoefficient[nVs[1],nFM_2 + 1,nVs[3],nC] | D_abs_2 | | Diffusion coefficient |
| SI.DiffusionCoefficient[nVs[1],nVs[2],nFM_3 + 1,nC] | D_abs_3 | | Diffusion coefficient |
| SI.MolarFlowRate[nFM_1,nVs[2],nVs[3],nC] | n_flows_1 | | Molar flow rate across interfaces |
| SI.MolarFlowRate[nVs[1],nFM_2,nVs[3],nC] | n_flows_2 | | Molar flow rate across interfaces |
| SI.MolarFlowRate[nVs[1],nVs[2],nFM_3,nC] | n_flows_3 | | Molar flow rate across interfaces |