Provide the formulas for converting a delta network Rab, Rbc, Rca to a Y network Ra, Rb, Rc.

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Multiple Choice

Provide the formulas for converting a delta network Rab, Rbc, Rca to a Y network Ra, Rb, Rc.

Explanation:
Delta-to-Y transformation preserves the same resistance between every pair of external terminals. For a delta with Rab between nodes a and b, Rbc between b and c, and Rca between c and a, the equivalent Y has legs Ra, Rb, Rc given by Ra = Rab × Rca / (Rab + Rbc + Rca) Rb = Rab × Rbc / (Rab + Rbc + Rca) Rc = Rbc × Rca / (Rab + Rbc + Rca) This arrangement ensures each Y leg is the product of the two adjacent delta resistances divided by the sum of all three delta resistances. A quick check: if all delta resistances are equal to R, each Y leg becomes R^2/(3R) = R/3, which is consistent with the transformation. Other forms would not preserve the same equivalence between node pairs.

Delta-to-Y transformation preserves the same resistance between every pair of external terminals. For a delta with Rab between nodes a and b, Rbc between b and c, and Rca between c and a, the equivalent Y has legs Ra, Rb, Rc given by

Ra = Rab × Rca / (Rab + Rbc + Rca)

Rb = Rab × Rbc / (Rab + Rbc + Rca)

Rc = Rbc × Rca / (Rab + Rbc + Rca)

This arrangement ensures each Y leg is the product of the two adjacent delta resistances divided by the sum of all three delta resistances. A quick check: if all delta resistances are equal to R, each Y leg becomes R^2/(3R) = R/3, which is consistent with the transformation. Other forms would not preserve the same equivalence between node pairs.

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