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

Study for the DC Theory Exam. Utilize flashcards and multiple choice questions; each question comes with explanations. Get ready for your test!

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.

Subscribe

Get the latest from Examzify

You can unsubscribe at any time. Read our privacy policy