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Which among the following theorems can be applied to any active or passive network?
  • a)
    Thevenin’s theorem 
  • b)
    Tellegen theorem 
  • c)
    Superposition theorem 
  • d)
    Norton theorem
Correct answer is option 'B'. Can you explain this answer?
Most Upvoted Answer
Which among the following theorems can be applied to any active or pas...
Tellegen theorem can be applied to any network- linear or non-linear, active or passive, time-variant, or time-invariant.
Tellegen Theorem: According to Tellegen’s theorem, the summation of instantaneous powers for the n number of branches in an electrical network is zero.
Let n number of branches in an electrical network have I1, I2, I3, …. In respective instantaneous currents through them.
These branches have instantaneous voltages across them are V1, V2, V3, …. Vn respectively.
According to Tellegen’s theorem:

It is based on the conservation of energy and is applicable to both linear and non-linear circuits.
Important Notes:
Various Theorem and the circuits where they are applicable is shown below in the table:
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Which among the following theorems can be applied to any active or pas...
Tellegen theorem can be applied to any network- linear or non-linear, active or passive, time-variant, or time-invariant.
Tellegen Theorem: According to Tellegen’s theorem, the summation of instantaneous powers for the n number of branches in an electrical network is zero.
Let n number of branches in an electrical network have I1, I2, I3, …. In respective instantaneous currents through them.
These branches have instantaneous voltages across them are V1, V2, V3, …. Vn respectively.
According to Tellegen’s theorem:

It is based on the conservation of energy and is applicable to both linear and non-linear circuits.
Important Notes:
Various Theorem and the circuits where they are applicable is shown below in the table:
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Which among the following theorems can be applied to any active or passive network?a)Thevenin’s theoremb)Tellegen theoremc)Superposition theoremd)Norton theoremCorrect answer is option 'B'. Can you explain this answer?
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