= For the circuit shown below, € = 18.7V, R₁ = 44.2 Ohms, R₂ 20.6Ohms, and L= 40.4 H. S₁ remains closed and S₂ remains open until steady state is reached. What is the steady state value of the magnetic energy stored in the inductor? Assume units of Joules and 3 significant figures. R₁ E S₁ eeee S₂ R₂
= For the circuit shown below, € = 18.7V, R₁ = 44.2 Ohms, R₂ 20.6Ohms, and L= 40.4 H. S₁ remains closed and S₂ remains open until steady state is reached. What is the steady state value of the magnetic energy stored in the inductor? Assume units of Joules and 3 significant figures. R₁ E S₁ eeee S₂ R₂
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For the circuit shown below, € = 18.7V, R₁ = 44.2 Ohms, R₂
20.6Ohms, and L= 40.4 H. S₁ remains closed and S₂ remains open
until steady state is reached. What is the steady state value of the
magnetic energy stored in the inductor? Assume units of Joules and 3
significant figures.
R₁
E
S₁
eeee
S₂
R₂"
Transcribed Image Text:=
For the circuit shown below, € = 18.7V, R₁ = 44.2 Ohms, R₂
20.6Ohms, and L= 40.4 H. S₁ remains closed and S₂ remains open
until steady state is reached. What is the steady state value of the
magnetic energy stored in the inductor? Assume units of Joules and 3
significant figures.
R₁
E
S₁
eeee
S₂
R₂
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