Impedance \({\rm{Z}}\left( {\rm{s}} \right) = \frac{{\left( {{\rm{s}} + 3} \right)\left( {{\rm{s}} + 5} \right)}}{{\left( {{\rm{s}} + 4} \right)\left( {{\rm{s}} + 6} \right)}}\) is realized in the foster’s second form. What will be the values, respectively of R and L in one of the series R – L branches?
1
\(2{\rm{\Omega }},{\rm{\;}}\frac{1}{3}{\rm{H}}\)
2
\(2{\rm{\Omega }},{\rm{\;}}\frac{4}{3}{\rm{H}}\)
3
\(2{\rm{\Omega }},{\rm{\;}}\frac{5}{3}{\rm{H}}\)
4
\(2{\rm{\Omega }},{\rm{\;}}\frac{2}{3}{\rm{H}}\)
5
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