![\[R_{1}=R_{2}= 20\Omega\] \[R_{1}=R_{2}= 20\Omega\]](/forum/latexrender/pictures/02efa1a8e4a96da05ac192939522d69b.png)
![\[L=10mH\] \[L=10mH\]](/forum/latexrender/pictures/685776db3bcc88a56ecdeeef48173033.png)
![\[C=50\mu F\] \[C=50\mu F\]](/forum/latexrender/pictures/7ce1f24be536b83eba0b6dcb5a8666bb.png)
![\[e(t)=10 cos (200t-\pi /4)\] \[e(t)=10 cos (200t-\pi /4)\]](/forum/latexrender/pictures/9859ac0a847c1580d8011da486dc97ea.png)
![\[j(t)=2 cos 200t\] \[j(t)=2 cos 200t\]](/forum/latexrender/pictures/faab07189b199987df6ac07e482c5ec4.png)
DETERMINARE:
1) L'andamento dell'intensità di corrente
del resistore ![\[R_{2}\] \[R_{2}\]](/forum/latexrender/pictures/13795624e0aef2b6ade0a94c3e176d60.png)
2) La potenza media
assorbita dal resistore ![\[R_{2}\] \[R_{2}\]](/forum/latexrender/pictures/13795624e0aef2b6ade0a94c3e176d60.png)
Se utilizzo il principio di sovrapposizione degli effetti è giusto oppure può essere risolto in un altro modo??
Moderatori:
g.schgor,
IsidoroKZ
![\[R_{1}=R_{2}= 20\Omega\] \[R_{1}=R_{2}= 20\Omega\]](/forum/latexrender/pictures/02efa1a8e4a96da05ac192939522d69b.png)
![\[L=10mH\] \[L=10mH\]](/forum/latexrender/pictures/685776db3bcc88a56ecdeeef48173033.png)
![\[C=50\mu F\] \[C=50\mu F\]](/forum/latexrender/pictures/7ce1f24be536b83eba0b6dcb5a8666bb.png)
![\[e(t)=10 cos (200t-\pi /4)\] \[e(t)=10 cos (200t-\pi /4)\]](/forum/latexrender/pictures/9859ac0a847c1580d8011da486dc97ea.png)
![\[j(t)=2 cos 200t\] \[j(t)=2 cos 200t\]](/forum/latexrender/pictures/faab07189b199987df6ac07e482c5ec4.png)
del resistore ![\[R_{2}\] \[R_{2}\]](/forum/latexrender/pictures/13795624e0aef2b6ade0a94c3e176d60.png)
assorbita dal resistore ![\[R_{2}\] \[R_{2}\]](/forum/latexrender/pictures/13795624e0aef2b6ade0a94c3e176d60.png)


![\[Z_{th}=Z_{C}//Z_{R1}=19,24-3,85i\] \[Z_{th}=Z_{C}//Z_{R1}=19,24-3,85i\]](/forum/latexrender/pictures/7165da7fe466a818483d2d21e8844d47.png)
![\[E_{0}=V_{L}-V_{C}\] \[E_{0}=V_{L}-V_{C}\]](/forum/latexrender/pictures/e623323886d6879b7018bd89dc1bb2ac.png)






sono entrata in confusione!![\[V_{AB}= e \frac{R}{R+R}\] \[V_{AB}= e \frac{R}{R+R}\]](/forum/latexrender/pictures/c3558fdf7085f2fa4c5a5ea945c8ffa7.png)
![\[V_{AB}\] \[V_{AB}\]](/forum/latexrender/pictures/0c8bbc7ce45b1c1de1c2fc3f8e718215.png)




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