\(R_{23}=\dfrac{R_2.R_3}{R_2+R_3}=\dfrac{6.12}{6+12}=4\left(\Omega\right)\)
\(R_{tđ}=R_1+R_{23}=3+4=7\left(\Omega\right)\)
\(I=I_1=I_{23}=3A\)
\(U_{23}=I_{23}.R_{23}=3.4=12\left(V\right)\)
\(\left\{{}\begin{matrix}I_2=\dfrac{U_2}{R_2}=\dfrac{12}{6}=2\left(A\right)\\I_3=\dfrac{U_3}{R_3}=\dfrac{12}{12}=1\left(A\right)\end{matrix}\right.\)
\(Q_{tỏa}=A=P.t=I^2.R.t=3^2.7.10.60=37800\left(J\right)\)