A. \(2\sqrt{2}A\)
B. \(\sqrt{3}A\)
C. \(\sqrt{2}A\)
D. \(3\sqrt{3}A\)
B
\(\left\{\begin{matrix} 3n\frac{V}{s}\Rightarrow Z_{L_{3}}=3Z_{L_{1}} \\ I_{3}=3A \\ cos\varphi _{3}=0,5=\frac{R}{\sqrt{R^{2}+Z_{L_{3}}^{2}}} \ (1) \end{matrix}\right.\)
\(\left\{\begin{matrix} n\frac{V}{s}\Rightarrow Z_{L_{1}} \\ I_{1}=\frac{E_{1}}{\sqrt{R^{2}+Z_{L_{1}}^{2}}} \end{matrix}\right.\)
\(I_{3}=\frac{E_{3}}{\sqrt{R^{2}+Z_{L_{3}}^{2}}}=\frac{3E_{1}}{\sqrt{R^{2}+9Z_{L_{1}}^{2}}}=\frac{3E_{1}}{2R}\)
Từ (1) \(\Rightarrow 0,5^{2}(R^{2}+Z_{L_{3}}^{2})=R^{2}\Rightarrow Z_{L_{3}}^{2}=R\sqrt{3}\Rightarrow Z_{L_{1}}=\frac{R}{\sqrt{3}}\)
\(\Rightarrow \begin{Bmatrix} I_{1}=\frac{E_{1}}{\sqrt{R^{2}+R^{2}}}=\frac{E_{1}\sqrt{3}}{2R} \\ I_{3}=3=\frac{3E_{1}}{2R} \end{Bmatrix}\Rightarrow I_{1}=\sqrt{3}A\)
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