Given \( \mathrm{R}_{1}=1 \Omega, \mathrm{R}_{2}=2 \Omega, \mathrm{...
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Given \( \mathrm{R}_{1}=1 \Omega, \mathrm{R}_{2}=2 \Omega, \mathrm{C}_{1}=2 \mu \mathrm{F} \mathrm{C}_{2}=4 \mu \mathrm{F} \) The time constants (in \( \mu \mathrm{s} \) ) for the circuits I, II, III are respectively
(I)
(II)
(III)
(1) \( 18, \frac{8}{9}, 4 \)
(2) \( 18,4, \frac{8}{9} \)
(3) \( 4, \frac{8}{9}, 18 \)
(4) \( \frac{8}{9}, 18,4 \)
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