The differential equation describing the inductor current is: in + iz + i2 = The initial...
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The differential equation describing the inductor current is: in + iz + i2 = The initial conditions are: 22 (0) : = The final inductor current 22 (∞) = î A, 2(0) CA = <> 9 u(t) V R₁ 1Ω R₂ C 70 Ω 1₂ L 0.1 F 4.5 H The differential equation describing the inductor current is: in + iz + i2 = The initial conditions are: 22 (0) : = The final inductor current 22 (∞) = î A, ½ (0): CA = <> 9 u(t) V R₁ 1Ω R₂ C 70 Ω 1₂ L 0.1 F 4.5 H The differential equation describing the inductor current is: in + iz + i2 = The initial conditions are: 22 (0) : = The final inductor current 22 (∞) = î A, 2(0) CA = <> 9 u(t) V R₁ 1Ω R₂ C 70 Ω 1₂ L 0.1 F 4.5 H The differential equation describing the inductor current is: in + iz + i2 = The initial conditions are: 22 (0) : = The final inductor current 22 (∞) = î A, ½ (0): CA = <> 9 u(t) V R₁ 1Ω R₂ C 70 Ω 1₂ L 0.1 F 4.5 H
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To solve the differential equation describing the inductor current in the imagewe can use the following steps Rewrite the equation in standard form Th... View the full answer
Related Book For
Income Tax Fundamentals 2013
ISBN: 9781285586618
31st Edition
Authors: Gerald E. Whittenburg, Martha Altus Buller, Steven L Gill
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