Given: is(t)= 4 e-100 mA t v₁ (0) = 6V V₂ (0) = 4 V V3 (0) = 2V + 8 µF: V₂ 1₂ 2.4μF V1 # + 2 μF V3 b • • Find the equivalent capacitance Cequ seen by the current source Find the voltage v₁ (t), the voltage between (a) and (b), as shown Find the current i(t) as shown . Find the current (₂ (t) as shown • Find the energy stored within 2.4 μF at t = ∞0 is (t)

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Given:
is(t)= 4 e-100 mA
v₁ (0) = 6 V
V₂ (0) = 4 V
V3 (0) = 2V
.
8 μF
iz
2 μF
V₂2
V3
1₁
2.4µF3 V₁
Find the equivalent capacitance Cequ seen by the current source
Find the voltage v₁ (t), the voltage between (a) and (b), as shown
Find the current i(t) as shown
•
• Find the current iz(t) as shown
Find the energy stored within 2.4 μF at t = 00
b
1
(1) is (t)
Transcribed Image Text:Given: is(t)= 4 e-100 mA v₁ (0) = 6 V V₂ (0) = 4 V V3 (0) = 2V . 8 μF iz 2 μF V₂2 V3 1₁ 2.4µF3 V₁ Find the equivalent capacitance Cequ seen by the current source Find the voltage v₁ (t), the voltage between (a) and (b), as shown Find the current i(t) as shown • • Find the current iz(t) as shown Find the energy stored within 2.4 μF at t = 00 b 1 (1) is (t)
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