9.33 The phasor current I, in the circuit shown in Fig. P9.33 is 40/0° mA. a) Find Ib. Ie, and V gº b) If w = 800 rad/s, write expressions for in(t). ic(t), and vg(t). Figure P9.33 25 Ω Te 120 120 Ω Ia j40 Ω 160 Ω Σ Ib -j80 Ω 40+j80 mA
9.33 The phasor current I, in the circuit shown in Fig. P9.33 is 40/0° mA. a) Find Ib. Ie, and V gº b) If w = 800 rad/s, write expressions for in(t). ic(t), and vg(t). Figure P9.33 25 Ω Te 120 120 Ω Ia j40 Ω 160 Ω Σ Ib -j80 Ω 40+j80 mA
Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![9.33 The phasor current I, in the circuit shown in
Fig. P9.33 is 40/0° mA.
a) Find Ib, Ie, and Vg.
b) If w = 800 rad/s, write expressions for ip(t),
ic(t), and vg(t).
Figure P9.33
8
25 Ω
Ic
120 Ω
j40 Ω
160 Ω Σ
Ib
-j80 Ω
40 + 180 mA
9.56 Use the node-voltage method to find the steady-state expression for u.() in the circuit](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd27e690f-8e79-4189-bad7-8236da6729d0%2F5695b1e6-59a9-4e67-ae5c-2339e453c2ac%2Frxtlqv4_processed.png&w=3840&q=75)
Transcribed Image Text:9.33 The phasor current I, in the circuit shown in
Fig. P9.33 is 40/0° mA.
a) Find Ib, Ie, and Vg.
b) If w = 800 rad/s, write expressions for ip(t),
ic(t), and vg(t).
Figure P9.33
8
25 Ω
Ic
120 Ω
j40 Ω
160 Ω Σ
Ib
-j80 Ω
40 + 180 mA
9.56 Use the node-voltage method to find the steady-state expression for u.() in the circuit
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