Calculate the following in extra pages which must be attached with the assignment. Also, fill in blank of following: (a) If I = 9.25AZ-26.31°, (i) The value of R1 = (ii) The value of Ci =, (b) If /2 = 4.47AZ-33.43°, (i) The value of R2 = (ii) The value of L2 = (c) If I3 = 11.09AZ63.69°, (i) The value of R3 = (ii) The value of C3 = (d) If I4 = 7.43AZ98.2°, (i) The value of R4 = (ii) The value of L4 =

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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Problem 01: For the following parallel network, the supply voltage E = 200VZ30° with 250 rad/s as shown in
Figure 01:
R2
R4
+
E
X14 L4
U 9E = '"xg '7
X = 40 2 C,
Figure 01
Calculate the following in extra pages which must be attached with the assignment.
Also, fill in blank of following:
(a) If I = 9.25AZ-26.31°,
(i) The value of R1 =
(ii) The value of Ci =
(b) If 12 = 4.47AZ-33.43°,
(i) The value of R2 =
(ii) The value of L2 =
(c) If I; = 11.09AZ63.69°,
(i) The value of R3 =
(ii) The value of C3 =
(d) If I4 = 7.43AZ98.2°,
(i) The value of R4 =
(i) The value of L4 =
(e) Calculate:
(i) The voltage drop (in polar form) across the resistance R1 =
(ii) The voltage drop (in polar form) across the inductance L2 -
(iii) The voltage drop (in polar form) across the capacitance C3 =
(iv) The voltage drop (in polar form) across the inductance L4 =
(v) The total current IT (in polar form) =
(vi) The power factor =
(vii) Power factor is leading or lagging =.
Transcribed Image Text:Problem 01: For the following parallel network, the supply voltage E = 200VZ30° with 250 rad/s as shown in Figure 01: R2 R4 + E X14 L4 U 9E = '"xg '7 X = 40 2 C, Figure 01 Calculate the following in extra pages which must be attached with the assignment. Also, fill in blank of following: (a) If I = 9.25AZ-26.31°, (i) The value of R1 = (ii) The value of Ci = (b) If 12 = 4.47AZ-33.43°, (i) The value of R2 = (ii) The value of L2 = (c) If I; = 11.09AZ63.69°, (i) The value of R3 = (ii) The value of C3 = (d) If I4 = 7.43AZ98.2°, (i) The value of R4 = (i) The value of L4 = (e) Calculate: (i) The voltage drop (in polar form) across the resistance R1 = (ii) The voltage drop (in polar form) across the inductance L2 - (iii) The voltage drop (in polar form) across the capacitance C3 = (iv) The voltage drop (in polar form) across the inductance L4 = (v) The total current IT (in polar form) = (vi) The power factor = (vii) Power factor is leading or lagging =.
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