4- An alternating voltage has the equation v = 141.4 sin 377t; what are the values of: (i) r.m.s. voltage; (ii) frequency; (iii) the instantaneous voltage when t 3 ms? (r. m. s. = 10 V A) f = 50 Hz vi = 127.8 V (r.m. s. = 90 V f = 50 Hz vi = 127.8 V B) %3D (r. m. s. = 90 V C) { f = 60 Hz (vi = 127.8 V (r. m. s. = 100 V f = 60 Hz vi = 127.8 V D) 5- For the air-core coil in Fig. 3: Find the inductance. I=25.4mm Air core (4) (A)15.68µH (B) 20 µH (C) 10 µH (D) 1.5 µH d =6.35mm Fig.3 100 turns

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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4- An alternating voltage has the equation v = 141.4 sin 377t; what are the values of:
(i) r.m.s. voltage; (ii) frequency; (iii) the instantaneous voltage when t = 3 ms?
(r. m. s. = 10 V
A)} f = 50 Hz
vi = 127.8 V
(r. m. s. = 90 V
f = 50 Hz
vi = 127.8 V
B)
II
(r. m. s. = 90 V
C) { f = 60 Hz
(vi = 127.8 V
(r. m. s. = 100 V
f = 60 Hz
vi = 127.8 V
D)
5- For the air-core coil in Fig. 3: Find the inductance.
I=25.4mm
Air core (4)
(А)15.68uH (В) 20 иН (C) 10 pн (D) 1.5 pH
d =6.35mm
Fig.3
100 turns
Transcribed Image Text:4- An alternating voltage has the equation v = 141.4 sin 377t; what are the values of: (i) r.m.s. voltage; (ii) frequency; (iii) the instantaneous voltage when t = 3 ms? (r. m. s. = 10 V A)} f = 50 Hz vi = 127.8 V (r. m. s. = 90 V f = 50 Hz vi = 127.8 V B) II (r. m. s. = 90 V C) { f = 60 Hz (vi = 127.8 V (r. m. s. = 100 V f = 60 Hz vi = 127.8 V D) 5- For the air-core coil in Fig. 3: Find the inductance. I=25.4mm Air core (4) (А)15.68uH (В) 20 иН (C) 10 pн (D) 1.5 pH d =6.35mm Fig.3 100 turns
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