3. If a load resistance of 2 Q is connected across the generator terminals (as shown in Figure 13-3) current will flow. AC RL GENERATOR Figure 13-3. Knowing the instantaneous voltage polarity and value e for every 30° (from the DISCUSSION section) and using the equation i = e/R, calculate and record the instantaneous current value for every 30° time interval. Remember also to indicate the polarity of the current (its direction). 30° i 210° i = %3D a a 60° i a 240° i a 90° i 270° i %3D %3D a 120° i = 300° i %3D a 150° i = 330° i = 180° i = 360° i = a Note: The abbreviations for instantaneous current are "i" and "a" as opposed to the conventional T and "A" . Plot your recorded current values on the graph of Figure 13-2. Draw a smooth curve through your plotted points and label this current curve "i". %3D %3D

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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3. If a load resistance of 2 is connected across the generator terminals (as
shown in Figure 13-3) current will flow.
AC
RL
GENERATOR
Figure 13-3.
Knowing the instantaneous voltage polarity and value e for every 30° (from
the DISCUSSION section) and using the equation i = e/R, calculate and
record the instantaneous current value for every 30° time interval.
Remember also to indicate the polarity of the current (its direction).
%3D
30° i
210° i =
60° i
240° i
a
90° i
270° i =
a
120° i
300° i =
150° i =
a
330° i =
a
180° i =
a
360° i
a
Note: The abbreviations for instantaneous current are "i and "a"
as opposed to the conventional "I" and "A"
4. Plot your recorded current values on the graph of Figure 13-2. Draw a
smooth curve through your plotted points and label this current curve "i".
%3D
%3D
%3D
Transcribed Image Text:3. If a load resistance of 2 is connected across the generator terminals (as shown in Figure 13-3) current will flow. AC RL GENERATOR Figure 13-3. Knowing the instantaneous voltage polarity and value e for every 30° (from the DISCUSSION section) and using the equation i = e/R, calculate and record the instantaneous current value for every 30° time interval. Remember also to indicate the polarity of the current (its direction). %3D 30° i 210° i = 60° i 240° i a 90° i 270° i = a 120° i 300° i = 150° i = a 330° i = a 180° i = a 360° i a Note: The abbreviations for instantaneous current are "i and "a" as opposed to the conventional "I" and "A" 4. Plot your recorded current values on the graph of Figure 13-2. Draw a smooth curve through your plotted points and label this current curve "i". %3D %3D %3D
+ 100
+ 80
+ 60
+ 40
+ 20
-20
-40
-60
-80
-100
0° 30°
60 90°
120° 150 180° 210°
240°
270
300 330
360
ANGULAR ROTATION IN DEGREES
Figure 13-2.
INSTANTANEOUS VOLTAGE (e) 0R CURRENT (i)
品
INSTANTANEOUS POWER IN THOUSANDS OF WATTS
Transcribed Image Text:+ 100 + 80 + 60 + 40 + 20 -20 -40 -60 -80 -100 0° 30° 60 90° 120° 150 180° 210° 240° 270 300 330 360 ANGULAR ROTATION IN DEGREES Figure 13-2. INSTANTANEOUS VOLTAGE (e) 0R CURRENT (i) 品 INSTANTANEOUS POWER IN THOUSANDS OF WATTS
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