J.(x) 0.5 3 4 6. 10 12 0.9385 0.7652 0.2239 -0.2601 -0.3971 0.1506 0.1717 -0.2459 0.0477 0.2423 0.4401 0.5767 0.3528 0.3391 -0.0660 -0.2767 0.2346 0.0435 -0.2234 0.0306 0.1149 0.4861 0.3641 -0.2429 -0.1130 0.2546 -0.0849 0.0026 0.0196 0.1289 0.3091 0.4302 0.1148 -0.2911 0.0584 0.1951 0.0002 0.0025 0.0340 0.1320 0.2811 0.3576 -0.1054 -0.2196 0.1825 0.0002 0.0070 0.0430 0.1321 -0.0735 -0.2437 -0.1703 0.3621 0.1858 -0.2341 0.0012 0.0114 0.0491 0.2458 0.3376 -0.0145 0.0002 0.0025 0.0152 0.1296 0.3206 0.2167 0.0040 0.0009 0.0005 0.0565 0.2235 0.3179 0.0451 0.0001 0.0212 0.1263 0.2919 0.2304 0.0002 0.0070 0.0608 0.2075 0.3005 0.0020 0.0256 0.1231 0.2704 0.0005 0.0096 0.0634 0.1953 0.0001 0.0033 0.0290 0.1201 0.0010 0.0120 0.0650 B 2n max B 2nmax 0.1 5.0 16 0.3 4 10.0 28 0.5 4 20.0 50 1.0 6 30.0 70 8

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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100%
Ja(x)
0.5
1
3
4
6.
10
12
0.9385
0.7652
0.2239
-0.2601
-0.3971
0.1506
0.1717
-0.2459
0.0477
0.2423
0.4401
0.5767
0.3391
-0.0660
-0.2767
0.2346
0.0435
-0.2234
0.0306
0.1149
0.3528
0.4861
0.3641
-0.2429
-0.1130
0.2546
-0.0849
0.0026
0.0196
0.1289
0.3091
0.4302
0.1148
-0.2911
0.0584
0.1951
0.0002
0.0025
0.0340
0.1320
0.2811
0.3576
-0.1054
-0.2196
0.1825
0.0002
0.0070
0.0430
0.1321
0.3621
0.1858
-0.2341
-0.0735
0.0012
0.0114
0.0491
0.2458
0.3376
-0.0145
-0.2437
0.0002
0.0025
0.0152
0.1296
0.3206
0.2167
-0.1703
0.0005
0.0040
0.0565
0.0212
0.3179
0.2919
0.2235
0.0451
0.0001
0.0009
0.1263
0.2304
0.0608
0.0256
0.0002
0.0070
0.2075
0.3005
0.0020
0.1231
0.2704
0.0005
0.0096
0.0634
0.1953
0.0001
0.0033
0.0290
0.1201
0.0010
0.0120
0.0650
2nmax
2nmax
0.1
5.0
16
0.3
4
10.0
28
0.5
4
20.0
50
1.0
30.0
70
8
Transcribed Image Text:Ja(x) 0.5 1 3 4 6. 10 12 0.9385 0.7652 0.2239 -0.2601 -0.3971 0.1506 0.1717 -0.2459 0.0477 0.2423 0.4401 0.5767 0.3391 -0.0660 -0.2767 0.2346 0.0435 -0.2234 0.0306 0.1149 0.3528 0.4861 0.3641 -0.2429 -0.1130 0.2546 -0.0849 0.0026 0.0196 0.1289 0.3091 0.4302 0.1148 -0.2911 0.0584 0.1951 0.0002 0.0025 0.0340 0.1320 0.2811 0.3576 -0.1054 -0.2196 0.1825 0.0002 0.0070 0.0430 0.1321 0.3621 0.1858 -0.2341 -0.0735 0.0012 0.0114 0.0491 0.2458 0.3376 -0.0145 -0.2437 0.0002 0.0025 0.0152 0.1296 0.3206 0.2167 -0.1703 0.0005 0.0040 0.0565 0.0212 0.3179 0.2919 0.2235 0.0451 0.0001 0.0009 0.1263 0.2304 0.0608 0.0256 0.0002 0.0070 0.2075 0.3005 0.0020 0.1231 0.2704 0.0005 0.0096 0.0634 0.1953 0.0001 0.0033 0.0290 0.1201 0.0010 0.0120 0.0650 2nmax 2nmax 0.1 5.0 16 0.3 4 10.0 28 0.5 4 20.0 50 1.0 30.0 70 8
LeT Fu
Signal be given as Sfuct)s loo cos [27 lo0out + g(6)3
and Prequency Sensitivity kf=5 and signal of Message
MCE) =
locos(2ñ loot)
a) Bu Band width of the fu signal
b) Draw the Sfu(f)
c) calculale the average power of the Sfu(f) signal
Nole: I musi to use Bessel funclion values and
2nmax table Po solve this probleM
Transcribed Image Text:LeT Fu Signal be given as Sfuct)s loo cos [27 lo0out + g(6)3 and Prequency Sensitivity kf=5 and signal of Message MCE) = locos(2ñ loot) a) Bu Band width of the fu signal b) Draw the Sfu(f) c) calculale the average power of the Sfu(f) signal Nole: I musi to use Bessel funclion values and 2nmax table Po solve this probleM
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