2.3-1 In Fig. P2.3-1, the signal g1(t) = 8(-t). Express signals g2(t), 8 3(t), 84(t), and g 5(t) in terms of signals g (t), g1 (t), and theirtime-shifted, time-scaled, or time-inverted versions. For instance, 82(t) = g (1 – T) + 81(1 –T) for some suitable value of T. Similarly, both g3 (t) and g4(t) can be expressed as g(t –T)+g(t-T) forsome suitable value of T. In addition, g5(t) can be expressed as g(t) time-shifted, time-scaled, and then multiplied by a constant.

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the value of a.
2.3-1 In Fig. P2.3-1, the signal g1 (t) = g(-1). Express signals g2(t), 8 3(1), 84(t), and 8 5(1) in terms
of signals g (t), g1 (t), and theirtime-shifted, time-scaled, or time-inverted versions. For instance,
82(t) = 8 (1 – T)+ 81(1 – T) for some suitable value of T. Similarly, both g3 (t) and g4(t) can be
expressed as g(t-T)+g(t–T) forsome suitable value of T. In addition, g5(t) can be expressed
as g(t) time-shifted, time-scaled, and then multiplied by a constant.
Figure P.2.3-1
g(t)
82(1)
2
1.5
84(1)
-1
2
2.
Transcribed Image Text:the value of a. 2.3-1 In Fig. P2.3-1, the signal g1 (t) = g(-1). Express signals g2(t), 8 3(1), 84(t), and 8 5(1) in terms of signals g (t), g1 (t), and theirtime-shifted, time-scaled, or time-inverted versions. For instance, 82(t) = 8 (1 – T)+ 81(1 – T) for some suitable value of T. Similarly, both g3 (t) and g4(t) can be expressed as g(t-T)+g(t–T) forsome suitable value of T. In addition, g5(t) can be expressed as g(t) time-shifted, time-scaled, and then multiplied by a constant. Figure P.2.3-1 g(t) 82(1) 2 1.5 84(1) -1 2 2.
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