The energy contained within the band [0, f], f > 0, E(f) of a signal is given by the following expression: E(f) = (a +. + ao f +o f²) exp(-of). Then the energy spectral density, S(f), for any f > 0 can be defined as: exp(-of) а. f(а- 2) b. exp(-af) f(2 – a) exp(-of) C. d. None of these

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17)
The energy contained within the band [0, f],f > 0, E(f) of a signal is given
by the following expression:
E(f) = (a + aof +of) exp(-of).
Then the energy spectral density, S(f), for any f > 0 can be defined as:
P+ exp(-of)
a.
b. f +
f(a – 2)
exp(-of)
f(2 - a)
C.
exp(-of)
d. None of these
Transcribed Image Text:17) The energy contained within the band [0, f],f > 0, E(f) of a signal is given by the following expression: E(f) = (a + aof +of) exp(-of). Then the energy spectral density, S(f), for any f > 0 can be defined as: P+ exp(-of) a. b. f + f(a – 2) exp(-of) f(2 - a) C. exp(-of) d. None of these
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