Given the signal x, (1) in Figure (a) & signal x₂(1) in Figure(b), these signals are: 1 x₁ (t) x₂(t) 0 ... i Ä mபுபு 0 4 8 12 Time t (a) O A. x, (1) is a power signal with average power = 1 & x₂(t) is energy signal with energy A² T OB.x, (1) is a power signal with average power = A2 T & x₂(t) is energy signal with energy 1 O C.x, (1) is a power signal with average power = 1/4 & x₂(t) is energy signal with energy A2/2 O D.x, (t) is energy signal with value = 1/4 & x₂(t) is power signal with value A²/2 O E. x, (t) is a power signal with average power = 1 & x₂(t) is energy signal with energy A2 A²/2 16 (b)

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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127.

Subject  :- Mechanical engineering 

Given the signal x, (1) in Figure (a) & signal x₂ (1) in Figure(b), these signals are:
x₁ (t)
w
4
0
8
12
16
20
Time t
(a)
O A. x, (1) is a power signal with average power = 1 & x₂(t) is energy signal with energy A2 T,
OB. x₁ (1) is a power signal with average power =
= A² T & x₂(
OC.x, (t) is a power signal with average power = 1/4
x (t) is energy signal with energy 1
/4 & x₂(t) is energy signal with energy A2
A²/2
O D.x, (1) is energy signal with value = 1/4 & x₂(t) is power signal with value A2/2
O E. x, (t) is a power signal with average power = 1 & x₂(t) is energy signal with energy A²/2
2
x₂ (t)
(b)
Transcribed Image Text:Given the signal x, (1) in Figure (a) & signal x₂ (1) in Figure(b), these signals are: x₁ (t) w 4 0 8 12 16 20 Time t (a) O A. x, (1) is a power signal with average power = 1 & x₂(t) is energy signal with energy A2 T, OB. x₁ (1) is a power signal with average power = = A² T & x₂( OC.x, (t) is a power signal with average power = 1/4 x (t) is energy signal with energy 1 /4 & x₂(t) is energy signal with energy A2 A²/2 O D.x, (1) is energy signal with value = 1/4 & x₂(t) is power signal with value A2/2 O E. x, (t) is a power signal with average power = 1 & x₂(t) is energy signal with energy A²/2 2 x₂ (t) (b)
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