Two real messages, m₁(t) and m2(t). m₁ is modulated on a cosine, and m2(t) mi(t) 24 H(f) m1,r(t) ☑ ☑ Cos(2πfet)+ Propagation Y MY X(1) -B B cos(2π fet) m2(t) 24 H(f) m2,r(t) -B B sin(2π fet) sin(2π fet) Transmitter Receiver X(A) = M₁ (H) us (20F, H) +M₂ (4) Son (lft) x₁(+) = x (+) sin (zuf₁t) = m,(t) cu s (2õfet) sin (Zotet) + m² (1) sin (Zütet) sin (zatet)

Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
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please derive and use fourier transform

Two real messages, m₁(t) and m2(t). m₁ is modulated on a cosine, and
m2(t)
mi(t)
24 H(f)
m1,r(t)
☑
☑
Cos(2πfet)+
Propagation
Y MY X(1)
-B B
cos(2π fet)
m2(t)
24 H(f)
m2,r(t)
-B B
sin(2π fet)
sin(2π fet)
Transmitter
Receiver
Transcribed Image Text:Two real messages, m₁(t) and m2(t). m₁ is modulated on a cosine, and m2(t) mi(t) 24 H(f) m1,r(t) ☑ ☑ Cos(2πfet)+ Propagation Y MY X(1) -B B cos(2π fet) m2(t) 24 H(f) m2,r(t) -B B sin(2π fet) sin(2π fet) Transmitter Receiver
X(A) = M₁ (H) us (20F, H) +M₂ (4) Son (lft)
x₁(+) = x (+) sin (zuf₁t)
= m,(t) cu s (2õfet) sin (Zotet) + m² (1) sin (Zütet) sin (zatet)
Transcribed Image Text:X(A) = M₁ (H) us (20F, H) +M₂ (4) Son (lft) x₁(+) = x (+) sin (zuf₁t) = m,(t) cu s (2õfet) sin (Zotet) + m² (1) sin (Zütet) sin (zatet)
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