QUESTION An AM signal is given by the equation: Vam (t) = 10 sin (2nfct) + 2.5 cos 300rt - 2.5 cos 2000t The signal is applied to a 50t load. 1. Write the modulation signal equation, Vm(t) 2. Write the carrier equation, Vc(t) 3. Determine the modulation coefficient in percentage 4. Name the behavior of signal in (ii) 5. Sketch the AM signal in (iv) 6. Calculate the carrier power 7. Determine the total power 8. Sketch the frequency spectrum based on AM equation given 9. Sketch the frequency spectrum by using Bessel function table by use the value of modulation index from the equation 10. Assume transmission have transmit five channels with probability 0.1, O.35, 0.05, 0.2 and 0.3. By using Shannon Fano coding, determine the code word and efficiency for the channel. 11. by using code word in (x), sketch the line coding for polar non return to zero, return to zero inverted and Manchester IEEE.

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8:25 1
ul 4G I
K Notes
QUESTION
An AM signal is given by the equation:
Vam (t) = 10 sin (2Ttfct) + 2.5 cos 300rt - 2.5
cos 2000t
The signal is applied to a 50tt load.
1. Write the modulation signal equation,
Vm(t)
2. Write the carrier equation, Vc(t)
3. Determine the modulation coefficient in
percentage
4. Name the behavior of signal in (iii)
5. Sketch the AM signal in (iv)
6. Calculate the carrier power
7. Determine the total power
8. Sketch the frequency spectrum based on
AM equation given
9. Sketch the frequency spectrum by using
Bessel function table by use the value of
modulation index from the equation
10. Assume transmission have transmit five
channels with probability 0.1, O.35, 0.05,
0.2 and 0.3. By using Shannon Fano
coding, determine the code word and
efficiency for the channel.
11. by using code word in (x), sketch the line
coding for polar non return to zero, return
to zero inverted and Manchester IEEE.
Transcribed Image Text:8:25 1 ul 4G I K Notes QUESTION An AM signal is given by the equation: Vam (t) = 10 sin (2Ttfct) + 2.5 cos 300rt - 2.5 cos 2000t The signal is applied to a 50tt load. 1. Write the modulation signal equation, Vm(t) 2. Write the carrier equation, Vc(t) 3. Determine the modulation coefficient in percentage 4. Name the behavior of signal in (iii) 5. Sketch the AM signal in (iv) 6. Calculate the carrier power 7. Determine the total power 8. Sketch the frequency spectrum based on AM equation given 9. Sketch the frequency spectrum by using Bessel function table by use the value of modulation index from the equation 10. Assume transmission have transmit five channels with probability 0.1, O.35, 0.05, 0.2 and 0.3. By using Shannon Fano coding, determine the code word and efficiency for the channel. 11. by using code word in (x), sketch the line coding for polar non return to zero, return to zero inverted and Manchester IEEE.
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