Synchronous and asynchronous transmission (presentation, comparison). Considering a baseband signal with the bandwidth between 210 kHz and 3970 kHz modulating the amplitude of a 54 MHz sine carrier, determine the frequency range of the resulted amplitude modulated (AM) signal. Polynomial block codes for data communications (principle, polynomial description). What is the ratio between the data rates (D₁/D₂) of two transmitted signals occupying the same bandwidth, but different number of levels, i.e., M₁ = 8 and M₂ 32, using Raised Cosine characteristics with the roll-off factors a₁ = 0.5 and a2 = 0.25, respectively? =

Database System Concepts
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ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
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Chapter1: Introduction
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Synchronous and asynchronous transmission (presentation, comparison).
Considering a baseband signal with the bandwidth between 210 kHz and 3970 kHz modulating
the amplitude of a 54 MHz sine carrier, determine the frequency range of the resulted amplitude
modulated (AM) signal.
Polynomial block codes for data communications (principle, polynomial description).
What is the ratio between the data rates (D₁/D2) of two transmitted signals occupying the same
bandwidth, but different number of levels, i.e., M₁ 8 and M₂ = 32, using Raised Cosine
characteristics with the roll-off factors a₁ = 0.5 and a2 = 0.25, respectively?
Transcribed Image Text:Synchronous and asynchronous transmission (presentation, comparison). Considering a baseband signal with the bandwidth between 210 kHz and 3970 kHz modulating the amplitude of a 54 MHz sine carrier, determine the frequency range of the resulted amplitude modulated (AM) signal. Polynomial block codes for data communications (principle, polynomial description). What is the ratio between the data rates (D₁/D2) of two transmitted signals occupying the same bandwidth, but different number of levels, i.e., M₁ 8 and M₂ = 32, using Raised Cosine characteristics with the roll-off factors a₁ = 0.5 and a2 = 0.25, respectively?
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