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(Solved):   There are 2 questions. Design a BCD-to-decimal decoder using the unused combinations of t ...



Design a BCD-to-decimal decoder using the unused combinations of the BCD code as dont-care conditions.
Construct a 5-to-32-l

 
There are 2 questions.

Design a BCD-to-decimal decoder using the unused combinations of the BCD code as don't-care conditions. Construct a 5-to-32-line decoder with four 3-to-8-line decoders with enable and a 2-to-4-line decoder. Using a decoder and external gates, design the combinational circuit defined by the following three Boolean functions: a) \( \mathrm{F} 1=\mathrm{x}^{\prime} \mathrm{yz}+\mathrm{xz} \) b) \( F 1=\left(y^{\prime}+x\right) z \) c) \( F 2=x y^{\prime} z^{\prime}+x^{\prime} y \) d) \( F 2=y^{\prime} z^{\prime}+x^{\prime} y+y z^{\prime} \) e) \( F 3=x^{\prime} y^{\prime} z^{\prime}+x y \)


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Design a BCD-to-decimal decoder using the unused combinations of the BCD code as don't-care conditions. Answer: A BCD-to-decimal decoder can be design
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