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Construct the truth table for the follow...

Construct the truth table for the followings statements :
(a) `(p^^q) to ~ p " " (b) (p^^q) to (pvvq)`
(c) `(p^^q) to r " " (d) [p^^(~r)] to (qvvr)`

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Prepare truth tables for the following statements : (1) (p^^q)to(~P) (2) ~(~p^^~q)vvq (3) pto[~(q^^r)]

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Write down the truth tables for the following statements : ( p ^^ q) Rightarrow ~p " " (ii) ( p ^^ q) Rightarrow ( p vee q)

Write down the truth table for the compound statements : (~pvvq)^^(~p^^~q)

Construct the switching circuit for the following statement : [p vv (~p^^q)]vv[(~q^^r) vv ~ p] .

Find the truth values of the following compound statements : (i) P^^(q^^r) " " (ii) (pvvq) vvr (iii) p^^(qvvr) " " (iv) (p^^q)vvr

Construct the truth table for the statement pto[qto(p^^q)] pto[qto(p^^q)] . Interpret the result.

Construct the switching circuit for each of the following statements : (1) (p^^q)vv(~p)vv(p^^~q) (2) (p^^q^^r)vv[~pvv(^^~r)] (3) [pvv(~p^^q)]vv[(~q^^r)vv~p]

Using the truth table, prove the following logical equivalence : p hArr q -= (p ^^ q) vv(~p ^^~q) .

Using truth tables, prove the following equivalences : (1) ~pvvq-=~(p^^q)to[~pvv(~pvvq)] (2) p""iffq-=(p^^q)vv(~p^^~q) (3) (p^^q)tor-=pto(qtor)

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