Consider the argument: Premise 1: p→q Premise 2: -r Premise 3: q vr Conclusion: r Write the above argument in its symbolic statement form. A. {[(p→ qn - )A(qvr)} r B. (p- [q n-r)A (qvr))r} C. ((p- q)A [(-r a g) vr]} →r D. {I(p→ q)^-r]^(qvr)} →r

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Chapter2: Second-order Linear Odes
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32. Consider the argument:
Premise 1: p→q
Premise 2: -r
Premise 3: q vr
Conclusion: r
Write the above argument in its symbolic statement form.
A. {[(p → qn -r )A (qvr )]} →r
B. {p→ [(g n-7) A (qvr)) →7}
C. {(p- q)A [(-r ng) vr]} →7
D. (I(p→ q)n-]A (gvr)} →
33. Consider the conditional statement, "If 3 is not an even integer, then the square root of 4 is
even". Which type of transformation of the conditional statement is the statement," If 3 is an
even integer, then the square root of 4 is not even"?
A. Inverse
B. Contrapositive
C. Converse
D. Contradiction
34. Which of the following are well formed symbolic propositional statements?
i. - [p - (q a p)1
ii. - [p - (q +p))
i. (pA -4) v (a - -p)
A. i and ii only
B. i and ii only
C. i and i only
D. i, i and i
Transcribed Image Text:32. Consider the argument: Premise 1: p→q Premise 2: -r Premise 3: q vr Conclusion: r Write the above argument in its symbolic statement form. A. {[(p → qn -r )A (qvr )]} →r B. {p→ [(g n-7) A (qvr)) →7} C. {(p- q)A [(-r ng) vr]} →7 D. (I(p→ q)n-]A (gvr)} → 33. Consider the conditional statement, "If 3 is not an even integer, then the square root of 4 is even". Which type of transformation of the conditional statement is the statement," If 3 is an even integer, then the square root of 4 is not even"? A. Inverse B. Contrapositive C. Converse D. Contradiction 34. Which of the following are well formed symbolic propositional statements? i. - [p - (q a p)1 ii. - [p - (q +p)) i. (pA -4) v (a - -p) A. i and ii only B. i and ii only C. i and i only D. i, i and i
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