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==Over And Under Setting==
    
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<p>The ''conjunction'' <math>\overset{J}{\underset{j}{\operatorname{Conj}}}\ q_j</math> of a set of propositions, <math>{q_j : j \in J},</math> is a proposition that is true if and only if each one of the <math>q_j\!</math> is true.</p>
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<p>The ''conjunction'' <math>\overset{J}{\underset{j}{\operatorname{Conj}}}\ q_j</math> of a set of propositions, <math>\{ q_j : j \in J \},</math> is a proposition that is true if and only if every one of the <math>q_j\!</math> is true.</p>
    
<p><math>\overset{J}{\underset{j}{\operatorname{Conj}}}\ q_j</math> is true &nbsp;<math>\Leftrightarrow</math>&nbsp; <math>q_j\!</math> is true for every <math>j \in J.</math></p></li>
 
<p><math>\overset{J}{\underset{j}{\operatorname{Conj}}}\ q_j</math> is true &nbsp;<math>\Leftrightarrow</math>&nbsp; <math>q_j\!</math> is true for every <math>j \in J.</math></p></li>
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<p>The ''surjunction'' <math>\overset{J}{\underset{j}{\operatorname{Surj}}}\ q_j</math> of a set of propositions, <math>\{ q_j : j \in J \},</math> is a proposition that is true if and only if exactly one of the <math>q_j\!</math> is untrue.</p>
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<p><math>\overset{J}{\underset{j}{\operatorname{Surj}}}\ q_j</math> is true &nbsp;<math>\Leftrightarrow</math>&nbsp;  <math>q_j\!</math> is untrue for unique <math>j \in J.</math></p></li>
    
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