& = & x^\prime y z \lor x y^\prime z \lor x y z^\prime
& = & x^\prime y z \lor x y^\prime z \lor x y z^\prime
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Expressing the general case of <math>\nu_k\!</math> in terms of familiar operations is facilitated by making a preliminary definition.
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To express the general case of <math>\nu_k\!</math> in terms of familiar operations, it helps to make a preliminary definition.
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'''Definition.''' Let the function <math>\lnot_j : \mathbb{B}^k \to \mathbb{B},</math> for each integer <math>j \in [1, k],</math> be defined by the following equation:
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'''Definition.''' Let the function <math>\lnot_j : \mathbb{B}^k \to \mathbb{B},</math> where <math>j\!</math> is an integer in the interval <math>[1, k],\!</math> be defined by the following equation: