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A "Divide and Conquer" Algorithm for Hilbert-Poincaré Series, Multiplicity and Dimension of Monomial Ideals.

, , , and . AAECC, volume 673 of Lecture Notes in Computer Science, page 76-88. Springer, (1993)

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A Case of Automatic Theorem Proving in Euclidean Geometry: the Maclane 83Theorem., and . AAECC, volume 948 of Lecture Notes in Computer Science, page 183-193. Springer, (1995)Yet Another Ideal Decomposition Algorithm., , and . AAECC, volume 1255 of Lecture Notes in Computer Science, page 39-54. Springer, (1997)Algebraic and Semialgebraic Proofs: Methods and Paradoxes., and . Automated Deduction in Geometry, volume 2061 of Lecture Notes in Computer Science, page 83-103. Springer, (2000)Buchberger Algorithm and Integer Programming., and . AAECC, volume 539 of Lecture Notes in Computer Science, page 130-139. Springer, (1991)Computing the conductor of an integral extension., and . Discret. Appl. Math., 33 (1-3): 61-72 (1991)A "Divide and Conquer" Algorithm for Hilbert-Poincaré Series, Multiplicity and Dimension of Monomial Ideals., , , and . AAECC, volume 673 of Lecture Notes in Computer Science, page 76-88. Springer, (1993)