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On the Number of Solutions of the Discretizable Molecular Distance Geometry Problem.

, , , , and . COCOA, volume 6831 of Lecture Notes in Computer Science, page 322-342. Springer, (2011)

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Preface: Special issue on distances in optimization and graphs dedicated to the memory of Michel Deza., and . Optim. Lett., 14 (2): 269-271 (2020)A Pseudo de Bruijn Graph Representation for Discretization Orders for Distance Geometry.. IWBBIO (1), volume 9043 of Lecture Notes in Computer Science, page 514-523. Springer, (2015)An Approach to Dynamical Distance Geometry., and . GSI, volume 10589 of Lecture Notes in Computer Science, page 821-829. Springer, (2017)Comparisons between an exact and a metaheuristic algorithm for the molecular distance geometry problem., , , and . GECCO, page 333-340. ACM, (2009)Computing artificial backbones of hydrogen atoms in order to discover protein backbones., , , and . IMCSIT, page 759-764. IEEE, (2009)An Analysis on the Degrees of Freedom of Binary Representations for Solutions to Discretizable Distance Geometry Problems.. WCO@FedCSIS, volume 986 of Studies in Computational Intelligence, page 251-255. Springer, (2020)Recent Developments in Data Mining and Agriculture., and . ICDM (Workshops), page 90-98. ibai Publishing, (2011)A Parallel BP Algorithm for the Discretizable Distance Geometry Problem., , , and . IPDPS Workshops, page 1762-1768. IEEE Computer Society, (2012)An Efficient Exhaustive Search for the Discretizable Distance Geometry Problem with Interval Data., and . FedCSIS, volume 18 of Annals of Computer Science and Information Systems, page 135-141. (2019)Influence of Pruning Devices on the Solution of Molecular Distance Geometry Problems., , , , , and . SEA, volume 6630 of Lecture Notes in Computer Science, page 206-217. Springer, (2011)