Algorithms and Linear Programming Relaxations for Scheduling Unrelated Parallel Machines.- The Hub Labeling Algorithm.- Design of Practical Succinct Data Structures for Large Data Collections.- Hub Label Compression.- Faster Customization of Road Networks.- Intriguingly Simple and Fast Transit Routing.- Transit Node Routing Reconsidered.- A New QEA Computing Near-Optimal Low-Discrepancy Colorings in the Hypergraph of Arithmetic Progressions.- Computational Aspects of Ordered Integer Partition with Upper Bounds.- Hypergraph Transversal Computation with Binary Decision Diagrams.- Efficient Counting of Maximal Independent Sets in Sparse Graphs.- An Edge Quadtree for External Memory.- Branchless Search Programs.- Lightweight Lempel-Ziv Parsing.- Space-Efficient, High-Performance Rank and Select Structures on Uncompressed Bit Sequences.- Think Locally, Act Globally: Highly Balanced Graph Partitioning.- Evaluation of ILP-Based Approaches for Partitioning into Colorful Components.- Finding Modules in Networks with Non-modular Regions.- Telling Stories Fast: Via Linear-Time Delay Pitch Enumeration.- Undercover Branching.- Quadratic Outer Approximation for Convex Integer Programming with Box Constraints.- Separable Non-convex Underestimators for Binary Quadratic Programming.- Hybrid SDP Bounding Procedure.- Computing Multimodal Journeys in Practice.- Efficient Computation of Jogging Routes.- Dominator Certification and Independent Spanning Trees: An Experimental Study.- Novel Techniques for Automorphism Group Computation.- Blinking Molecule Tracking.- The Quest for Optimal Solutions for the Art Gallery Problem: A Practical Iterative Algorithm.- An Improved Branching Algorithm for Two-Layer Planarization Parameterized by the Feedback Edge Set Number.- In-Out Separation and Column Generation Stabilization by Dual Price Smoothing.- Energy Minimization via a Primal-Dual Algorithm for a Convex Program.- Reoptimization in Branch-and-Bound Algorithms with an Application to Elevator Control.- Cluster-Based Heuristics for the Team Orienteering Problem with Time Windows.- Finding Robust Solutions for the Stochastic Job Shop Scheduling Problem by Including Simulation in Local Search.
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