小费 发表于 2025-3-21 17:40:30
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Conference proceedings 2017s, namly: algorithmics for biology; combinatorics and algorithmics on words; computability in analysis, algebra, and geometry; cryptography and information theory; formal languages and automata theory; and history and philosophy of computing..敌意 发表于 2025-3-22 01:53:42
Character-Based Phylogeny Construction and Its Application to Tumor Evolutionatible with the actual species encoded by ...In this paper we survey some of the known formulations and algorithms for some variants of this problem. Finally, we present the connections between these problems and tumor evolution, and we discuss some of the most important open problems.infantile 发表于 2025-3-22 04:52:27
Is there any Real Substance to the Claims for a ‘New Computationalism’?the human mind, in physics, mathematics, etc. Early versions of computationalism faced strong objections from many (and varied) quarters, from philosophers to practitioners of the aforementioned disciplines. Here we will not address the fundamental question of whether computational models are appropSLAG 发表于 2025-3-22 10:58:29
Turing’s 1949 Paper in Contextt ideas for reasoning about software — one would say today ‘techniques for proving that a program satisfies its specification’. Alan Turing presented a paper entitled . that laid out a workable method for reasoning about programs. Sadly his paper had little impact. Understanding the problem faced, Tingrate 发表于 2025-3-22 15:57:36
A Guided Tour to Computational Haplotypingomosome exists in two similar yet distinct “copies”, called haplotypes. The problem of determining the full sequences of both haplotypes is known as . or .. In this paper, we review different approaches for haplotyping and point out how they are formalized as optimization problems. We survey differetic-douloureux 发表于 2025-3-22 18:54:03
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A Deterministic Algorithm for Testing the Equivalence of Read-Once Branching Programs with Small Dise in deterministic polynomial time. The standard probabilistic algorithm to solve the problem reduces it to an instance of Polynomial Identity Testing and then applies the Schwartz-Zippel Lemma to test the equivalence. This method needs . random bits, where . is the number of variables in the branch