Symbolic computation is the science of computing with symbolic objects (terms, formulae, programs, algebraic objects, geometrical objects, etc). Powerful symbolic algorithms have been developed during the past decades and have played an influential role in theorem proving, automated reasoning, software verification, model checking, rewriting, formalisation of mathematics, network security, Groebner bases, characteristic sets, etc. The international Symposium on "Symbolic Computation in Software Science" is the fourth in the SCSS workshop series. SCSS 2008 and 2010 took place at the Research Institute for Symbolic Computation (RISC), Hagenberg, Austria, and, SCSS 2009 took place in Gammarth, Tunisia. These symposium grew out of internal workshops that bring together researchers from: a) SCORE (Symbolic Computation Research Group) at the University of Tsukuba, Japan, b) Theorema Group at the Research Institute for Symbolic Computation, Johannes Kepler University Linz, Austria, c) SSFG (Software Science Foundation Group) at Kyoto University, Japan, and d) Sup'Com (Higher School of Communication of Tunis) at the University of Carthage, Tunisia.
翻译:符号计算是用象征性物体(术语、公式、程序、代数物体、几何物体等)进行计算的科学。 在过去几十年中,开发了强有力的象征性算法,在理论验证、自动推理、软件核查、模型检查、重写、数学正规化、网络安全、格罗布纳基地、特征集等方面发挥了有影响力的作用。 “软件科学中的重叠计算”国际专题讨论会是SCSS系列讲习班中的第四个研讨会。2008年和2010年,SCSS在奥地利哈根贝格的符号计算研究所(RISC)和2009年SCSS在突尼斯甘玛特举行。这些专题讨论会是内部讲习班产生的,使研究人员聚集在一起,这些讲习班来自日本津巴大学SCORE(Symblic Compation研究小组),b)奥地利林茨约翰内斯·肯普勒大学(Johannes Kepler大学,奥地利)SSSFG(软软件科学基金会),设在日本京都大学、突尼斯大学SUp Kalge大学Sup 和突尼斯通信学院(突尼斯大学)SUppCom 。