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Equation or Algorithm: Differences and Choosing Between Them

机译:方程或算法:它们之间的差异和选择

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The issue of whether formal reasoning or a computing-intensive approach is the most efficient manner to address scientific questions is the subject of some considerable debate and pertains not only to the nature of the phenomena and processes investigated by scientists, but also the nature of the equation and algorithm objects they use. Although algorithms and equations both rely on a common background of mathematical language and logic, they nevertheless possess some critical differences. They do not refer to the same level of symbolization, as equations are based on integrated concepts in a denotational manner, while algorithms specifically break down a complex problem into more elementary operations, in an operational manner. They may therefore be considered as suited to the representation of different phenomena. Specifically, algorithms are by nature sufficient to represent weak emergent phenomena, but not strong emergent patterns, while equations can do both. Finally, the choice between equations and algorithms are by nature sufficient to represent weak emergent phenomena, but not strong emergent patterns, while equations behave conversely. We propose a simplified classification of scientific issues for which both equation- and/or algorithm-based approaches can be envisaged, and discuss their respective pros and cons. We further discuss the complementary and sometimes conflicting uses of equations and algorithms in a context of ecological theory of metapopulation dynamics. We finally propose both conceptual and practical guidelines for choosing between the alternative approaches.
机译:形式推理还是计算密集型方法是解决科学问题的最有效方式是一个颇有争议的话题,不仅与科学家研究的现象和过程的性质有关,而且与科学家研究的现象和性质有关。他们使用的等式和算法对象。尽管算法和方程式都依赖于数学语言和逻辑的共同背景,但是它们仍具有一些关键的差异。它们没有指代相同级别的符号化,因为等式以一种指称的方式基于集成概念,而算法则以一种可操作的方式专门将一个复杂的问题分解为更基本的操作。因此,它们可以被认为适合于不同现象的表示。具体而言,算法本质上足以表示弱的紧急现象,但不能表示强的紧急模式,而方程式可以同时实现这两种情况。最后,从本质上讲,方程和算法之间的选择足以代表弱的紧急现象,但不能表示强的紧急模式,而方程的行为则相反。我们建议对科学问题进行简化分类,针对其可以考虑基于方程式和/或基于算法的方法,并讨论其各自的优缺点。我们将进一步讨论在种群动态生态学理论的背景下,方程和算法的互补和有时冲突的使用。我们最终提出了在替代方法之间进行选择的概念和实践准则。

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