7 found
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  1.  8
    Procedure for assessing the quality of explanations in failure analysis.Kristian Gonzalez Barman - 2022 - Artificial Intelligence for Engineering Design, Analysis and Manufacturing 36.
    This paper outlines a procedure for assessing the quality of failure explanations in engineering failure analysis. The procedure structures the information contained in explanations such that it enables to find weak points, to compare competing explanations, and to provide redesign recommendations. These features make the procedure a good asset for critical reflection on some areas of the engineering practice of failure analysis and redesign. The procedure structures relevant information contained in an explanation by means of structural equations so as to (...)
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  2.  23
    IBE in engineering science - the case of malfunction explanation.Kristian González Barman & Dingmar van Eck - 2021 - European Journal for Philosophy of Science 11 (1):1-19.
    In this paper we investigate how inference to the best explanation (IBE) works in engineering science, focussing on the context of malfunction explanation. While IBE has gotten a lot of attention in the philosophy of science literature, few, if any, philosophical work has focussed on IBE in engineering science practice. We first show that IBE in engineering science has a similar structure as IBE in other scientific domains in the sense that in both settings IBE hinges on the weighing of (...)
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  3.  13
    Distinctively generic explanations of physical facts.Erik Weber, Kristian González Barman & Thijs De Coninck - 2024 - Synthese 203 (4):1-30.
    We argue that two well-known examples (strawberry distribution and Konigsberg bridges) generally considered genuine cases of distinctively _mathematical_ explanation can also be understood as cases of distinctively _generic_ explanation. The latter answer resemblance questions (e.g., why did neither person A nor B manage to cross all bridges) by appealing to ‘generic task laws’ instead of mathematical necessity (as is done in distinctively mathematical explanations). We submit that distinctively generic explanations derive their explanatory force from their role in ontological unification. Additionally, (...)
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  4.  12
    Exploring the epistemic and ontic conceptions of Models and Idealizations in Science.Kristian Gonzalez Barman - 2023 - Zagadnienia Filozoficzne W Nauce 74:295-301.
    Book review: Alejandro Cassini & Juan Redmond (eds.), _Models and Idealizations in Science: Artifactual and Fictional Approaches_, Springer Iternational Publishing, Cham 2021, pp.xv+270.
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  5.  10
    Towards a Benchmark for Scientific Understanding in Humans and Machines.Kristian Gonzalez Barman, Sascha Caron, Tom Claassen & Henk de Regt - 2024 - Minds and Machines 34 (1):1-16.
    Scientific understanding is a fundamental goal of science. However, there is currently no good way to measure the scientific understanding of agents, whether these be humans or Artificial Intelligence systems. Without a clear benchmark, it is challenging to evaluate and compare different levels of scientific understanding. In this paper, we propose a framework to create a benchmark for scientific understanding, utilizing tools from philosophy of science. We adopt a behavioral conception of understanding, according to which genuine understanding should be recognized (...)
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  6.  22
    Fictional mechanism explanations: clarifying explanatory holes in engineering science.Kristian González Barman - 2022 - European Journal for Philosophy of Science 12 (2):1-19.
    This paper discusses a class of mechanistic explanations employed in engineering science where the activities and organization of nonstandard entities are cited as core factors responsible for failures. Given the use of mechanistic language by engineers and the manifestly mechanistic structure of these explanations, I consider several interpretations of these explanations within the new mechanical framework. I argue that these interpretations fail to solve several philosophical problems and propose an account of fictional mechanism explanations instead. According to this account, fictional (...)
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  7.  26
    Quantum mechanical atom models, legitimate explanations and mechanisms.Erik Weber, Merel Lefevere & Kristian Gonzalez Barman - 2021 - Foundations of Chemistry 23 (3):407-429.
    The periodic table is one of the best-known systems of classification in science. Because of the information it contains, it raises explanation-seeking questions. Quantum mechanical models of the behaviour of electrons may be seen as providing explanations in response to these questions. In this paper we first address the question ‘Do quantum mechanical models of atoms provide legitimate explanations?’ Because our answer is positive, our next question is ‘Are the explanations provided by quantum mechanical models of atoms mechanistic explanations?’. This (...)
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