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Pieterman-Bos, Annelies; van Mil, Marc H. W. – Science & Education, 2023
Biomedical data science education faces the challenge of preparing students for conducting rigorous research with increasingly complex and large datasets. At the same time, philosophers of science face the challenge of making their expertise accessible for scientists in such a way that it can improve everyday research practice. Here, we…
Descriptors: Philosophy, Science Education, Scientific Principles, Data Science
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Adúriz-Bravo, Agustín; Sans Pinillos, Alger – Science & Education, 2023
The central argument of this article is that abduction as a "mode of inference" is a key element in the nature of scientists' science and should consequently be introduced in school science. Abduction generally understood as generation and selection of hypotheses permits to articulate the classical scientific contexts of discovery and…
Descriptors: Logical Thinking, Science Instruction, Scientific Principles, Philosophy
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Pronskikh, Vitaly; Sorina, Galina V. – Science & Education, 2022
The history and philosophy of science (HPS) plays a special role in education. An elective HPS course on the philosophy of scientific experimentation for young scientists and graduate students of natural science is presented. The course bears a pragmatic character, and its main aims include the development of critical thinking (CT),…
Descriptors: History, Philosophy, Graduate Students, Critical Thinking
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Koster, Edwin; de Regt, Henk W. – Science & Education, 2020
While a conception of science as value free has been dominant since Max Weber defended it in the nineteenth century, recent years have witnessed an emerging consensus that science is not -- and cannot be -- completely free of values. Which values may legitimately influence science, and in which ways, is currently a topic of heated debate in…
Descriptors: Undergraduate Students, College Science, Science Education, Values
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Bunge, Mario – Science & Education, 2011
Pseudoscience is error, substantive or methodological, parading as science. Obvious examples are parapsychology, "intelligent design," and homeopathy. Psychoanalysis and pop evolutionary psychology are less obvious, yet no less flawed in both method and doctrine. The fact that science can be faked to the point of deceiving science lovers suggests…
Descriptors: Evolution, Psychiatry, Research Proposals, Evaluation Criteria
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de Berg, Kevin C. – Science & Education, 2011
This paper discusses the findings of a search for the intellectual tools used by Joseph Priestley (1733-1804) in his chemistry, education, and theology documents. Priestley's enquiring democratic view of knowledge was applicable in all three areas and constitutes a significant part of his lifework. Current epistemological issues in science…
Descriptors: Foreign Countries, Scientific Principles, Chemistry, Epistemology
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Rudge, David W.; Howe, Eric M. – Science & Education, 2009
Monk and Osborne ("Sci Educ" 81:405-424, 1997) provide a rigorous justification for why history and philosophy of science should be incorporated as an integral component of instruction and a model for how history of science should be used to promote learning of and about science. In the following essay we critique how history of science is used on…
Descriptors: Teaching Methods, Scientific Principles, Problem Solving, Scientists
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Gauld, Colin F. – Science & Education, 2005
Recent papers have drawn a contrast between habits of mind in science and religion and it has been argued that, because of the different nature of these habits of mind, science education and religious education are necessarily in conflict with each other. The present paper draws on research into habits of mind in science and their relationship…
Descriptors: Scientific Research, Religion, Decision Making, Sciences