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  1. Experimentation in cosmology: Intervening on the whole universe.Gauvain Leconte-Chevillard - 2024 - Studies in History and Philosophy of Science Part A 106 (C):136-145.
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  • Dark Matter Realism.Niels C. M. Martens - 2021 - Foundations of Physics 52 (1):1-19.
    According to the standard model of cosmology, Λ\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\Lambda $$\end{document}CDM, the mass-energy budget of the current stage of the universe is not dominated by the luminous matter that we are familiar with, but instead by some form of dark matter (and dark energy). It is thus tempting to adopt scientific realism about dark matter. However, there are barely any constraints on the myriad of possible properties of this entity—it is not even certain (...)
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  • Epistemic Cultures in Conflict: The Case of Astronomy and High Energy Physics.Richard Heidler - 2017 - Minerva 55 (3):249-277.
    The article presents an in-depth analysis of epistemic cultures in conflict by exemplifying the epistemic conflict between high energy physics and astronomy which emerged after the discovery of “dark energy” and the accelerating expansion of the universe. It suggests a theoretical framework combining Knorr-Cetina’s concept of epistemic cultures with Whitley’s theory of dependencies in the sciences system, which explains that epistemic conflicts occur, if the strategic and functional dependency of two incommensurable epistemic cultures is suddenly growing. The pre-history of the (...)
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  • The Milky Way’s Supermassive Black Hole: How Good a Case Is It?: A Challenge for Astrophysics & Philosophy of Science.Andreas Eckart, Andreas Hüttemann, Claus Kiefer, Silke Britzen, Michal Zajaček, Claus Lämmerzahl, Manfred Stöckler, Monica Valencia-S., Vladimir Karas & Macarena García-Marín - 2017 - Foundations of Physics 47 (5):553-624.
    The compact and, with \ M\, very massive object located at the center of the Milky Way is currently the very best candidate for a supermassive black hole in our immediate vicinity. The strongest evidence for this is provided by measurements of stellar orbits, variable X-ray emission, and strongly variable polarized near-infrared emission from the location of the radio source Sagittarius A* in the middle of the central stellar cluster. Simultaneous near-infrared and X-ray observations of SgrA* have revealed insights into (...)
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