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  1. Dynamics of Reason.Michael Friedman - 2001 - Philosophy and Phenomenological Research 68 (3):702-712.
    This book introduces a new approach to the issue of radical scientific revolutions, or "paradigm-shifts," given prominence in the work of Thomas Kuhn. The book articulates a dynamical and historicized version of the conception of scientific a priori principles first developed by the philosopher Immanuel Kant. This approach defends the Enlightenment ideal of scientific objectivity and universality while simultaneously doing justice to the revolutionary changes within the sciences that have since undermined Kant's original defense of this ideal. Through a modified (...)
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  • Ernst Cassirer and Thomas Kuhn: The neo-Kantian tradition in history and philosophy of science.Michael Friedman - 2008 - Philosophical Forum 39 (2):239-252.
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  • Kant, Kuhn, and the rationality of science.Michael Friedman - 2002 - Philosophy of Science 69 (2):171-90.
    This paper considers the evolution of the problem of scientific rationality from Kant through Carnap to Kuhn. I argue for a relativized and historicized version of the original Kantian conception of scientific a priori principles and examine the way in which these principles change and develop across revolutionary paradigm shifts. The distinctively philosophical enterprise of reflecting upon and contextualizing such principles is then seen to play a key role in making possible rational intersubjective communication between otherwise incommensurable paradigms.
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  • Ernst Cassirer and contemporary philosophy of science.Michael Friedman - 2005 - Angelaki 10 (1):119 – 128.
    (2005). Ernst Cassirer and Contemporary Philosophy of Science. Angelaki: Vol. 10, continental philosophy and the sciences the german traditionissue editor: damian veal, pp. 119-128.
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  • Geometry as a Branch of Physics: Background and Context for Einstein's 'Geometry and Experience.'.Michael Friedman - 2002 - In David B. Malament (ed.), Reading Natural Philosophy: Essays in the History and Philosophy of Science and Mathematics. Open Court. pp. 193--229.
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