An Aristotelian Realist Philosophy of Mathematics : Mathematics as the Science of Quantity and Structure - James Franklin

An Aristotelian Realist Philosophy of Mathematics

Mathematics as the Science of Quantity and Structure

By: James Franklin

Hardcover | 8 April 2014 | Edition Number 1

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An Aristotelian Philosophy of Mathematics breaks the impasse between Platonist and nominalist views of mathematics. Neither a study of abstract objects nor a mere language or logic, mathematics is a science of real aspects of the world as much as biology is. For the first time, a philosophy of mathematics puts applied mathematics at the centre. Quantitative aspects of the world such as ratios of heights, and structural ones such as symmetry and continuity, are parts of the physical world and are objects of mathematics. Though some mathematical structures such as infinities may be too big to be realized in fact, all of them are capable of being realized. Informed by the author's background in both philosophy and mathematics, but keeping to simple examples, the book shows how infant perception of patterns is extended by visualization and proof to the vast edifice of modern pure and applied mathematical knowledge.
Industry Reviews

"An Aristotelian Realist Philosophy of Mathematics is an interesting and challenging book. ... Franklin goes through a wealth of material in philosophy, mathematics, and science to motivate and justify his position. ... there will still be something for all readers to enjoy due to its large scope and variety of interesting and detailed examples." (Alex Koo, The Mathematical Intelligencer, Vol. 38, September, 2016)

"The book is comprised of fifteen chapters plus a brief epilogue. ... An Aristotelian Realist Philosophy of Mathematics contains many interesting and important discussions, in particular, the discussion of the use of inductive reasoning in mathematics ... . This book is provocative and interesting reading for anyone interested in how mathematical entities are related to the physical world and how we gain knowledge of such entities." (James Davies, Metascience, Vol. 24, 2015)

"A short review cannot do justice to the variety of problems considered and the interesting angles of attack offered by [Franklin's] realist point of view."

-David Guaspari, The New Criterion

"Most of the traditional problems in the philosophy of mathematics arise, in James Franklin's words, out of the 'oscillation between Platonism and nominalism, as if those were the only alternatives' (p. 11). In An Aristotelian Realist Philosophy of Mathematics Franklin develops a tantalizing alternative to these approaches by arguing that at least some mathematical universals exist in the physical realm and are knowable through ordinary methods of access to physical reality. By offering a third option that lies between these extreme all-or-nothing approaches and by rejecting the 'dichotomy of objects into abstract and concrete', Franklin provides potential solutions to many of these traditional problems and opens up a whole new terrain for debate in the philosophy of mathematics (p. 15). The acknowledgement of this by no means new but oft neglected Aristotelian position sheds refreshing new light on debates that have become somewhat stagnant in recent times. Furthermore, by drawing attention to the possibility of an Aristotelian alternative, Franklin opens the way for a whole host of new debates to emerge regarding the correct Aristotelian approach. The scope of the book is ambitious and the overall position defended is controversial in a number of ways. As such, it gives rise to as many new questions as it provides answers. However, this should be seen as a positive, since the many questions that arise are deeply significant and have been neglected by philosophers of mathematics for far too long."

-Max Jones, Philosophica Mathematica

"This book should be part of the personal library of any university-level student of philosophy."

-Jude P. Dougherty, Review of Metaphysics

Other Editions and Formats

Paperback

Published: 1st January 2014

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