Nature Mathematized

Nature Mathematized
Author: W. R. Shea
Publisher: Springer Science & Business Media
Total Pages: 346
Release: 1983
Genre: Gardening
ISBN: 9789027714022

These remarks preface two volumes consisting of the proceedings of the Third International Conference on the History and Philosophy of Science of the International Union of History and Philosophy of Science. The conference was held under the auspices of the Union, The Social Sciences and Humanities Research Council of Canada, and the Canadian Society for History and Philosophy of Science. The meetings took place in Montreal, Canada, 25--29 August 1980, with Concordia University as host institution. The program of the conference was arranged by a Joint Commission of the International Union of History and Philosophy of Science consisting of Robert E. Butts (Canada), John Murdoch (U. S. A. ), Vladimir Kirsanov (U. S. S. R. ), and Paul Weingartner (Austria). The Local Arrangements Committee consisted of Stanley G. French, Chair (Concordia), Michel Paradis, treasurer (McGill), Franyois Duchesneau (Universite de Montreal), Robert Nadeau (Universite du Quebec a Montreal), and William Shea (McGill University). Both committees are indebted to Dr. G. R. Paterson, then President of the Canadian Society for History and Philosophy of Science, who shared his expertise in many ways. Dr. French and his staff worked diligently and efficiently on behalf of all participants. The city of Montreal was, as always, the subtle mixture of extravagance, charm, warmth and excitement that retains her status as the jewel of Canadian cities. The funding of major international conferences is always a problem.

The Language of Nature

The Language of Nature
Author: Geoffrey Gorham
Publisher: U of Minnesota Press
Total Pages: 333
Release: 2016-06-15
Genre: Science
ISBN: 1452951853

Galileo’s dictum that the book of nature “is written in the language of mathematics” is emblematic of the accepted view that the scientific revolution hinged on the conceptual and methodological integration of mathematics and natural philosophy. Although the mathematization of nature is a distinctive and crucial feature of the emergence of modern science in the seventeenth century, this volume shows that it was a far more complex, contested, and context-dependent phenomenon than the received historiography has indicated, and that philosophical controversies about the implications of mathematization cannot be understood in isolation from broader social developments related to the status and practice of mathematics in various commercial, political, and academic institutions. Contributors: Roger Ariew, U of South Florida; Richard T. W. Arthur, McMaster U; Lesley B. Cormack, U of Alberta; Daniel Garber, Princeton U; Ursula Goldenbaum, Emory U; Dana Jalobeanu, U of Bucharest; Douglas Jesseph, U of South Florida; Carla Rita Palmerino, Radboud U, Nijmegen and Open U of the Netherlands; Eileen Reeves, Princeton U; Christopher Smeenk, Western U; Justin E. H. Smith, U of Paris 7; Kurt Smith, Bloomsburg U of Pennsylvania.

Descartes and the First Cartesians

Descartes and the First Cartesians
Author: Roger Ariew
Publisher:
Total Pages: 257
Release: 2014
Genre: History
ISBN: 0199563519

Descartes and the First Cartesians adopts the perspective that we should not approach Rene Descartes as a solitary thinker, but as a philosopher who constructs a dialogue with his contemporaries, so as to engage them and elements of his society into his philosophical enterprise. Roger Ariew argues that an important aspect of this engagement concerns the endeavor to establish Cartesian philosophy in the Schools, that is, to replace Aristotle as the authority there. Descartes wrote the Principles of Philosophy as something of a rival to Scholastic textbooks, initially conceiving the project as a comparison of his philosophy and that of the Scholastics. Still, what Descartes produced was inadequate for the task. The topics of Scholastic textbooks ranged more broadly than those of Descartes; they usually had quadripartite arrangements mirroring the structure of the collegiate curriculum, divided as they typically were into logic, ethics, physics, and metaphysics. But Descartes produced at best only what could be called a general metaphysics and a partial physics. These deficiencies in the Cartesian program and in its aspiration to replace Scholastic philosophy in the schools caused the Cartesians to rush in to fill the voids. The attempt to publish a Cartesian textbook that would mirror what was taught in the schools began in the 1650s with Jacques Du Roure and culminated in the 1690s with Pierre-Sylvain Regis and Antoine Le Grand. Ariew's original account thus considers the reception of Descartes' work, and establishes the significance of his philosophical enterprise in relation to the textbooks of the first Cartesians and in contrast with late Scholastic textbooks.

Mathematics And The Natural Sciences: The Physical Singularity Of Life

Mathematics And The Natural Sciences: The Physical Singularity Of Life
Author: Giuseppe Longo
Publisher: World Scientific
Total Pages: 337
Release: 2011-03-04
Genre: Science
ISBN: 1908977795

This book identifies the organizing concepts of physical and biological phenomena by an analysis of the foundations of mathematics and physics. Our aim is to propose a dialog between different conceptual universes and thus to provide a unification of phenomena. The role of “order” and symmetries in the foundations of mathematics is linked to the main invariants and principles, among them the geodesic principle (a consequence of symmetries), which govern and confer unity to various physical theories. Moreover, an attempt is made to understand causal structures, a central element of physical intelligibility, in terms of both symmetries and symmetry breakings. A distinction between the principles of (conceptual) construction and of proofs, both in physics and in mathematics, guides most of the work.The importance of mathematical tools is also highlighted to clarify differences in the models for physics and biology that are proposed by continuous and discrete mathematics, such as computational simulations.Since biology is particularly complex and not as well understood at a theoretical level, we propose a “unification by concepts” which in any case should precede mathematization. This constitutes an outline for unification also based on highlighting conceptual differences, complex points of passage and technical irreducibilities of one field to another. Indeed, we suppose here a very common monist point of view, namely the view that living objects are “big bags of molecules”. The main question though is to understand which “theory” can help better understand these bags of molecules. They are, indeed, rather “singular”, from the physical point of view. Technically, we express this singularity through the concept of “extended criticality”, which provides a logical extension of the critical transitions that are known in physics. The presentation is mostly kept at an informal and conceptual level./a

Mathematical Mindsets

Mathematical Mindsets
Author: Jo Boaler
Publisher: John Wiley & Sons
Total Pages: 320
Release: 2015-10-12
Genre: Education
ISBN: 1118415531

Banish math anxiety and give students of all ages a clear roadmap to success Mathematical Mindsets provides practical strategies and activities to help teachers and parents show all children, even those who are convinced that they are bad at math, that they can enjoy and succeed in math. Jo Boaler—Stanford researcher, professor of math education, and expert on math learning—has studied why students don't like math and often fail in math classes. She's followed thousands of students through middle and high schools to study how they learn and to find the most effective ways to unleash the math potential in all students. There is a clear gap between what research has shown to work in teaching math and what happens in schools and at home. This book bridges that gap by turning research findings into practical activities and advice. Boaler translates Carol Dweck's concept of 'mindset' into math teaching and parenting strategies, showing how students can go from self-doubt to strong self-confidence, which is so important to math learning. Boaler reveals the steps that must be taken by schools and parents to improve math education for all. Mathematical Mindsets: Explains how the brain processes mathematics learning Reveals how to turn mistakes and struggles into valuable learning experiences Provides examples of rich mathematical activities to replace rote learning Explains ways to give students a positive math mindset Gives examples of how assessment and grading policies need to change to support real understanding Scores of students hate and fear math, so they end up leaving school without an understanding of basic mathematical concepts. Their evasion and departure hinders math-related pathways and STEM career opportunities. Research has shown very clear methods to change this phenomena, but the information has been confined to research journals—until now. Mathematical Mindsets provides a proven, practical roadmap to mathematics success for any student at any age.

Maththatmatters 2

Maththatmatters 2
Author: David Stocker
Publisher:
Total Pages: 0
Release: 2017
Genre: Mathematics
ISBN: 9781771253123

In his follow-up to the groundbreaking Maththatmatters, David Stocker gives us Maththatmatters2 a collection of 50 brilliant lessons for grades 6-9 that link mathematics and social justice. For educators keen to provide rich learning opportunities and differentiated content that engages students with their lived realities, these lessons are sure to spark meaningful discussions...and action.

Mathematics in Nature

Mathematics in Nature
Author: John Adam
Publisher: Princeton University Press
Total Pages: 408
Release: 2011-10-02
Genre: Mathematics
ISBN: 1400841011

From rainbows, river meanders, and shadows to spider webs, honeycombs, and the markings on animal coats, the visible world is full of patterns that can be described mathematically. Examining such readily observable phenomena, this book introduces readers to the beauty of nature as revealed by mathematics and the beauty of mathematics as revealed in nature. Generously illustrated, written in an informal style, and replete with examples from everyday life, Mathematics in Nature is an excellent and undaunting introduction to the ideas and methods of mathematical modeling. It illustrates how mathematics can be used to formulate and solve puzzles observed in nature and to interpret the solutions. In the process, it teaches such topics as the art of estimation and the effects of scale, particularly what happens as things get bigger. Readers will develop an understanding of the symbiosis that exists between basic scientific principles and their mathematical expressions as well as a deeper appreciation for such natural phenomena as cloud formations, halos and glories, tree heights and leaf patterns, butterfly and moth wings, and even puddles and mud cracks. Developed out of a university course, this book makes an ideal supplemental text for courses in applied mathematics and mathematical modeling. It will also appeal to mathematics educators and enthusiasts at all levels, and is designed so that it can be dipped into at leisure.