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Exploring the Limits of Preclassical Mechanics: A Study of Conceptual Development in Early Modern Science: Free Fall and Compounded Motion in the Work

Exploring the Limits of Preclassical Mechanics

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"Exploring the Limits of Preclassical Mechanics" by Peter Damerow, Gideon Freudenthal, Peter McLaughlin, Jürgen Renn is a mathematics book and learning resource focused on Dynamics. Best for teachers, students, and readers looking for stronger mathematical understanding.

The question of when and how the basic concepts that characterize modern science arose in Western Europe has long been central to the history of science. This book examines the transition from Renaissance engineering and philosophy of nature to classical mechanics oriented on the central concept of velocity. For this new edition, the authors include a new discussion of the doctrine of proportions, an analysis of the role of traditional statics in the construction of Descartes' impact rules, and go deeper into the debate between Descartes and Hobbes on the explanation of refraction. They also provide significant new material on the early development of Galileo's work on mechanics and the law of fall.

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Best For: Students and scholars interested in the history and philosophy of science, particularly the development of classical mechanics concepts.
Focus: The conceptual development of early modern science focusing on free fall and compounded motion in the works of Descartes, Galileo, and Beeckman.
Covers: The transition from Renaissance engineering and philosophy of nature to classical mechanics centered on velocity, including discussions on the doctrine of proportions and traditional statics.
Why It Matters: It provides insight into how foundational concepts of modern science emerged and evolved during a critical period in Western scientific history.

"Exploring the Limits of Preclassical Mechanics" by Peter Damerow, Gideon Freudenthal, Peter McLaughlin, Jürgen Renn is a mathematics book and learning resource focused on Dynamics. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Dynamics

Author: Peter Damerow, Gideon Freudenthal, Peter McLaughlin, Jürgen Renn

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

The question of when and how the basic concepts that characterize modern science arose in Western Europe has long been central to the history of science. This book examines the transition from Renaissance engineering and philosophy of nature to classical mechanics oriented on the central concept of velocity. For this new edition, the authors include a new discussion of the doctrine of proportions, an analysis of the role of traditional statics in the construction of Descartes' impact rules, and go deeper into the debate between Descartes and Hobbes on the explanation of refraction. They also provide significant new material on the early development of Galileo's work on mechanics and the law of fall.

AuthorPeter Damerow, Gideon Freudenthal, Peter McLaughlin, Jürgen Renn
PublisherSpringer
Published2011-10-09
ISBN-139781441919175
BindingPaperback
LanguageEnglish
SubjectsMathematics
TopicDynamics
SeriesSources and Studies in the History of Mathematics and Physic

Format: Paperback

Language: English

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