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Classical Mechanics
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Newton’s Equations in a Rotating Coordinate System
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Chapter 2
Free Fall on the Rotating Earth
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Chapter 3
Foucault’s Pendulum
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Chapter 4
Degrees of Freedom
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Chapter 5
Center of Gravity
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Chapter 6
Mechanical Fundamental Quantities of Systems of Mass Points
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Chapter 7
Vibrations of Coupled Mass Points
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Chapter 8
The Vibrating String
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Chapter 9
Fourier Series
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Chapter 10
The Vibrating Membrane
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Chapter 11
Rotation About a Fixed Axis
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Chapter 12
Rotation About a Point
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Chapter 13
Theory of the Top
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Chapter 14
Generalized Coordinates
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Chapter 15
D’Alembert Principle and Derivation of the Lagrange Equations
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Chapter 16
Lagrange Equation for Nonholonomic Constraints
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Chapter 17
Special Problems
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Chapter 18
Hamilton’s Equations
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Chapter 19
Canonical Transformations
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Chapter 20
Hamilton–Jacobi Theory
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Chapter 21
Extended Hamilton–Lagrange Formalism
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Chapter 22
Extended Hamilton–Jacobi Equation
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Chapter 23
Dynamical Systems
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Chapter 24
Stability of Time-Dependent Paths
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Chapter 25
Bifurcations
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Chapter 26
Lyapunov Exponents and Chaos
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Chapter 27
Systems with Chaotic Dynamics
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Chapter 28
Emergence of Occidental Physics in the Seventeenth Century
Overall attention for this book and its chapters
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About this Attention Score
In the top 25% of all research outputs scored by Altmetric
High Attention Score compared to outputs of the same age (89th percentile)
High Attention Score compared to outputs of the same age and source (90th percentile)
Mentioned by
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8
X users
syllabi
1
institution with syllabi
wikipedia
2
Wikipedia pages
Citations
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62
Dimensions
Readers on
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196
Mendeley
Book overview
1. Newton’s Equations in a Rotating Coordinate System
2. Free Fall on the Rotating Earth
3. Foucault’s Pendulum
4. Degrees of Freedom
5. Center of Gravity
6. Mechanical Fundamental Quantities of Systems of Mass Points
7. Vibrations of Coupled Mass Points
8. The Vibrating String
9. Fourier Series
10. The Vibrating Membrane
11. Rotation About a Fixed Axis
12. Rotation About a Point
13. Theory of the Top
14. Generalized Coordinates
15. D’Alembert Principle and Derivation of the Lagrange Equations
16. Lagrange Equation for Nonholonomic Constraints
17. Special Problems
18. Hamilton’s Equations
19. Canonical Transformations
20. Hamilton–Jacobi Theory
21. Extended Hamilton–Lagrange Formalism
22. Extended Hamilton–Jacobi Equation
23. Dynamical Systems
24. Stability of Time-Dependent Paths
25. Bifurcations
26. Lyapunov Exponents and Chaos
27. Systems with Chaotic Dynamics
28. Emergence of Occidental Physics in the Seventeenth Century
Summary
X
Syllabi
Wikipedia
Dimensions citations
This data is correct as of December 2015 - for more up to date information, please visit
https://opensyllabus.org/
So far, Altmetric has seen this research output assigned in
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syllabi from
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Syllabi count
Course subject areas covered
Unknown
2
Classics, Public Safety