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- Correspondances de mots clés:
- Créateur:
- La description:
Readers are introduced to the structure of the book, including a discussion of the topics in each chapter, as well as how the book may be integrated in an introductory physics course.
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Correspondances de mots clés:
- Créateur:
- La description:
Chapter 2 serves as an introduction to the GlowScript VPython environment. The student is shown how to enter GlowScript via a browser. The student is asked to create simple programs, including ones that print, make shapes, and...
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Créateur:
- La description:
In chapter 3, the student is asked to program the motion of a ball with constant velocity, to plot the position with respect to time of the ball moving with constant velocity, and to simulate the motion of a ball undergoing a...
- Type:
- Type de ressource d'apprentissage:
Activity/lab and Textbook
- iveau d'éducation:
College / Upper division
- Public:
Instructor
- La discipline:
Natural Sciences - Physics
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- Correspondances de mots clés:
- Créateur:
- La description:
In chapter 4, students are introduced to the mathematics behind the Euler method, as well as the coding involved. Students are given code and then asked to modify it.
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Correspondances de mots clés:
- Créateur:
- La description:
In chapter 4, students are introduced to the mathematics behind the Euler method, as well as the coding involved. Students are given code and then asked to modify it.
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
-
- Correspondances de mots clés:
- Créateur:
- La description:
In chapter 4, students are introduced to the mathematics behind the Euler method, as well as the coding involved. Students are given code and then asked to modify it.
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Correspondances de mots clés:
- Créateur:
- La description:
In chapter 5, students are introduced to the kinematic equations describing an object undergoing a constant acceleration. Students are asked to write code simulating the flight of a projectile over level ground and sloping...
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Créateur:
- La description:
In chapter 6, students are introduced to the idea of a central force, the idea of a instantaneous acceleration (as opposed to average acceleration) and using the Euler method to determine the position and velocity of the...
- Type:
- Type de ressource d'apprentissage:
Activity/lab and Textbook
- iveau d'éducation:
College / Upper division
- Public:
Instructor and Student
- La discipline:
Natural Sciences - Physics
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- Correspondances de mots clés:
- Créateur:
- La description:
In chapter 7, students are introduced to the concepts of center of mass, the impulse-momentum theorem, and conservation of energy. This is done by considering a binary star system, mass-spring system, and scattering in the...
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Créateur:
- La description:
In chapter 8, students consider again the motion of a comet around the Sun, but now consider torque and angular momentum. Newton’s Law of Universal Gravitation is introduced, as well as the cross product and how to code it in...
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics
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- Créateur:
- La description:
In chapter 9, students are introduced to the concept of Gravitational Assist, which is used to send probes to the outer planets and out of the solar system. Frames of reference are considered, as well as the energy of the probe...
- Type:
- Type de ressource d'apprentissage:
Activity/lab and Textbook
- iveau d'éducation:
College / Upper division
- Public:
Instructor and Student
- La discipline:
Natural Sciences - Physics
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- Correspondances de mots clés:
- Créateur:
- La description:
This document provides a conclusion to VPython for Introductory Mechanics by Windsor A. Morgan and Lars Q. English. It includes the book’s bibliography as well as information about the authors.
- Type:
- Type de ressource d'apprentissage:
Textbook and Activity/lab
- iveau d'éducation:
College / Upper division
- Public:
Student and Instructor
- La discipline:
Natural Sciences - Physics