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Introduction to the Model

Description and Assumptions

Excerpt
hiddentrue

System: One point particle. — Interactions: No acceleration (zero net force).

This model is applicable to a single point particle moving with constant velocity, which implies that it is subject to no net force (zero acceleration). Equivalently, the model applies to an object moving in one-dimension whose position versus time graph is linear. It is a subclass of the One-Dimensional Motion with Constant Acceleration model defined by the constraint a = 0.

Learning Objectives

Students will be assumed to understand this model who can:

S.I.M. Structure of the Model

Compatible Systems

A single point particle (or a system treated as a point particle with position specified by the center of mass).

Relevant Interactions

In order for the velocity to be constant, the system must be subject to no net force.

Law of Change

Mathematical Representation
Latex
\begin{large}\[x(t) =  x_{i} + v (t - t_{i})\]\end{large}
Diagrammatic Representations

Click here for a Mathematica Player application illustrating these representations.

Click here to download the (free) Mathematica Player from Wolfram Research

Relevant Examples

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idone
Examples Involving Purely One-Dimensional Motion
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idone
falsetruetrueAND50constant_velocity,1d_motion,example_problem
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idcatch
Examples Involving Determining when Two Objects Meet
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idcatch
falsetruetrueAND50constant_velocity,example_problem,catch-up
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idproj
Examples Involving Projectile Motion
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idproj
falsetruetrueAND50projectile_motion,example_problem
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idall
All Examples Using This Model
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idall
falsetruetrueAND501d_motion,constant_velocity,example_problem falsetruetrueAND50projectile_motion,example_problem
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