The position vector of a particle moving in the xy plane | StudySoup

Textbook Solutions for Fundamentals of Physics

Chapter 4 Problem 114

Question

The position vector \(\vec{r}\) of a particle moving in the xy plane is \(\vec{r}=2 t \hat{i}+2 \sin [(\pi / 4 \mathrm{rad} / \mathrm{s}) t]\), with \(\vec{r}\) in meters and t in seconds.

(a) Calculate the x and y components of the particle’s position at t = 0, 1.0, 2.0, 3.0, and 4.0 s and sketch the particle’s path in the xy plane for the interval \(0 \leq t \leq 4.0 \mathrm{~s}\).

(b) Calculate the components of the particle’s velocity at t = 1.0, 2.0, and 3.0 s. Show that the velocity is tangent to the path of the particle and in the direction the particle is moving at each time by drawing the velocity vectors on the plot of the particle’s path in part (a).

(c) Calculate the components of the particle’s acceleration at t = 1.0, 2.0, and 3.0 s.

Solution

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The first step in solving 4 problem number 114 trying to solve the problem we have to refer to the textbook question: The position vector \(\vec{r}\) of a particle moving in the xy plane is \(\vec{r}=2 t \hat{i}+2 \sin [(\pi / 4 \mathrm{rad} / \mathrm{s}) t]\), with \(\vec{r}\) in meters and t in seconds.(a) Calculate the x and y components of the particle’s position at t = 0, 1.0, 2.0, 3.0, and 4.0 s and sketch the particle’s path in the xy plane for the interval \(0 \leq t \leq 4.0 \mathrm{~s}\).(b) Calculate the components of the particle’s velocity at t = 1.0, 2.0, and 3.0 s. Show that the velocity is tangent to the path of the particle and in the direction the particle is moving at each time by drawing the velocity vectors on the plot of the particle’s path in part (a).(c) Calculate the components of the particle’s acceleration at t = 1.0, 2.0, and 3.0 s.
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full solution

Title Fundamentals of Physics 10 
Author David Halliday; Robert Resnick; Jearl Walker
ISBN 9781118230725

The position vector of a particle moving in the xy plane

Chapter 4 textbook questions

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