The mass of particle 1 is 12.9kg, and its initial velocity is v_1i = (27m/s)i + (3m/s)j. Questions: 1. What is the x displacement for particle 1? 2. What is the y displacement for particle 1?
The mass of particle 1 is 12.9kg, and its initial velocity is v_1i = (27m/s)i + (3m/s)j. Questions: 1. What is the x displacement for particle 1? 2. What is the y displacement for particle 1?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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The mass of particle 1 is 12.9kg, and its initial velocity is v_1i = (27m/s)i + (3m/s)j.
Questions:
1. What is the x displacement for particle 1?
2. What is the y displacement for particle 1?
![**Note:** Make sure your calculator is in radian mode for this problem, and that you switch it back after this problem. There are two particles (1 and 2) that are moving around in space. The force that particle 2 exerts on 1 is given by:
\[
\vec{F}_{21}(t) = F_x e^{-(t/T)} \hat{i} + F_y \sin(2\pi t/T) \hat{j}
\]
Where the parameters have the values: \( F_x = -17.7 \, \text{N}, \, F_y = -111 \, \text{N}, \, T = 28 \, \text{s} \). We will consider a time interval that begins at \( t_i = 0 \, \text{s} \) and ends at \( t_f = 110 \, \text{s} \).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff237bbf8-6485-48b1-b1a9-4cbf0285c93d%2F9b51ddfb-9a9f-46d5-9373-b72504e09c9c%2Fo7j0fo2_processed.png&w=3840&q=75)
Transcribed Image Text:**Note:** Make sure your calculator is in radian mode for this problem, and that you switch it back after this problem. There are two particles (1 and 2) that are moving around in space. The force that particle 2 exerts on 1 is given by:
\[
\vec{F}_{21}(t) = F_x e^{-(t/T)} \hat{i} + F_y \sin(2\pi t/T) \hat{j}
\]
Where the parameters have the values: \( F_x = -17.7 \, \text{N}, \, F_y = -111 \, \text{N}, \, T = 28 \, \text{s} \). We will consider a time interval that begins at \( t_i = 0 \, \text{s} \) and ends at \( t_f = 110 \, \text{s} \).
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