2D Impulse with Calculus 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: F1(1) = F,et/T)î +F, sin(2nt/T) ĵ Where the parameters have the values: Fx = 13.8 N %3D Fy = 86.7 N T = 90 s and we will consider a time interval that begins and ends at: 4 = 0s 4 = 171.75 s Find the x component of the impulse from 2 on 1 between 4 and t. Solve symbolically first, then substitute in the parameters above to get a value for I,1,: 1pts

Physics for Scientists and Engineers with Modern Physics
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Author:Raymond A. Serway, John W. Jewett
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Chapter9: Linear Momentum And Collisions
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2D Impulse with Calculus
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:
F1(1) = F,et/T)î +F, sin(2nt/T) ĵ
Where the parameters have the values:
Fx = 13.8 N
%3D
Fy = 86.7 N
T = 90 s
and we will consider a time interval that begins and ends at:
4 = 0s
4 = 171.75 s
Find the x component of the impulse from 2 on 1 between 4 and t.
Solve symbolically first, then substitute in the parameters above to get a value for I1,:
1pts
Transcribed Image Text:2D Impulse with Calculus 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: F1(1) = F,et/T)î +F, sin(2nt/T) ĵ Where the parameters have the values: Fx = 13.8 N %3D Fy = 86.7 N T = 90 s and we will consider a time interval that begins and ends at: 4 = 0s 4 = 171.75 s Find the x component of the impulse from 2 on 1 between 4 and t. Solve symbolically first, then substitute in the parameters above to get a value for I1,: 1pts
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