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Assignment 1: MAT186H1 chegg Search re have a spring with a * | ( Chegg Search results for Suppos x | : Search Results |
Assignment 1: MAT186H1 chegg Search re have a spring with a * | ( Chegg Search results for Suppos x | : Search Results | Course Hero * | @ Suppose we have a spring with a * | My Dashboard Workstuff Socials UofT M Gmail @ YouTube ? Maps APS110 (MS) MAT186H1 (C1) MAT188 (LA) APS111 (ED) ChatGPT all| Your Courses | Grad.. MAT186 Assignment 1.pdf & Download i Info X Close Page 4+in(2)Assignment 1: MAT186H1 @ Chegg Search se we have a spring with * * | (@ Chegg Search results for You and * | 7 Course Hero Search Results | Course Hero | G Suppose we have a spring with a x | New Tab qutoronto.ca/co ent-1?module_item_id=4984107 My Dashboard Work stuff Socials UofT M Gmail @ YouTube ? Maps APS110 (MS) MAT186H1 (C1) MAT188 (LA) APS111 (ED) ChatGPT all Your Courses | Grad.. 3 Course Hero MAT186 Assignment 1.pdf & Download Info X Close Page 2 of 7 - ZOOM + 1. Suppose we have a spring with attached mass hanging from the ceiling. The vertical displacement of the mass from its equilibrium (where it sits while at rest) can be modeled by the equation y(t) = e-at (bcos(0t) + csin(et)). One can determine the coefficients o, b, c and 0, by solving a differential equation which incorporates the mass, spring stiffness, friction and so on, or, we can determine these coefficients by studying some data given by its motion. y(t) 1.6 0.5 -0.5 The black curve is y(t), the position of the spring with respect to its equilibrium position. (a) Using the data A = (0, 1), B = (3,0), C = (3, -75), D = (3,0) and E = (1, 4), find the corresponding equation for y (t )
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