USE SIMULINK / MATLAB Ill DisLike if you copy/past answers answer!

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answerhappygod
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USE SIMULINK / MATLAB Ill DisLike if you copy/past answers answer!

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USE SIMULINK / MATLAB
Ill DisLike if you copy/past answers answer!
Use Simulink Matlab Ill Dislike If You Copy Past Chegg Answer 1
Use Simulink Matlab Ill Dislike If You Copy Past Chegg Answer 1 (48.9 KiB) Viewed 55 times
Use Simulink Matlab Ill Dislike If You Copy Past Chegg Answer 2
Use Simulink Matlab Ill Dislike If You Copy Past Chegg Answer 2 (107.64 KiB) Viewed 55 times
- Two Mass System Consider the following two mass-spring-damper system: m₂ www m₁ C₂ C₁ X₁, X₁ Figure 1 - System for Simulink Problem
The equations of motion for the system shown in Figure 1 are: m₁x₁ +c₁x₁ +k₁x₁ − C₁x₂ − k₁x₂ = ƒ - f m₂x₂ + (c₁ + c₂ )x₂ + (k₁ + k₂ )x₂ − c₁x₁ − k₁x₁ · = a) Implement the system of equations above in Simulink using the following parameters: ml = 10; m2 = 100; c1 = 100; c2 = 1000; kl = 1e4; k2 = 1e5; % Mass 1 [kg] % Mass 2 [kg] Tend = 10; 0 % Damping Coefficient 1 [Ns/m] % Damping Coefficient 2 [Ns/m] % Spring Coefficient 1 [N/m] % Spring Coefficient 2 [N/m] % Simulation Stop Time [s] You can assume that the initial conditions are all zero. Define the model parameters in a separate .m file and use the ode45 Solver inside of Simulink. This does not mean use ode45.m. Make sure to decrease the maximum step size if the plots are not smooth.
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