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8. Use the Runge-Kutta method to solve the system with 1500kgm=, 52.510N/mk=, 33.510kg/sc=, subject to the initial conditions 00x= and 010mm/sv=. Compare your numerical result

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8. Use the Runge-Kutta method to solve the system with 1500kgm=, 52.510N/mk=, 33.510kg/sc=, subject to the initial conditions 00x= and 010mm/sv=. Compare your numerical result to the analytic solution by plotting both on the same graph. Try to use coarse time step so that you can notice significant difference between two results.

8. Use the Runge-Kutta method to solve the system with m-1500 kg, k-2.5x10 N/m, c-3.5x10* kg/s, subject to the initial conditions xand 10 mm/s. Compare your numerical result to the analytic solution by plotting both on the same graph. Try to use coarse time step so that you can notice significant difference between two results. 8. Use the Runge-Kutta method to solve the system with m-1500 kg, k-2.5x10 N/m, c-3.5x10* kg/s, subject to the initial conditions xand 10 mm/s. Compare your numerical result to the analytic solution by plotting both on the same graph. Try to use coarse time step so that you can notice significant difference between two results

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