Q.3) (6 Marks) For the damped system shown in the following figure, the object has a...
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Q.3) (6 Marks) For the damped system shown in the following figure, the object has a mass of kg and the spring constant is. The damping force is given by c(dx/dt), where The .block is pulled down and released (a) Show that the this system is an uderdamped oscillator. (b) Calculate the time required for the amplitude of the resulting oscillations to fall to one-third of its initial value. c) Evaluate the damped frequesncy and the damped) period of this system hs pada pa v hama ataA va ted s igle empg fe he he hik olie pethe d) How many oscillations are made) ?by the object in this time Answer to Question 3[Insert solution image after this line]: Riginl suppnt Sprinpeess, Mae Vane tanping.e Figan harmonic oncillatar.A vane unetsed in a liquid exerts a damping force on the bock us the hlack oseillates parallel ts the r ais An idcalired damped simple Q.3) (6 Marks) For the damped system shown in the following figure, the object has a mass of kg and the spring constant is. The damping force is given by c(dx/dt), where The .block is pulled down and released (a) Show that the this system is an uderdamped oscillator. (b) Calculate the time required for the amplitude of the resulting oscillations to fall to one-third of its initial value. c) Evaluate the damped frequesncy and the damped) period of this system hs pada pa v hama ataA va ted s igle empg fe he he hik olie pethe d) How many oscillations are made) ?by the object in this time Answer to Question 3[Insert solution image after this line]: Riginl suppnt Sprinpeess, Mae Vane tanping.e Figan harmonic oncillatar.A vane unetsed in a liquid exerts a damping force on the bock us the hlack oseillates parallel ts the r ais An idcalired damped simple
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