mass system is shown in the following figure. Use m = 8 kg and k = 115 N/m. Equilibrium position m y nine the static deflection 854 . Insert your answer in meters correct up to at least a third decimal place. aine the systome neried Incert vour ancwer in saeo nds correct uın to at leact third decimal place

Advanced Engineering Mathematics
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Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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A spring-mass system is shown in the following figure. Use m = 8 kg and k = 115 N/m.
Equilibrium
position
т
y
a)
Determine the static deflection 8t . Insert your answer in meters correct up to at least a third decimal place.
b)
Determine the system period t. Insert your answer in seconds correct up to at least a third decimal place.
c)
Determine the maximum velocity vmax which result if the cylinder is displaced 165 mm downward from its equilibrium
position and released from rest. Insert your answer in m/s correct up to at least a third decimal place.
Transcribed Image Text:A spring-mass system is shown in the following figure. Use m = 8 kg and k = 115 N/m. Equilibrium position т y a) Determine the static deflection 8t . Insert your answer in meters correct up to at least a third decimal place. b) Determine the system period t. Insert your answer in seconds correct up to at least a third decimal place. c) Determine the maximum velocity vmax which result if the cylinder is displaced 165 mm downward from its equilibrium position and released from rest. Insert your answer in m/s correct up to at least a third decimal place.
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