A single degree damped vibrating system is formed of a block of mass m = 4 kg, a spring of K = 115 N/m and a damper of dampi constant C. The initial position of the block is at xo = 100 mm. The system was initially at rest. The figure below represents the variation of the displacement of the block with respect to time. Determine the response of at t = 2s for x1 = 80 mm. X1 t.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A single degree damped vibrating system is formed of a block of mass m = 4 kg, a spring of K = 115 N/m and a damper of damping
constant C.
The initial position of the block is at xo = 100 mm. The system was initially at rest. The figure below represents the variation of the
displacement of the block with respect to time.
Determine the response of at t = 2s for x1 = 80 mm.
X1
Transcribed Image Text:A single degree damped vibrating system is formed of a block of mass m = 4 kg, a spring of K = 115 N/m and a damper of damping constant C. The initial position of the block is at xo = 100 mm. The system was initially at rest. The figure below represents the variation of the displacement of the block with respect to time. Determine the response of at t = 2s for x1 = 80 mm. X1
Select one:
Ox(t) = -21.124 mm
O x(t) = 45.4319 mm
O x(t) = 47.0319 mm
Ox(t) = 45.8819 mm
Transcribed Image Text:Select one: Ox(t) = -21.124 mm O x(t) = 45.4319 mm O x(t) = 47.0319 mm Ox(t) = 45.8819 mm
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