Derive the differential equation of motion for the system shown in its equilibrium position. Neglect the mass of link AB and assume small oscillations. Use the values m₁ = 22 kg, m₂ = 31 kg, k = 800 N/m, c = 163 N-s/m, a = 340 mm, and b = 610 mm and calculate the damping factor 3. m2 m B

Elements Of Electromagnetics
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Derive the differential equation of motion for the system shown in its equilibrium position. Neglect the mass of link AB and assume small oscillations. Use the values m1​=22 kg, m2​=31 kg,k=800 N/m, c=163 N·s/m, a=340 mm, and b=610 mm and calculate the damping factor.

The answer is not 0.561 or 0.396

Derive the differential equation of motion for the system shown in its equilibrium position. Neglect the mass of link AB and assume
small oscillations. Use the values m₁ = 22 kg, m₂ = 31 kg, k = 800 N/m, c = 163 N-s/m, a = 340 mm, and b = 610 mm and calculate the
damping factor 3.
m2
m
B
Transcribed Image Text:Derive the differential equation of motion for the system shown in its equilibrium position. Neglect the mass of link AB and assume small oscillations. Use the values m₁ = 22 kg, m₂ = 31 kg, k = 800 N/m, c = 163 N-s/m, a = 340 mm, and b = 610 mm and calculate the damping factor 3. m2 m B
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