13. Two masses, m₁ 1.65 kg and m₂ = 3.30 kg, attached by a massless rod parallel to the inclined plane on which they both slide, travel along the plane. The angle of incline is 30°. The coefficient of kinetic friction between m, and the incline is u, = 0.226; that between m, and the incline is u₂ = 0.113. Compute the tension in the rod and the common acceleration of the two masses. (T= 1.06 N, a = 3.62 m/s²) mi m2 =

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13. Two masses, m₁
1.65 kg and m₂ = 3.30 kg, attached by a massless
rod parallel to the inclined plane on which they both slide, travel
along the plane. The angle of incline is 30°. The coefficient of
kinetic friction between m, and the incline is u₁ = 0.226; that
between m, and the incline is u₂ = 0.113. Compute the tension in the
rod and the common acceleration of the two masses. (T= 1.06 N, a
= 3.62 m/s²)
=
m1
m2
=
8
Transcribed Image Text:13. Two masses, m₁ 1.65 kg and m₂ = 3.30 kg, attached by a massless rod parallel to the inclined plane on which they both slide, travel along the plane. The angle of incline is 30°. The coefficient of kinetic friction between m, and the incline is u₁ = 0.226; that between m, and the incline is u₂ = 0.113. Compute the tension in the rod and the common acceleration of the two masses. (T= 1.06 N, a = 3.62 m/s²) = m1 m2 = 8
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