Three packing crates of masses, M1 = 6 kg, M2 = 2 kg and M3 = 8 kg are connected by a light string of negligible mass that passes over the pulley as shown. Masses M1 and M3 lies on a 30o incline plane which slides down the plane. The coefficient of kinetic friction on the incline plane is 0.28. A. Draw a free body diagram of all the forces acting in the masses M1 and M2. [2 marks] B. Determine the tension in the string that connects M1 and M2.
A.
B. According to Newton's second law
"T_1-m_2g=m_2a"
"-T_1+T_2-\\mu m_1g\\cos30\u00b0+m_1g\\sin30\u00b0=m_1a"
"-T_2-\\mu m_3g\\cos30\u00b0+m_3g\\sin30\u00b0=m_3a" .
So, we have
"T_1-2g=2a"
"-T_1+T_2-0.28\\cdot 6\\cdot9.81\\cdot \\cos30\u00b0+6\\cdot9.81\\cdot\\sin30\u00b0=6a"
"-T_2-0.28\\cdot8\\cdot9.81\\cdot\\cos30\u00b0+8\\cdot 9.81\\cdot\\sin30\u00b0=8a"
Solving the system of equations we obtain that "T_1=21.588\\ (N)" . Answer
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