(b) Calculate the relationship between accelerations of masses A and B. [2] (c) Calculate the relationship between tensi
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(b) Calculate the relationship between accelerations of masses A and B. [2] (c) Calculate the relationship between tensi
(b) Calculate the relationship between accelerations of masses A and B. [2] (c) Calculate the relationship between tension in the cable attached to mass A and the cable attached to mass B. [2] (d) If the coefficient of friction between the surfaces is u= 0.3, find the minimum angle at which A can still be lifted by B. How does this value of change if mass B is increased to 50 kg? [10] (e) If u and are fixed at 0.3 and 20°, respectively, find the maximum mass A that can be lifted by B (25 kg). [4] I (f) Using the data in part (e) and fixing the mass of A as 100 kg, find the acceleration of both A and B. [4] B e Figure Q2
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