1) We attach the mass m, to a larger mass m; (m, > m) by a rope that passes through a pulley of negligible mass so that the system forms an Atwood Machine on the same inclined plane, as shown in Figure 1. The law of motion of m2 is y = 0.05t? (m/s). What is the common acceleration az of m, and m2? 2) We add a mass m = 1 kg to the body of mass m; and the law of motion of m2 + m becomes y = 0.2t? (m/s). What is the common acceleration az of m, and m2 + m?
1) We attach the mass m, to a larger mass m; (m, > m) by a rope that passes through a pulley of negligible mass so that the system forms an Atwood Machine on the same inclined plane, as shown in Figure 1. The law of motion of m2 is y = 0.05t? (m/s). What is the common acceleration az of m, and m2? 2) We add a mass m = 1 kg to the body of mass m; and the law of motion of m2 + m becomes y = 0.2t? (m/s). What is the common acceleration az of m, and m2 + m?
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