Problem

Atwood’s pulley: mind the axle. On the ideal pulley of the previous problem we replace the numerical values with m=5  kgm = 5\;\mathrm{kg} and M=10  kgM = 10\;\mathrm{kg}, leaving the system free to move. Question: what is the magnitude of the force that the pulley’s pin must exert upward to remain still? Compare the result with the value (M+m)g(M+m)g that would apply if the system were locked (for example by locking the rope on the pulley): why does the pin bear less weight when the system moves? Adapted from (Povey 2015).

Topics: Dinamica Concepts: Seconda legge di Newton · Tensione · Forza peso Skills: Applicazione delle leggi di Newton · Diagramma di corpo libero · Impostazione simbolica Methods: Metodo del diagramma di corpo libero Objects: Macchina di Atwood · Puleggia · Fune ideale