Problem

A triangular plane has two inclined sides. Mass1 (m1=4  kgm_1 = 4\;\text{kg}) is on the 6060^\circ side, mass2 (m2=5  kgm_2 = 5\;\text{kg}) on the 3030^\circ side; the two masses are connected by an ideal rope passing over a pulley at the apex. A spring (K=1000  N/mK = 1000\;\text{N/m}) acts on mass~1 with a force of 100  N100\;\text{N}. Find the acceleration of the system and the tension of the rope.

Key ideas for ideal pulleys

  • Same magnitude of acceleration a\abs{a} at both ends of the rope.
  • Same tension tt at both ends.
  • Write Newton’s second law for each body, then add the equations to eliminate tt and find aa.

Topics: Dinamica Concepts: Seconda legge di Newton · Tensione · Forza peso Skills: Scomposizione sul piano inclinato · Applicazione delle leggi di Newton Objects: Piano inclinato · Puleggia · Fune ideale · Blocco