Physic Labs

Problem 1

Two small masses m1=2.0 kgm_1=2.0\,\mathrm{kg} and m2=1.0 kgm_2=1.0\,\mathrm{kg} are joined by a light inextensible string over an ideal pulley. m1m_1 rests on a smooth plane inclined at 30∘30^\circ to horizontal and m2m_2 hangs vertically. The system is released from rest; take g=9.8 m/s2g=9.8\,\mathrm{m/s^2}. (a) Find the acceleration and direction. (b) Find the tension and normal force on m1m_1. (c) Find the distance each mass travels in the first 2.0 s2.0\,\mathrm{s}, assuming the string stays taut.
m1gsin⁡30∘=2(9.8)(1/2)=9.8 N=m2gm_1g\sin30^\circ=2(9.8)(1/2)=9.8\,\mathrm N=m_2g
problems.proof.analysis

The downslope component on m1m_1 equals the weight of m2m_2. Thus there is no net drive along the string and the system is in equilibrium.

problems.proof.pitfall. Do not infer motion direction from masses alone; compare forces along the string.