Answer:
s₁ = 0.022 m
Step-by-step explanation:
From the law of conservation of momentum:
![m_1u_1 + m_2u_2 = m_1v_1+m_2v_2](https://img.qammunity.org/2022/formulas/physics/college/nyi01kz6vhj7xwux1y5ako2zbvjl7h3r9o.png)
where,
m₁ = mass of hockey player = 97 kg
m₂ = mass of puck = 0.15 kg
u₁ = u₂ = initial velocities of puck and player = 0 m/s
v₁ = velocity of player after collision = ?
v₂ = velocity of puck after hitting = 48 m/s
Therefore,
![(97\ kg)(0\ m/s)+(0.15\ kg)(0\ m/s)=(97\ kg)(v_1)+(0.15\ kg)(48\ m/s)\\\\v_1 = -((0.15\ kg)(48\ m/s))/(97\ kg) \\v_1 = - 0.074 m/s](https://img.qammunity.org/2022/formulas/physics/college/vd2ts6psluyzj6r18k98696d0bmt1m4c43.png)
negative sign here shows the opposite direction.
Now, we calculate the time taken by puck to move 14.5 m:
![s_2 =v_2t\\\\t = (s_2)/(v_2) = (14.5\ m)/(48\ m/s) \\\\t = 0.3\ s](https://img.qammunity.org/2022/formulas/physics/college/rl6rkfx6ytajzwsb3ltkpardhl41wt1x31.png)
Now, the distance covered by the player in this time will be:
![s_1 = v_1t\\s_1 = (0.074\ m/s)(0.3\ s)](https://img.qammunity.org/2022/formulas/physics/college/hd7e9p8vs2jpor3mdqawpnj7pmv034pxsf.png)
s₁ = 0.022 m