Answer:
her velocity relative to the surface of the ice is 1.154 m/s
The positive velocity indicates that her velocity relative to the surface of the ice is in the same direction with her velocity relative to plank.
Step-by-step explanation:
Given;
mass of the girl,
= 45.0 - kg
mass of the plank,
= 150 kg
velocity of the girl relative to the plank,
= 1.5 m/s
Velocity of the plank relative to the ice,
= ?
Velocity of the girl relative to the ice,
= ?
Thus, velocity of the girl relative to the ice can be calculated as;
=
+
![V_P_I](https://img.qammunity.org/2020/formulas/physics/college/74ny4qa37kcuxbvsdx1d28u93abuphr5es.png)
= 1.5 +
-----------equation (i)
From the principle of conservation of energy;
![M_GV_(GI) +M_PV_(PI) = 0](https://img.qammunity.org/2020/formulas/physics/college/2ldfxm5ma28ra5lyyjapxznjttvbvu8xy1.png)
45
+ 150
= 0
3
+ 10
= 0 ------------equation (ii)
From equation (i);
=
- 1.5
Substitute in
in equation (ii)
3
+ 10(
- 1.5) = 0
3
+ 10
-15 = 0
13
= 15
= 15/13
= 1.154 m/s
The positive velocity indicates that her velocity relative to the surface of the ice is in the same direction with her velocity relative to plank.