Comment:
Migration of unmigrated content due to installation of a new plugin
Composition Setup
Excerpt
hidden
true
Energy and springs.
A certain spring-loaded gun is cocked by compressing its spring by 5.0 cm. The gun fires a 4.0 g projectile with a speed of 8.0 m/s. What spring constant is required for the spring?
Solution
Toggle Cloak
id
sys
System:
Cloak
id
sys
Projectile as plus the gun as a rigid body of infinite mass.
Toggle Cloak
id
int
Interactions:
Cloak
id
int
The conservative spring interaction between the gun and the projectile will give rise to elastic potential energy.
Toggle Cloak
id
mod
Model:
Cloak
id
mod
.
Toggle Cloak
id
app
Approach:
Cloak
id
app
Toggle Cloak
id
diag
Diagrammatic Representation
Cloak
id
diag
We will ignore friction and other non-conservative interactions, which means that the mechanical energy of the system will be constant. We will further make the usual assumption that the projectile stops interacting with the spring when the spring returns to its equilibrium position (the projectile has essentially been "fired" at that point). Thus, appropriate initial-state final-state diagram and energy bar graphs are:
Initial
Final
Cloak
diag
diag
Toggle Cloak
id
math
Mathematical Representation
Cloak
id
math
We can now express the fact that the mechanical energy is constant through the Law of Change: