A pop-up toy consists of a mass m stuck to the top of a light spring of natural length #l_0#and spring constant k. The spring is compressed to length #l_1# when the pop-up is stuck to the ground. To what height above the ground does it reach?
A pop-up toy consists of a mass m stuck to the top of a light spring of natural length #l_0# and spring constant k. The spring is compressed to length #l_1# when the pop-up is stuck to the ground. To what height above the ground does the bottom of the unstretched spring jump to when it is smoothly released?
A pop-up toy consists of a mass m stuck to the top of a light spring of natural length
2 Answers
The height is
Explanation:
The mass of the toy is
The spring constant is
The compression of the spring is
The energy stored in the spring is
This energy will be transformed into potential energy
The height is
The acceleration due to gravity is
Therefore,
The height is
Explanation:
Let's assume that the point where the spring is attached,the potential energy is zero.
So,the potential energy of the mass is
When the spring got compressed to a length of
One is decrease in the potential energy of the mass i.e new potential energy of the mass is
So we can tell this potential energy which got stored in the spring was equals to that amount of decrease in potential energy of mass m , which occurred as it came to
So,we can write,
Or,
Now,when the spring will be smoothly released, if the bottom point of spring goes up to height
So,from conservation of energy we can write,
Total energy of the system due to compression of the spring = total energy of the system after reaching the maximum height
[ Note one thing we consider here,that is the fully stretched spring (that is at its original length) has no energy]
Therefore,
So we get,