According to Eculator's calculator for velocity of a falling object, the speed of the boulder won't be dependent on its mass and will be given by:
v = (2gh)1/2
So, the calculated answer putting h = 200 m would be: 62.609903369994115 m/sec
In a standard distribution, the first quartile (Q1) represents the 25th percentile of the data. This means that 25% of the data falls below Q1, and consequently, 75% of the data falls above Q1. Therefore, 75% of the data is above Q1.
1 to 1, which is greater than -1.2
At the end of the first day she is (3 - 2) = 1 meter above the bottom.At the end of the second day she is [ 1 + (3 - 2) ] = 2 meters above the bottom.At the end of the third day, she is [ 2 + (3 - 2) ] = 3 meters above the bottom....At the end of the 28th day she is 28 meters above the bottom, assuming she hasn't starved to death yet.During the 29th day, she is in the process of climbing up 3 meters, when she reaches the top and flops outonto the ground. This happens at some time during the 29th day.
At the end of the first day she is (3 - 2) = 1 meter above the bottom.At the end of the second day she is [ 1 + (3 - 2) ] = 2 meters above the bottom.At the end of the third day, she is [ 2 + (3 - 2) ] = 3 meters above the bottom....At the end of the 28th day she is 28 meters above the bottom, assuming she hasn't starved to death yet.During the 29th day, she is in the process of climbing up 3 meters, when she reaches the top and flops outonto the ground. This happens at some time during the 29th day.===============================================Another contributor says:The Answer is 28 days not 29. The rabbitt would come out on the 28 day.
It is above average for a human. Average would be 90-110.
The boulder has gravitational potential energy due to its position above the ground. This potential energy can be converted into kinetic energy as the boulder falls towards the ground.
The boulder on a cliff possesses potential energy, which is the energy that is stored in an object due to its position or state. As the boulder is raised above the ground, it gains potential energy that can be converted into kinetic energy if it falls off the cliff.
Potential, changing to kinetic when you release it and it falls.
When a walnut falls, potential energy is converted to kinetic energy. The potential energy comes from the height of the walnut above the ground, while the kinetic energy is the energy of motion as the walnut falls towards the ground.
The Treasure Cave is in Mountain Falls Which is Hidden Behind a Giant Boulder. You Will Have to Destroy the Boulder To Get In The Treasure Cave
An apple that falls from a tree and hits the ground 2 seconds later, fell from a branch 64 ft above the ground. We don't know the total height to the top of the tree, only to the place where the apple was attached.
When a kid falls out of a tree, the energy given off is kinetic energy in the form of motion as the child falls towards the ground. This kinetic energy is then transferred to other forms of energy upon impact, such as sound and potential energy from the child's position above the ground.
Assuming there is no loss of energy during the fall, all of the potential energy will be converted to kinetic energy just before it hits the ground. Therefore, the kinetic energy just before it hits the ground will also be 200 J.
Sulfuric acid falls from the clouds high above the surface of Venus, but it evaporates long before reaches the ground.
Yes, when the rock is held above the ground, it possesses potential energy due to its position. As it falls, this potential energy is converted to kinetic energy, which is the energy of motion. When the rock hits the ground, this kinetic energy is transferred into other forms of energy, such as sound and heat.
you have to get the legander sword then use it on the big boulder
As an object falls from a height above the ground, its potential energy decreases due to the lowering of its height. This potential energy is transformed into kinetic energy as the object speeds up. At the same time, some of the energy is also lost as heat and sound due to air resistance and other factors.