the work done by the ball is given by the equation, W=mgh =(5)(9.8)(8) =392 joules.
The ground reaction force equation is used to calculate the force exerted by the ground on an object in contact with it. It is represented by the equation: GRF mass x acceleration.
The kinetic energy of a freely falling body at ground level is equal to its potential energy at the starting height, assuming no air resistance or other external forces are acting on it. The kinetic energy is given by ( KE = \frac {1}{2} m v^2 ), where (m) is the mass of the object and (v) is its velocity just before hitting the ground.
Yes, when an object falls freely due to gravity, its acceleration is uniform and equal to 9.8 m/s^2, directed towards the center of the Earth. This uniform acceleration is the result of the gravitational force acting on the object and is independent of the object's mass.
You can calculate the kinetic energy just before hitting the ground using the formula for potential energy and kinetic energy. First, calculate the potential energy at the initial height using mgh (mass x gravity x height). Then equate this value to the kinetic energy just before hitting the ground using the formula 1/2mv^2 (0.5 x mass x velocity squared) and solve for the velocity.
The force of a high heel can be calculated using the formula Force = Pressure x Area. To calculate the pressure, divide the weight of the person wearing the high heel by the area of the heel that contacts the ground. This will give you the force exerted by the high heel on the ground.
An aquifer transmits ground water freely.
When rock fragments fall freely through the air, they experience acceleration due to gravity and air resistance. As they fall, they may break into smaller pieces due to impact with each other or the ground, ultimately becoming sediment or debris. This process is known as erosion.
The ground reaction force equation is used to calculate the force exerted by the ground on an object in contact with it. It is represented by the equation: GRF mass x acceleration.
The mutual attractive forces of gravity between the body and the Earth.
No, the pen on a seismograph does not swing freely. The pen is stationery only until an earthquake occurs. Then the pen moves along the paper according to the way the ground is moving or quaking.
Above ground pools are cheaper to install. They offer an easy safety feature which is taking the ladder away while the pool is not in use. In ground pools offer a deeper pool that you can do laps and exercise more freely.
An object thrown vertically up wards from the ground returned back to the ground in 6s after it was thown up if it reached a height of 12m calculate?
No, the pen on a seismograph does not swing freely. The pen is stationery only until an earthquake occurs. Then the pen moves along the paper according to the way the ground is moving or quaking.
The process is called chemical weathering.
The kinetic energy of a freely falling body at ground level is equal to its potential energy at the starting height, assuming no air resistance or other external forces are acting on it. The kinetic energy is given by ( KE = \frac {1}{2} m v^2 ), where (m) is the mass of the object and (v) is its velocity just before hitting the ground.
So air can pass freely between buildings and the ground. Permafrost exists underground, so if heat from the buildings radiated into the ground and melted it, the ground would sink and the building foundations would be compromised.
Ground coverage of the bldg is equal to total gross ground floor building area divide by total plot area.