Potential Energy Gravitation Kinetic Energy

In summary, the problem involves calculating the kinetic energy of an asteroid approaching Earth, assuming it remains intact and ignores the Earth's rotation. The relevant potential energies are found using the equation -GMm/r, with the Earth's mass and radius given. The change in potential energy is then added to the initial kinetic energy of the asteroid to find the total kinetic energy just before it hits the ground. The final answer is 2.0673 x 10^14 Joules.
  • #1
Curveball
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0

Homework Statement


An asteroid of mass m = 2.6 × 10^6 kg approaches the Earth. When it is exactly 3 Earth radii away from the Earth's centre its speed relative to the Earth's centre is u = 8.7 × 10^3 m s–1.

The asteroid subsequently falls down to the Earth's surface. You may assume that the asteroid remains intact and does not dissipate any energy as it passes through the Earth's atmosphere. You may also ignore the rotation of the Earth and of the asteroid.

Calculate the kinetic energy of the asteroid just before it hits the ground. Give your answer by entering a number, specified to an appropriate number of significant figures, in the empty box below.

Homework Equations


[/B]
Energy Gravitational = -GMm/r

The Earth has mass ME = 5.98 × 10^24 kg and radius 6.38 × 10^6 m.

To find the relevant potential energies you will need to use G = 6.67 × 10^–11 N m^2 kg^–2.

The Attempt at a Solution



I believe the best method here is to find the Energy Gravitational when the asteroid is 3 radii away form the centre of Earth and when it is just above the Earth's surface.

The difference is the change in potential energy which is then the kinetic energy gained by the asteroid.

E grav change using -GMm/r = (5.41824 x 10^13 ) - (1.625472727 X 10^14) = 1.083648 x 10^14 Joules

Also the kinetic energy at the start would be 0.5mu^2 = 0.5 (2.6 × 10^6 )(8.7 × 10^3)^2 = 9.84 x 10^13 Joules.

Adding the 2 gives kinetic energy equal to 2.0673 X 10^14 Joules.
 
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  • #2
Hello Curvy and welcome to PF :-)

You found the forum and posted a new thread. Something went wrong and the template got erased. Here's a copy:

Homework Statement


2. Homework Equations
3. The Attempt at a Solution [/B]

You did well on 1.) and as soon as you also fill in 2 and 3 potential helpers are allowed to assist. Not before. See the guidelines; they give plenty of reasons why.
 

Related to Potential Energy Gravitation Kinetic Energy

1. What is potential energy in terms of gravitation?

Potential energy is the energy that an object possesses due to its position in a gravitational field. It is the energy that is stored in an object as a result of its position or configuration.

2. How is potential energy related to gravitation?

Potential energy is directly related to the force of gravity. The greater an object's mass and the closer it is to a massive body, the greater its potential energy will be.

3. What is the formula for calculating potential energy in a gravitational field?

The formula for calculating potential energy due to gravity is PE = mgh, where m is the mass of the object, g is the acceleration due to gravity, and h is the height of the object relative to a reference point.

4. What is kinetic energy and how is it related to potential energy in a gravitational field?

Kinetic energy is the energy that an object possesses due to its motion. In a gravitational field, potential energy can be converted into kinetic energy as an object falls towards the center of the field. This is known as the law of conservation of energy.

5. How do potential energy and kinetic energy work together?

Potential energy and kinetic energy are different forms of energy that are interrelated in a gravitational field. As an object falls, its potential energy decreases while its kinetic energy increases. This balance between potential and kinetic energy allows for the conservation of energy in a closed system.

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