Physics.
newton's second law
This is one of Newtons Laws....I am going with law 2 and my 13 year old son who is actaully studying this thinks it is #3. Please help.......I think we have read too much into this question.....Thanks!!!!! You are wrong it is Newton's third law.
A rocket is used for space travel because it requires nothing to push against,no air or ground is needed. The speed and quantity of gas leaving the engine has an equal and opposite force on the rocket propelling it in the opposite direction.
Saturn V
There is no god for the stomp rocket.
newton's second law
newton's third law
The achievement of lifting a rocket off the ground and into space can be explained by Newton's third law of motion, which states that for every action, there is an equal and opposite reaction. This law explains how the rocket engines generate thrust by expelling gases downward, causing the rocket to move upward.
This is one of Newtons Laws....I am going with law 2 and my 13 year old son who is actaully studying this thinks it is #3. Please help.......I think we have read too much into this question.....Thanks!!!!! You are wrong it is Newton's third law.
Newton's Third Law. Equivalent to Conservation of Momentum. By Newton's Third Law, if the gas is pushed out of the rocket, the gas pushes the rocket back, in the opposite direction.
While lifting off, a rocket will reach about 17,000mph
A rocket gets off the ground through a process called ignition. Once the rocket's engines are ignited, they generate thrust, which propels the rocket upwards. The thrust created by the engines overcomes the force of gravity, allowing the rocket to lift off the ground and enter into space.
yaaeranmulle
The propellant
No, gravity pulls objects downward towards the center of the Earth. This is why objects fall towards the ground when they are released. Objects need an external force, such as a rocket or a lifting force, to move them upward against gravity.
A rocket taking off, quite slowly lifting then accelarating quickly . Free falling
A rocket gaining height uses potential energy, which is the energy stored in the rocket's position above the ground. As the rocket climbs higher, its potential energy increases due to its position in the Earth's gravitational field. This potential energy can be converted into kinetic energy as the rocket descends back to the ground.