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The answer is reaction. A simple example is you standing on the ground. You are not moving or accelerating (in our reference frame). You are pushing down against the ground with a force (the action) equal to your weight. The ground pushes back up (opposite direction) with an equal force (the reaction force).
Well, according to Newton's third law of motion, for every action there is an equal and opposite reaction, so when the gas pushes against the ground, the ground "pushes" back, forcing the rocket upwards.
This is Newtons 3rd Law. "For every action force there is an equal and opposite reaction force." So, the action is your hand applying a force to the wall, and the reaction is the wall pushing back with an equal force.
the concept's application here is very simple. As we walk we exert a certain amount of force on the Earth and governed by the 3rd law the Earth exerts the equal amount of force back on our foot (opposite direction) but as the Earth is very massive to observe the push that we exert only the force the it exerts it felt this added to friction provides the stability of the feet while in movement
Newton's third law, for every action there is an equal and opposite reaction.
The energy from the fuel pushes against the ground, which (because every action has an equal and opposite reaction) pushes the rocket up.
The answer is reaction. A simple example is you standing on the ground. You are not moving or accelerating (in our reference frame). You are pushing down against the ground with a force (the action) equal to your weight. The ground pushes back up (opposite direction) with an equal force (the reaction force).
Well, according to Newton's third law of motion, for every action there is an equal and opposite reaction, so when the gas pushes against the ground, the ground "pushes" back, forcing the rocket upwards.
Nope - it's something else that gets the "equal & opposite". When you walk the force that pushes you forward pushes the ground backwards.
When you jump, your body propels itself upward by exerting force on the ground. According to Newton's third law of motion, for every action, there is an equal and opposite reaction. So, when you push down on the ground to jump, the ground pushes back with an equal force, propelling you upward.
Newton's Third Law of Motion: The mutual forces of action and reaction between two bodies are equal, opposite and collinear. This means that whenever a first body exerts a force F on a second body, the second body exerts a force −F on the first body. F and −F are equal in magnitude and opposite in direction. This law is sometimes referred to as the action-reaction law, with F called the "action" and −F the "reaction". The action and the reaction are simultaneous. What this means is that when the rocket pushes on the ground, the ground pushes back on the rocket with equal force. And if the rocket is causing enough force on the ground, the force the ground is causing against the rocket will cause lift.
Running/walking can be explained through newton's third law-for every action force, there is a reaction force that is equal but opposite in magnitude. The action force when you're running is stepping on the ground. The reaction force pushes your feet and goes foward.
Newton's Third Law of Motion For every action, there is an equal and opposite reaction. The object pushes downward on the surface, the surface pushes upward on the object. When the net force is zero, the object comes to rest.
This is Newtons 3rd Law. "For every action force there is an equal and opposite reaction force." So, the action is your hand applying a force to the wall, and the reaction is the wall pushing back with an equal force.
Need the value of blank.
The engines provide lift, which pushes projectiles down. And, since every action has an equal and opposite reaction, since the engine pushes particles down, the particles push the engine up. The engine, in turn, pushes the rocket ship.
8 times blank equal 32 = 256