A rocket achieves lift by pushing back the air column
The pressure needed to lift off a rocket from the ground depends on various factors such as the weight of the rocket, gravitational force, air resistance, and the design of the rocket's propulsion system. Rockets use powerful engines to generate thrust that exceeds the force of gravity, allowing them to lift off. Typically, rocket engines produce millions of pounds of thrust to achieve liftoff.
A rocket has to overcome the force of gravity in order to move skyward. This force pulls the rocket downward and needs to be overcome by the thrust generated by the rocket's engines in order to achieve lift-off.
The lift generated by a rocket is typically insignificant compared to its thrust, as rockets primarily rely on thrust to overcome gravity and achieve lift-off. Drag, on the other hand, is a significant force acting in the opposite direction of the rocket's motion, caused by air resistance. Rockets are designed to minimize drag in order to maximize their efficiency and speed during flight.
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The payload's weight, and the weight of the rocket itself.
The pressure needed to lift off a rocket from the ground depends on various factors such as the weight of the rocket, gravitational force, air resistance, and the design of the rocket's propulsion system. Rockets use powerful engines to generate thrust that exceeds the force of gravity, allowing them to lift off. Typically, rocket engines produce millions of pounds of thrust to achieve liftoff.
A rocket has to overcome the force of gravity in order to move skyward. This force pulls the rocket downward and needs to be overcome by the thrust generated by the rocket's engines in order to achieve lift-off.
Rockets do not have lift, they have thrust.
The lift generated by a rocket is typically insignificant compared to its thrust, as rockets primarily rely on thrust to overcome gravity and achieve lift-off. Drag, on the other hand, is a significant force acting in the opposite direction of the rocket's motion, caused by air resistance. Rockets are designed to minimize drag in order to maximize their efficiency and speed during flight.
The weight of a rocket decreases during takeoff because it is burning fuel, which reduces the amount of mass that the rocket has to lift against gravity. As fuel is used up, the overall weight of the rocket decreases, making it easier to achieve lift-off.
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use it at the lift in the rocket hideout. rocket hideout is under the game corner. examine the poster in the back
During liftoff, the two main forces acting on a rocket are thrust and gravity. Thrust is generated by the rocket's engines, pushing it upward, while gravity pulls the rocket back towards the Earth. These forces must be balanced for the rocket to achieve liftoff and ascend into space.
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The Saturn V rocket weighed about 6.2 million pounds (2.8 million kg) at lift-off.
You get it from a rocket from the rocket hideout in Celadon city.