Thrust: Difference between revisions

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==Thrust==
==Thrust as a force==
Thrust is the force that changes the inertia of an object.
Thrust is the force that changes the inertia of an object.
===Newton===
===Newton===
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Force= [[Kg|Mass]] * [[Acceleration]]
Force= [[Kg|Mass]] * [[Acceleration]]
===Newton’s third law, reciprocal actions===  
===Newton’s third law, reciprocal actions===  
An object accelerated away from another puts force on the both objects.
An object accelerated away from another puts force on the both objects.
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The rocket the [[Iagreous|fuel]] is accelerated away from the [[Engines|engines]] the mass of the accelerated plasma forces the [[Engines|engines]] the opposite direction.  
The rocket the [[Iagreous|fuel]] is accelerated away from the [[Engines|engines]] the mass of the accelerated plasma forces the [[Engines|engines]] the opposite direction.  
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The bullet may shoot out the front of the gun barrel but the gun moves backwards, recoil.
The bullet may shoot out the front of the gun barrel but the gun moves backwards, recoil.
==Thrust in flight==
There are 4 forces acting on an aerospace vehicle in flight.
#Thrust
#[[Drag]]
#[[Lift]]
#[[Kg|Mass]]
[[image:4forces.jpg]]
 
 
*An aircraft will accelerate as long as the thrust is greater then the [[Drag|drag]].
*The aircraft stay the same [[IAS|indicated air speed]] when thrust and [[Drag|drag]] are equal.
*The aircraft will slow down when [[Drag|drag]] is greater then thrust.

Revision as of 07:50, 8 August 2007

Thrust as a force

Thrust is the force that changes the inertia of an object.

Newton

To understand thrust we need to look at Newton’s laws of motion.

  1. An object at rest till stay at rest unless an out side force is applied to it.
  2. The change in an object’s momentum is proportional to the force applied to it.
  3. For every action there is an equal and opposite reaction.

Newton’s second law the Law of Action

Thrust is the force described by Newton’s second law

Force= Mass * Acceleration

Newton’s third law, reciprocal actions

An object accelerated away from another puts force on the both objects.

This can be demonstrated with;

  • A balloon letting the air escape from it
  • A rocket taking off
  • A bullet fired from a gun

The balloon the air in side the balloon has Mass it is forced out the back as the balloon contracts. The escaping air forces the balloon in the opposite direction.
The rocket the fuel is accelerated away from the engines the mass of the accelerated plasma forces the engines the opposite direction.
The bullet may shoot out the front of the gun barrel but the gun moves backwards, recoil.

Thrust in flight

There are 4 forces acting on an aerospace vehicle in flight.

  1. Thrust
  2. Drag
  3. Lift
  4. Mass


  • An aircraft will accelerate as long as the thrust is greater then the drag.
  • The aircraft stay the same indicated air speed when thrust and drag are equal.
  • The aircraft will slow down when drag is greater then thrust.