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The three laws:

1. Every object in a state of uniform motion tends to remain in that state of motion unless an external force is applied to it.

2.The relationship between an object's mass m, its acceleration a, and the applied force F is F = ma. Acceleration and force are vectors (as indicated by their symbols being displayed in slant bold font); in this law the direction of the force vector is the same as the direction of the acceleration vector.

3.For every action there is an equal and opposite reaction.

hope this helps :-)

2007-02-16 02:27:44 · answer #1 · answered by sonarsunlite 2 · 0 0

These are the law of Isaac Newton:
1) The law of initial which is the first law state " Any object in motion stays in motion unless acted on by an outside force.
2) The second is the law of Motion which is basically F=MA meaning force equal mass time acceleration.
3) Third and finally law of Isaac Newton is the law of stability. The is a reaction for every action. Ex. Action = Reaction. Stepping on the brake of a car cause it to stop.

2007-02-16 02:35:12 · answer #2 · answered by problemsolver86 3 · 0 0

Newtons First Law: Objects do not accelerate unless another net force works upon them.

Newtons Second Law: Force=mass*acceleration

Newtons Third Law: If one force acts upon an object, the object exerts an equal opposing force back on the other object.

2007-02-16 02:28:59 · answer #3 · answered by Taylor 1 · 0 0

here goes:
1)every body continues to be in a state of rest or of uniform motion in a straight line, unless compelled by some external force to act otherwise OR if the net external force on a body is zero, then its acceleration is zero.(note: acceleration can be non-zero only if there is a net external force on the body.)
2)the rate of change of momentum of a body is directly proportional to the applied force and it takes place in the direction in which the force acts.(f=m*a, where f=force, m=mass, a= acceleration)
3)every action has an equal an opposite reaction(b'coz force always occurs in pairs)
hope it helps....!!!

2007-02-16 03:09:23 · answer #4 · answered by ana 2 · 0 0

1st object stays in motion. 2nd object stay in motion unless acted upon. 3rd each reaction has a opposite reaction

2007-02-16 02:28:16 · answer #5 · answered by Johnny 1 · 0 0

a million) do no longer imagine that second merchandise reflects stress of the first. it is more beneficial advantageous to comprehend as follows:- If there are 2 objecs A and B. stress through A on B is F1 and stress through B on A is F2. Then F1 and F2 are equivalent in value and opposite in route. In Newton's guidelines, it isn't defined why it occurs. It basically occurs because it is a regulation. If an merchandise is at relax, then with the intention to flow it, you need to practice internet non-0 stress on it. once you push an merchandise, then the article applies equivalent and opposite stress on you. hence entire stress on you plus merchandise will be 0 (assuming there is not any internet 0.33 stress). yet entire stress on that merchandise isn't 0. it is the reason the article strikes. be conscious that with a view to learn the dynamics of an merchandise, you need to judge in trouble-free terms the forces on the article, no longer through the article. 2. This tendency (suggested as intertia) is found in all products. No products do no longer have sure position. you need to imagine in words of body of reference. If in a given body of reference, an merchandise is at relax, then in that body of reference, it is going to stay at relax if internet stress on it is 0. Likewise, in a given body of reference an merchandise is transferring, then in that body of reference it is going to proceed to flow on an similar % and interior of an similar route so long the internet stress on it is 0. besides the undeniable fact that that is necessary to be conscious that Newton's 1st regulation is in trouble-free terms perfect in inertial frames of reference. The URL in the source of this question explains it in additional beneficial aspect.

2016-12-04 06:15:56 · answer #6 · answered by Anonymous · 0 0

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