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Q: When a force is applied to an object what are the three ways it can change the object?
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What three forces cause an object to change its motion?

The three forces that causes an object to change its motion are the gravitational force, the normal force and the frictional force.


How is work done in different situation?

Work can be completed in three different situations: when force is present, when force is applied to a particular object, and when the force applied occurs in a parallel motion.


What are the three forces can cause an object to change?

the answer is frictional force elotromagnetic force gravitational force


What determines whether an object's motion will change?

'Force'. Remember Newton's three laws of Universal Dynamics. A body/mass will stationary or in uniform motion unless acted upton by a force. Force is directly proportional to mass and acceleration To every force there is an equal and opposite force.


What are Newton's three laws of motion?

Newton presented only one law of gravitation.He also published three laws of motion, which are . . .1. Every object tends to remain in the state of uniform 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 Fis 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.--------------------------------------------------------------Second law is to be stated asThe rate of change of momentum is directly proportional to the force causing such change and that change takes place in the direction of the force.1st. An object at rest stays at rest and an object in motion will remain in motion in a straight line unless acted on by an outside force.2nd. When a force is applied to an object it will create an acceleration that is inversely proportional to the mass of the object. F = ma3rd. For every action there is an equal and opposite reaction.


What Newton's three Laws of motion?

Newton presented only one law of gravitation.He also published three laws of motion, which are . . .1. Every object tends to remain in the state of uniform 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 Fis 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.--------------------------------------------------------------Second law is to be stated asThe rate of change of momentum is directly proportional to the force causing such change and that change takes place in the direction of the force.1st. An object at rest stays at rest and an object in motion will remain in motion in a straight line unless acted on by an outside force.2nd. When a force is applied to an object it will create an acceleration that is inversely proportional to the mass of the object. F = ma3rd. For every action there is an equal and opposite reaction.


What are the three effects of force in full?

1:Force can change the shape of an object2:Force can cause an object that is not moving to start moving 3: Force can cause an object to turn around or spin


Why does it take more force to accelerate a more massive object?

A force will not increase or decrease an acceleration. If the force is constant, it will cause a constant acceleration. It may increase or decrease the speed. The change of velocity - for the same force - is the same, whether the speed is increasing, decreasing, or just changing direction.


Describe three situations in which a force changes the velocity of an object?

1). Force applied to a moving object, in the direction of its motion. Speed increases, direction remains unchanged. 2). Force applied to a moving object, opposite to the direction of its motion. Speed decreases, direction remains unchanged. 3). Force applied to a moving object, in an arbitrary direction not parallel to the direction of motion. Speed and direction both change. 4). (bonus): Force applied to a moving object, force is kept exactly perpendicular to the direction of motion at every instant. Speed remains constant, path of the motion becomes circular.


What Do Newton's Three Laws Means?

Sir Isaac Newton had devised three laws of motion they are:-An object at rest tends to stay at rest and an object at motion tends to stay at motion unless an external unbalanced force it applied to it. This is also called the law oof inertia.The momentum of an object is directly proportional to the force applied to an object and the force is in the direction of motion perpendicular to the momentum. This is also called the law of momentum.For every action theres an equal and opposite reaction. This has no speacial name and is called Newton's third law.


What are the three types of forces according to newtons first law?

Sir Isaac Newton first presented his three laws of motion in the "Principia Mathematica Philosophiae Naturalis" in 1686. His first law states that every object will remain at rest or in uniform motion in a straight line unless compelled to change its state by the action of an external force. This is normally taken as the definition of inertia. The key point here is that if there is no net force resulting from unbalanced forces acting on an object (if all the external forces cancel each other out), then the object will maintain a constant velocity. If that velocity is zero, then the object remains at rest. And if an additional external force is applied, the velocity will change because of the force. The amount of the change in velocity is determined by Newton's second law of motion.


Type of force can cause an object to change direction?

Any force will cause change in velocity (speed and/or direction)if it isn't canceled by an equal, opposite force.