The three forces that act on an object are gravity, friction, and applied force.
There are more than three possible changes. Some of them are:The object is crushed.The object is stretched.The object undergoes a shear distortion.Nothing happens: the object is more resistant than the forces acting on it.
Some forces that can act upon a moving object include friction, air resistance, gravity, and applied forces like pushing or pulling. These forces can affect the speed, direction, and motion of the object.
The two types of push forces are tension and compression. Tension forces act to pull an object outward, while compression forces act to push an object inward.
The forces that act on a stationary object are typically the gravitational force pulling the object down and the normal force exerted by the surface supporting the object.
Two forces that act on an object in water are buoyant force, which pushes the object upwards, and gravity, which pulls the object downwards.
There are more than three possible changes. Some of them are:The object is crushed.The object is stretched.The object undergoes a shear distortion.Nothing happens: the object is more resistant than the forces acting on it.
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Some forces that can act upon a moving object include friction, air resistance, gravity, and applied forces like pushing or pulling. These forces can affect the speed, direction, and motion of the object.
The two types of push forces are tension and compression. Tension forces act to pull an object outward, while compression forces act to push an object inward.
The forces that act on a stationary object are typically the gravitational force pulling the object down and the normal force exerted by the surface supporting the object.
Two forces that act on an object in water are buoyant force, which pushes the object upwards, and gravity, which pulls the object downwards.
When forces act on an object without changing its motion, it is called a state of equilibrium. This means that the forces are balanced, leading to no acceleration or change in velocity of the object.
When two forces act in the same direction on an object, the forces will add together to create a stronger net force. This will result in an acceleration of the object in the direction of the forces.
When two forces of equal magnitude act in opposite directions on an object, it is called balanced forces. This results in no change in the object's motion.
a larger object
If forces on an object are unbalanced, the object will accelerate or decelerate. If forces on an object are balanced, the object will stay still or keep moving with the same velocity.
If forces act on an object but it does not move, then these forces are said to be balanced. This means that the forces are equal in magnitude and opposite in direction, resulting in no net force acting on the object.