The object is given an acceleration if the force exceeds the force of static friction on the object.
The term that describes the upward force that acts on an object submerged in a fluid is called buoyant force. This force is a result of the pressure difference between the top and bottom of the submerged object, pushing it upward.
Force.
Buoyancy is the term that describes the upward force that a fluid exerts on an object immersed in the fluid. This force is equal to the weight of the fluid displaced by the object.
A force is a push or pull that can cause an object to move, accelerate, or change its shape. Forces are described by their magnitude (strength) and direction, and they can result from contact interactions or field interactions such as gravity or electromagnetic forces.
The measure that describes the amount of gravitational force of an object is its mass. Mass is a fundamental property of matter that determines the amount of gravitational force it exerts on other objects. The greater the mass of an object, the stronger its gravitational force.
The value that describes how heavy an object is and is related to the force of gravity is mass. Mass is a measure of the amount of matter in an object and is constant regardless of the location in the universe.
Newton's Third Law.
Force
Yes, according to Newton's first law of motion, an object will remain in its state of motion (either at rest or moving at a constant velocity) unless acted upon by an external force. In order to keep an object moving, a force must be continuously applied to overcome any friction or resistance that might slow it down.
The term that describes the mass of an object is "weight." Weight is the force exerted on an object due to gravity and is measured in units such as pounds or kilograms.
Free fall describes an object that is falling and the only force acting on it is gravity. In free fall, the object is accelerating downward due to the force of gravity without any other forces affecting its motion.
The result of the combined forces on an object is called the net force. This net force determines the object's acceleration according to Newton's second law of motion, F = ma, where F is the net force, m is the object's mass, and a is its acceleration.