The weight force can be considered to act at the center of mass for an extended object.
Weight is considered an external force because it is the force exerted by gravity on an object due to its mass. It is not generated by the object itself, but rather acts on the object from the outside.
Weight is the force exerted on an object due to gravity. Since gravity acts at a distance and does not require direct contact with the object, weight is considered a non-contact force.
Weight is considered an external force because it is the force exerted by gravity on an object due to its mass. Gravity is an external force acting on the object from the outside environment.
Weight is not considered a constant measure of the amount of matter of an object because it can change depending on the gravitational force acting on the object. Weight is a force that depends on gravity, while the amount of matter an object contains, or its mass, remains constant regardless of the gravitational force.
The force of gravity is an attractive force exerted by Earth on an object. It is what gives an object weight and is responsible for keeping objects grounded on the surface of the Earth. The strength of the gravitational force depends on the mass of the object and the distance between the object and the center of the Earth.
Weight is considered an external force because it is the force exerted by gravity on an object due to its mass. It is not generated by the object itself, but rather acts on the object from the outside.
Weight is the force exerted on an object due to gravity. Since gravity acts at a distance and does not require direct contact with the object, weight is considered a non-contact force.
Weight is considered an external force because it is the force exerted by gravity on an object due to its mass. Gravity is an external force acting on the object from the outside environment.
Spring was used to measure a force by the balance measures the weight of an object by opposing the force of gravity with the force of an extended spring.
Weight is not considered a constant measure of the amount of matter of an object because it can change depending on the gravitational force acting on the object. Weight is a force that depends on gravity, while the amount of matter an object contains, or its mass, remains constant regardless of the gravitational force.
The force of gravity is an attractive force exerted by Earth on an object. It is what gives an object weight and is responsible for keeping objects grounded on the surface of the Earth. The strength of the gravitational force depends on the mass of the object and the distance between the object and the center of the Earth.
The weight of an object is the force of gravity.
An object is considered weightless when there is no normal force acting on it because weight is the force exerted by gravity on an object's mass. In freefall, the object is only subject to the force of gravity, which causes it to accelerate with the same acceleration as the object itself, resulting in a sensation of weightlessness.
Gravity is the force that causes an object to have weight. The weight of an object is the gravitational force acting on it. The magnitude of the weight depends on the mass of the object and the acceleration due to gravity at that location.
If the object is floating, then the buoyant force is equal to the object's weight.
The upward bouyant force depends only on the weight of the displaced fluid. The NET force (object's weight - bouyant force) depends on the object's weight and will determine how fast it sinks.
No, an object's buoyant force and weight are not the same thing. Weight is the force with which gravity pulls an object downward, while buoyant force is the force exerted by a fluid on an object immersed in it that opposes the object's weight. buoyant force can act in the opposite direction of weight if the object is floating in a fluid.