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Buoyant force works against the force of pulling.

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Against what other force does buoyancy act?

Buoyancy is the power to float or rise in a liquid and it acts against the force of gravity.


What is the force that acts against the force of buoyancy?

The force that acts against the force of buoyancy is gravity. Buoyancy is the upward force exerted by a fluid that opposes the weight of an object immersed in the fluid. Gravity, on the other hand, pulls objects downwards.


What is buoyancy Against what other force does it act?

Buoyancy is the upward force exerted by a fluid that opposes the weight of an object placed in the fluid. It acts against the force of gravity on the object, allowing objects to float or be suspended in a fluid.


What if buoyancy is the property of matter that can be defined as?

Buoyancy is the upward force exerted by a fluid on an object immersed in it. It is determined by the weight of the fluid displaced by the object. Objects float when their weight is less than the buoyant force acting on them.


How does buoyancy work and what factors influence it?

Buoyancy is the upward force that a fluid exerts on an object immersed in it. It works by displacing an amount of fluid equal to the weight of the object. Factors that influence buoyancy include the density of the fluid, the volume of the object, and the gravitational force acting on the object.


What is the force called that is exerted by a fluid that has objects immersed in it?

Buoyant force, buoyancy force, buoyancy.


What is the upward force that works against gravity?

Any upward force works against gravity,since they act in opposite directions.


What is 1 force that buoyant works against?

the force of gravity


Friction is a force which works against what?

motion


Does vacuum have buoyancy force?

No, vacuum does not have a buoyancy force because buoyancy is a result of differences in pressure within a fluid. In a vacuum, there is no fluid to exert pressure so there is no buoyant force.


What do you call the force that works against the direction of a given force?

Reaction


What force always works against motion?

Friction.