Then the solid object has a greater density and will sink.
It is not the weight of the immersed object but the volume of the object would affect the buoyant force on the immersed object because the buoyant force is nothing but the weight of the displaced liquid whose volume is equal to that of the immersed object.
The volume of water pushed out of the way by an object is called the displaced volume or the volume of water displaced. This is the volume of water that is moved aside when an object is immersed in a fluid.
Displacement is the volume of fluid displaced by an object immersed in it, while buoyant force is the upward force exerted on an object immersed in fluid due to the displaced fluid. The magnitude of the buoyant force is equal to the weight of the displaced fluid, which is directly related to the volume of fluid displaced, or the object's displacement.
Submerged density is the density of an object when it is immersed in a fluid. It takes into account the volume of the object that is submerged in the fluid. This can be calculated using the formula: (density of object * volume of object) / (volume of object - volume of displaced fluid).
To find the buoyant force acting on an object submerged in a fluid, use the formula: Buoyant force = weight of the fluid displaced by the object. The volume immersed can be calculated by dividing the weight of the object by the density of the fluid and the acceleration due to gravity.
By placing the object in water and the volume of water displaced is equal to the volume of the object immersed
It is not the weight of the immersed object but the volume of the object would affect the buoyant force on the immersed object because the buoyant force is nothing but the weight of the displaced liquid whose volume is equal to that of the immersed object.
he discovered that volume of object immersed in water =volume of liquid displaced
When a body or object is immersed in water that its volume is equal to the water displaced.
The volume of water pushed out of the way by an object is called the displaced volume or the volume of water displaced. This is the volume of water that is moved aside when an object is immersed in a fluid.
Displacement is the volume of fluid displaced by an object immersed in it, while buoyant force is the upward force exerted on an object immersed in fluid due to the displaced fluid. The magnitude of the buoyant force is equal to the weight of the displaced fluid, which is directly related to the volume of fluid displaced, or the object's displacement.
When a body or object is immersed in water that its volume is equal to the water displaced.
Yes, assuming that immersed object has no internal voids which the fluid cannot fill (e.g. a hollow sphere).
When an object is immersed in water the volume of water displaced is equal to the volume of that object as discovered by Archimedes.
Submerged density is the density of an object when it is immersed in a fluid. It takes into account the volume of the object that is submerged in the fluid. This can be calculated using the formula: (density of object * volume of object) / (volume of object - volume of displaced fluid).
To find the buoyant force acting on an object submerged in a fluid, use the formula: Buoyant force = weight of the fluid displaced by the object. The volume immersed can be calculated by dividing the weight of the object by the density of the fluid and the acceleration due to gravity.
Volume is length*width*height in cubic units. If this is not possible then when an object is immersed in water the water displaced is equal to the volume of the object which was discovered by Archimedes.