because Neal Armstrong wanted to be famous
because the formula for density is mass times volume. Which equals density.
It is not two units are not the same as 1 density the objects density only counts on how much the mass of the object is then you will find out the density (units are counted in the density)
It is not two units are not the same as 1 density the objects density only counts on how much the mass of the object is then you will find out the density (units are counted in the density)
It is not two units are not the same as 1 density the objects density only counts on how much the mass of the object is then you will find out the density (units are counted in the density)
An object will float if it has less density than the liquid in which it is placed.
Floating objects have a lower density than the liquid they are in, causing them to float. Sinking objects have a higher density than the liquid, causing them to sink. The density of the liquid determines whether an object will float or sink based on the relationship between the object's density and the liquid's density.
A less dense object or any other substance will float on a more dense liquid.
Density and buoyancy are inversely related. Objects or substances with higher density than the fluid they are placed in will sink, while objects with lower density will float. This is due to the buoyant force exerted on an object being equal to the weight of the fluid displaced, which is dependent on the density of both the object and the fluid.
Buoyancy is the property of matter that describes how well an object floats. It is determined by the relationship between the density of the object and the fluid it is placed in. Objects with a lower density than the fluid will float, while objects with a higher density will sink.
Mass is the amount of matter in an object, while volume is the amount of space that object occupies. The relationship between mass and volume is important in determining an object's density, which is calculated by dividing mass by volume. Objects with a higher mass-to-volume ratio are denser.
The relationship between a thing or objects and its meanings is a system of meanings.
Everything