The mass = its volume. This is true if the mass of water is measured in grams and the volume is measured in cc and the density of water is 1 gram/cc. Depending on temperature, 1 gram/cc is a good approximation. In general, the relationship between water (or anything else) and its volume is mass/volume = density.
The volume of water is directly proportional to its mass. This means that as you increase the volume of water, the mass will also increase proportionally. Conversely, if you decrease the volume of water, the mass will decrease accordingly.
The volume of water used in the disappearing cross experiment is varied to observe the effects of different concentrations on the rate of the reaction. By changing the volume of water, researchers can test how the reaction rate is affected as the concentration of the reactants changes. This helps in understanding the relationship between concentration and reaction rates.
The correlation between the volume of water poured into a container and the amount of empty space left in the container is inversely proportional. As the volume of water increases, the empty space decreases, assuming the container is filled to its capacity. When the container is full, there is no empty space left. This relationship illustrates the principle of volume conservation within a defined space.
The density is the ratio between mass and volume.
In a water pressure-volume diagram, the relationship between pressure and volume is inversely proportional. This means that as the volume of water decreases, the pressure increases, and vice versa.
In a closed system, the relationship between water pressure and volume is inversely proportional. This means that as the volume of water decreases, the pressure increases, and vice versa.
There is no relationship between the mass of a sinking objectand the volume of water displaced.Their volumes are equal though .
fail
They are exactly the same amount
The relationship between water volume and pressure is inversely proportional. This means that as the volume of water increases, the pressure decreases, and vice versa. This is known as Boyle's Law, which states that the pressure of a gas (or liquid) is inversely related to its volume when temperature is held constant.
It is the inverse of the specific gravity of copper.
No relationship at all. But there is a definite and direct relationship between theamount of water than an object displaces and the object's volume.
The water overflowed when Archimedes jumped in and he knew that there is a relationship between his weight and the volume of the water
The more particle is given the less water would go through it leaving the particle wet
The molar volume of water is the amount of space one mole of water occupies at a specific temperature and pressure. The physical properties of water, such as density, boiling point, and specific heat capacity, are influenced by its molar volume. As the molar volume of water changes, its physical properties also change accordingly.
The buoyant force acting on an object submerged in water is equal to the weight of the water displaced by the object. The volume of water displaced is directly proportional to the buoyant force, meaning that the greater the volume of water displaced, the greater the buoyant force acting on the object.