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Every form of matter has mass, which is the amount of material in an object, and volume, which is the amount of space the object occupies.
The volume of graphite is dependent on its mass and density. You can calculate it only if you know the sample's mass and density. The same goes for any other substance or object.
The amount of mass in a given volume depends on the density of the material in that volume. Density is calculated by dividing the mass of an object by its volume. Multiplying the density by the volume will give you the amount of mass in that volume.
The density of a material is determined by its mass and volume. Density is calculated by dividing the mass of an object by its volume. Materials with higher mass and lower volume will have higher density.
To calculate the mass and volume of gold, we need to know either the mass or the volume specifically. Given the density of 19.3 g/cm3, if you have the volume of gold, you can calculate the mass by multiplying the volume by the density. If you know the mass, you can calculate the volume by dividing the mass by the density.
The density is the ratio beween the mass and volume.
ANSWER:No. The mass will be halved but the density will remain the same. ___________________________________________________________The density will remain the same since the formula for density of an object is mass/volume. When you split and object, the mass is divided by 2, and the volume is divided by 2 (or whatever fraction you want to cut your item). If you would, compare mass/volume=mass divided by 2/volume divided by 2.
Every form of matter has mass, which is the amount of material in an object, and volume, which is the amount of space the object occupies.
Mass = Density x Volume Density = Mass/Volume Volume = Mass/Density
The answer is the VOLUME
The volume of graphite is dependent on its mass and density. You can calculate it only if you know the sample's mass and density. The same goes for any other substance or object.
Volume = mass / Density Mass = Volume * Density Density = Mass / Volume
"Practically not at all" is essentially the best answer. High mass/relatively low volume objects (like, say, planets) tend to be approximately spherical.
Density = Mass / Volume Rearranging this gives: Volume = Mass / Density Mass = Density × Volume
density = mass / volume Solving for mass: mass = density x volume Solving for volume: volume = mass / density
Air Mass
Density = mass/volume Mass = (density) x (volume) Volume = mass/density