The metal with a density of approximately 5.5 g/cm³ is typically manganese. Manganese is a transition metal known for its strength and utility in steel production, where it enhances hardness and brittleness. Its density can vary slightly depending on its allotrope and purity.
Density = Mass/Volume = 13.6 g/cm3
Density is mass divided by volume. D = (750g/55cm3) D = 13.63636 g/cm3
It depends on the density of the metal.
Different metals have different densities, so to find the density either the type of metal or both the size and mass of the cube must be provided. Density is mass divided by volume.
The metal with a density of approximately 1.36 g/cm³ is often associated with lithium, which has a density of around 0.534 g/cm³. However, if you are referring to a specific alloy or compound, please provide more context, as pure metals typically do not have such a density. It's important to clarify the specific material or context to give an accurate answer.
Density = Mass/Volume = 13.6 g/cm3
Density is mass divided by volume. D = (750g/55cm3) D = 13.63636 g/cm3
Low Density a Metal?NO!!!!
Every metal has a density.
The density of the metal in the crushed can remains the same as the density of the metal before it was crushed. Density is an intrinsic property of a material that does not change with physical alterations like crushing. So, the density of the metal in the can will not change due to the crushing process.
If three fifths of the 55 tennis rackets in stock are metal, then 33 of the 55 tennis rackets are metal. 3/5 * 55 = 33.
If you cut a metal in half, each half will have the same density as the original metal, so the density of each half will still be 8.4. The density of a material does not change when you cut it into pieces.
The density of the metal will remain the same. However because the volume of the object has been reduced the overall density will increase
The density of the metal in a crushed can remains the same as the density of the metal before the can was crushed. The mass of the metal remains constant; only its shape changes when the can is crushed.
how would density of a metal be affected if it were wet
The specific gravity of a substance is the ratio of its density to the density of water. Given that the specific gravity of the wood is 55, we can calculate its density by multiplying the specific gravity by the density of water. Therefore, the density of the wood is 55 x 62.5 = 3437.5.
The density of the metal in a crushed can remains the same as the density of the metal before the can was crushed. While the volume of the can decreases when it is crushed, the mass of the metal remains constant. Therefore, the density, which is mass divided by volume, remains unchanged.