Iron is generally more elastic than lead, meaning it can return to its original shape after being deformed, while lead is more malleable and tends to deform permanently under stress. In terms of density, lead is significantly denser than iron, making it heavier for the same volume. This high density contributes to lead's use in applications requiring weight, such as radiation shielding. Overall, the differences in elasticity and density highlight the distinct physical properties and applications of these two metals.
Iron is heavier than lead. The density of iron is around 7.86 g/cm³, while the density of lead is around 11.34 g/cm³, making lead less dense and thus lighter than iron.
Any amount of lead has the same density as one cubic centimeter of lead, but no amount of lead has the same density as any amount of iron.
To determine if a cannonball is made of lead or iron, you can perform a simple density test. Lead is denser than iron, so a lead cannonball will feel heavier for its size compared to an iron cannonball. You can also use a magnet – iron is magnetic, so an iron cannonball will be attracted to a magnet while a lead cannonball will not be.
Lead is heavier, but iron is stronger.
Lead sinks in water because the density of lead is greater than the density of water.The displacement of water needs to be equal to the weight of the object for it to float. Lead sinks because the displacement of lead is greater than the displacement of water.
Lead is denser than iron. Lead has a density of 11.34 g/cm^3, while iron has a density of 7.87 g/cm^3.
Iron is heavier than lead. The density of iron is around 7.86 g/cm³, while the density of lead is around 11.34 g/cm³, making lead less dense and thus lighter than iron.
Any amount of lead has the same density as one cubic centimeter of lead, but no amount of lead has the same density as any amount of iron.
Platinum has the highest density among gold, platinum, iron, and lead. Platinum has a density of 21.45 grams per cubic centimeter, while gold has a density of 19.32 grams per cubic centimeter, iron has a density of 7.87 grams per cubic centimeter, and lead has a density of 11.34 grams per cubic centimeter.
Iron is more dense than lead because the atoms in iron are more closely packed together than in lead. This is due to differences in the atomic size and atomic structure of iron and lead. denser materials have more mass per unit volume.
To determine if a cannonball is made of lead or iron, you can perform a simple density test. Lead is denser than iron, so a lead cannonball will feel heavier for its size compared to an iron cannonball. You can also use a magnet – iron is magnetic, so an iron cannonball will be attracted to a magnet while a lead cannonball will not be.
lead is more dense
Density is a weight per unit volume calculation. There could be different alloys or casting methods with subtle differences in density, or temperature variations in expansion and density. However: Every cubic centimeter of lead weighs 11.34 grams. Every cubic centimeter of iron weighs 7.86 grams. Thus, the density of lead (11.34 g/cc) is greater than iron (7.86 g/cc). This is independent of the actual weight and volume of the sample.
Lead is the least bouncy material due to its high density and lack of elasticity. When dropped, lead objects usually exhibit minimal bounce compared to other materials like rubber or plastic.
Yes, aluminum is approximately 2.7 times more dense than water
No, alveolar elasticity would not directly lead to laryngitis or influenza.
Interesting question. the density of lead is 11.34 grams per milliliter. Density = grams/milliliters so, 11.34g/ml = 129.96g/ml 11.34(ml) = 129.96 ml = 11.46 milliliters so at least that many milliliter volume of iron to balance the lead.