Exactly the same.
The density of each piece remains the same as the density of the original gold bar. Density is a characteristic property of a material and does not change with size or shape. Thus, each new piece will have the same density as the original gold bar.
When you compare density, you compare the weight of the materials with equal volume. So you cannot compare the density only by weight. The right answer for this is, Platinum has the density of 19.8 gr/cubic centimeters at room temperature versus Golds 19.3 gr/cm3.
The conversion of grams to milliliters depends on the substance's density. For water, 1 milliliter is equal to 1 gram. However, for other substances, you would need to know the density to convert grams to milliliters accurately.
To determine which liquid has greater density, you would need to compare their masses. Density is calculated by dividing an object's mass by its volume. By measuring the mass of both liquids and knowing their volumes (which are equal in this case), you can calculate their densities and determine which one is greater.
If a substance has a density of 1.0 g/cm3, it would have the same density as water. This means that the substance would neither sink nor float in water, as it would be neutrally buoyant.
The density of each piece remains the same as the density of the original gold bar. Density is a characteristic property of a material and does not change with size or shape. Thus, each new piece will have the same density as the original gold bar.
equal the density of any other piece, assuming that the original cube was made of the same uniform substance.
The density of each piece remains the same as that of the original brick of pure silver. This is because density is defined as mass per unit volume, and since the mass and volume of each piece are both reduced proportionally, the density does not change. Thus, each piece maintains the same density as the original brick.
An object floats on a fluid when its density is less than the density of the fluid. This is due to buoyancy, the upward force exerted by a fluid on an object. If the object's density is equal to or greater than the fluid's density, it will sink.
When you compare density, you compare the weight of the materials with equal volume. So you cannot compare the density only by weight. The right answer for this is, Platinum has the density of 19.8 gr/cubic centimeters at room temperature versus Golds 19.3 gr/cm3.
This scenario demonstrates the conservation of mass. Weathering breaks down the rock into smaller pieces, but the total mass of the smaller pieces remains equal to the original rock.
To find the relative density of a liquid, you need to compare its density to the density of water. The formula for relative density is the density of the liquid divided by the density of water at a specific temperature. By measuring the mass of a given volume of the liquid and comparing it to the mass of an equal volume of water, you can calculate the relative density.
No, it depends on the specific gravity (or relative density) of the substance. E. g. Compare the weighs of 1 cubic metres of cork and iron.
Here are two alternative explanations. 1) Because each piece is made up of the same material as the original piece. Density is a characteristic property of a material. 2) Because density is defined as mass / volume, and if you divide something into two equal pieces, you will get 1/2 the mass for each piece, but also 1/2 the volume.
Compare its weight to the weight of an equal volume of water. The weight of the specimen divided by the weight of the water equals the density of the specimen.
No, it does not matter to have equal volume when comparing density. Density is an intrinsic property of a substance and is defined as mass per unit volume. Comparing densities is independent of the volume of the samples being compared.
One third is a lot bigger than one eighth. Imagine you have two pieces of string that are exactly the same length. You cut one into three equal pieces. Each piece is one third of the original string. Say you take the other sting and cut into eight equal pieces. Each of those pieces is one eighth... and they are much smaller because there are so many more of them.