density = mass ÷ volume = 30 g ÷ 10 cm3 = 3 g/cm3
Pyrite has a density of 4.8-5g/cm3 mass = density x volume = (4.8-5)g/cm3 x 10 cm3 = 48 to 50 grams.
It is a volume equivalent to 10 cubic centimetres!
m = mass rho = density V = volume rho = m/V m = rho * V = (15 g/cm^3) * (10 cm^3) = 150 g
No. It cannot be. Mass cannot be measured in cm3, which is a measure of volume.
density = mass ÷ volume = 30 g ÷ 10 cm3 = 3 g/cm3
3 g/10 cm3 = 0.3 g/cm3 and this is the density, since density is expressed as mass/volume.
The density of the object is 10 g/cm3. Density is calculated by dividing the mass of an object by its volume. In this case, 50g / 5 cm3 = 10 g/cm3.
There is not much to calculate here - 4 cm3 is the volume. The mass is irrelevant for this problem.There is not much to calculate here - 4 cm3 is the volume. The mass is irrelevant for this problem.There is not much to calculate here - 4 cm3 is the volume. The mass is irrelevant for this problem.There is not much to calculate here - 4 cm3 is the volume. The mass is irrelevant for this problem.
The density of the object is calculated by dividing its mass by its volume. In this case, the density would be 3 grams per cubic centimeter (30 grams / 10 cm3 = 3 g/cm3). Density is a measure of how much mass is contained in a given volume, so a higher density means more mass is packed into the same volume.
Pyrite has a density of 4.8-5g/cm3 mass = density x volume = (4.8-5)g/cm3 x 10 cm3 = 48 to 50 grams.
The mass of the object can be calculated using the formula: mass = density x volume. Plugging in the values, we have mass = 19.3 g/cm3 x 10 cm3 = 193 g. Therefore, the mass of the object is 193 grams.
Density is calculated by dividing the mass of a substance by its volume. In this case, the density would be 10 grams divided by 2 cm3, which equals 5 grams per cubic centimeter (g/cm3). Density is a measure of how much mass is contained in a given volume of a substance, and it is often used to identify and characterize materials based on their physical properties.
The density of the object is 3 grams per cm3. This is calculated by dividing the mass (30 grams) by the volume (10 cm3).
It is a volume equivalent to 10 cubic centimetres!
The 10 cm3 of aluminum would have a higher density compared to the 5 cm3 of aluminum. Density is a physical property defined as mass per unit volume, so in this case, the larger volume (10 cm3) would contain more mass, resulting in a higher density compared to the smaller volume (5 cm3).
It's (the total mass of the liquid, in grams)/10 grams per cm3