The density of the substance can be calculated by dividing the mass (31 g) by the volume (68 cm3). So, density = mass/volume = 31 g / 68 cm3 โ 0.46 g/cm3.
An object with a mass of 579 g and volume of 30 cm3 will have a density of 19.3 g/cm3.
The density is calculated by dividing the mass of an object by its volume. In this case, the density is 11.29 g/cm3 (79 g รท 7 cm3 = 11.29 g/cm3).
The mass of 50 cm3 of water is 50 grams. This is because water has a density of 1 g/cm3, so for every 1 cm3 of water, the mass is 1 gram.
To find the mass of lead in grams, you would need to know the density of lead. The formula to calculate mass is mass = density x volume. The density of lead is approximately 11.3 g/cm3. Once you have the density value, you can input 140.0 cm3 into the formula to find the mass in grams.
No. It cannot be. Mass cannot be measured in cm3, which is a measure of volume.
It is dependent of the density of material which you are trying to determine. If for example you had water then 375 milligrams woul be equal to 375 millilitres. density = mass/volume so:- density x volume = mass thus:- volume = mass/density be sure to have all your number in standard units though i.e volume in cm3 density in gcm-3 and mass in g
The density of the substance can be calculated by dividing the mass (31 g) by the volume (68 cm3). So, density = mass/volume = 31 g / 68 cm3 โ 0.46 g/cm3.
To find the density, divide the mass (53.5 g) by the volume (89.1 cm3). Density = mass / volume Density = 53.5 g / 89.1 cm3 = 0.601 g/cm3
density = mass ÷ volume= 20 g ÷ 12 cm3≈ 1.67 g/cm3
The density of the mass is 48 g/cm3
The mass of 1 cm3 of water is approximately 1 gram.
density = mass ÷ volume = 4 g ÷ 6 cm3 = 2/3 g/cm3
The density of aluminum is 2.70 g/cm3. To find the density of 100 cm3 of aluminum with a mass of 250g, divide the mass by the volume: 250g / 100 cm3 = 2.50 g/cm3. The density of the aluminum sample is 2.50 g/cm3.
An object with a mass of 579 g and volume of 30 cm3 will have a density of 19.3 g/cm3.
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The density of this copper mass is about 8.93 g/cm3