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The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.
well you have to think you would weigh this using grams so the density of a foam block is "Grams per cubic centimeters"
You cant. Grams is a measurement of weight and inches is a measurement of length. If you measure the mass of whatever your material is then express its weight in grams. The best you could do is calculate the space that it occupies in cubic millimeters or centimeters. Then you could express that in inches in theory.
180 grams / 30 cm3 = 6 g/cm3.
The volume of the little cube is 23 = 8 cubic inches so the density of the material is 8/20 = 0.4 grams per cubic inch.The volume of the large cube is 83 = 512 cubic inches, so the mass (not the weight) is 512*0.4 = 128 grams.
The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.The density of the material is 20g/125 cubic metres = 0.00000016 grams per cubic centimetre.Volume is measured in cubic units of length and so it has been assumed that "125 cm" refers to 125 cubic metres.
They you are the proud owner of a block of metal with a volume of 56 cubic centimetres and a mass of 153 grams. Enjoy!
The volume is 5.0*10.0*5.0 = 250.0 cubic units. The mass of the block is irrelevant.
well you have to think you would weigh this using grams so the density of a foam block is "Grams per cubic centimeters"
You cant. Grams is a measurement of weight and inches is a measurement of length. If you measure the mass of whatever your material is then express its weight in grams. The best you could do is calculate the space that it occupies in cubic millimeters or centimeters. Then you could express that in inches in theory.
A standard building block typically weighs around 200-300 grams depending on its size and material.
1.78 grams per cubic centimeter is equal to a density of 1.78 g/cm³.
The density of an aluminum block typically ranges from 2.63 to 2.70 grams per cubic centimeter.
It depends on the material of the powder.
The density of the block of wood is 0.75 g/cm³. Density is calculated by dividing mass by volume. In this case, 30 grams divided by 40 cubic cm equals 0.75 g/cm³.
180 grams / 30 cm3 = 6 g/cm3.
The volume of the little cube is 23 = 8 cubic inches so the density of the material is 8/20 = 0.4 grams per cubic inch.The volume of the large cube is 83 = 512 cubic inches, so the mass (not the weight) is 512*0.4 = 128 grams.