The mass of a 1 cm piece of pine wood depends on the density of the pine wood. To calculate the mass, you would multiply the density of the pine wood by the volume of the 1 cm piece (which is 1 cm^3 for a cube). So, mass = density x volume.
The density of the silver piece can be calculated by using the formula: density = mass/volume. Plugging in the values given, density = 210g / 20.0 cm^3 = 10.5 g/cm^3. Thus, the density of the silver piece is 10.5 g/cm^3.
The density of the iron piece is calculated by dividing the mass by the volume. In this case, the density would be 2kg / 256 cm^3 = 0.0078 kg/cm^3.
Volume is typically measured in cubic units (such as cubic centimeters), not cm. To calculate volume given mass and density, you can use the formula: volume = mass / density. Make sure the units of mass and density are compatible for the calculation.
The density of the object is 6 g/cm³. Density = mass/volume, mass is 300 g, volume is length x width x height = 10 cm x 5 cm x 2 cm = 100 cm³. Density = 300 g / 100 cm³ = 3 g/cm³.
The density of the object is 10 g/cm³. It is calculated by dividing the mass (50g) by the volume (5 cm³).
The density of the silver piece can be calculated by using the formula: density = mass/volume. Plugging in the values given, density = 210g / 20.0 cm^3 = 10.5 g/cm^3. Thus, the density of the silver piece is 10.5 g/cm^3.
To find the mass of a 3 cm cube of pine, we first calculate its volume, which is (3 \text{ cm} \times 3 \text{ cm} \times 3 \text{ cm} = 27 \text{ cm}^3). Pine has an average density of about 0.5 to 0.6 grams per cubic centimeter. Therefore, the mass of the cube would be approximately 13.5 to 16.2 grams, depending on the specific density of the pine used.
To find the density of the piece of wood, use the formula: density = mass/volume. Given the mass is 20.0 grams and the volume is 30.4 cm³, the density would be 20.0 g / 30.4 cm³, which equals approximately 0.659 g/cm³. Thus, the density of the wood is about 0.659 g/cm³.
The density of the piece is 10.5 g/cm^3. This is calculated by dividing the mass (210 g) by the volume (20.0 cm^3). Density is a measure of how much mass is contained in a given volume.
The density of this piece of wood would be 456.7 g/cm^3.
The density of the iron piece is calculated by dividing the mass by the volume. In this case, the density would be 2kg / 256 cm^3 = 0.0078 kg/cm^3.
The density of a piece of granite with a volume of 340 cm and mass of 918 g would be 1,400 grams. This is a math problem.
To find the mass of the sodium chloride, you can use the formula: mass = density × volume. Given the density of sodium chloride is 2.16 g/cm³ and the volume is 4.00 cm³, the mass would be 2.16 g/cm³ × 4.00 cm³ = 8.64 grams. Therefore, the mass of the sodium chloride piece is 8.64 grams.
To find the density of the wood, you can use the formula: density = mass/volume. Here, the mass is 3.6 g and the volume is 6.0 cm³. Therefore, the density is 3.6 g / 6.0 cm³ = 0.6 g/cm³.
To find the density of the wood, use the formula density = mass/volume. The volume of the wood is 3.0 cm × 6.0 cm × 4.0 cm = 72.0 cm³. Therefore, the density is 80.0 grams / 72.0 cm³ ≈ 1.11 g/cm³. Since the density of the wood is greater than the density of water (1.0 g/cm³), the piece of wood would not float in water.
density = mass/volume,so the density of your metal is:25/10 = 2.5g/cm3 (grams per cm cubed)
To find the density of a piece of quartz with a mass of 13 grams and a volume of 6 cm³, you can use the formula for density: density = mass/volume. Plugging in the values gives you a density of 13 g / 6 cm³ = approximately 2.17 g/cm³. This density is consistent with quartz, which typically has a density ranging from about 2.6 to 2.7 g/cm³, suggesting that the piece may not be pure quartz or could have some voids or inclusions.