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.
Density is equal to mass divided by volume (d= m/v). So m= 250 g and v = 125 cm cubed (cm3), there fore density is 2 g/cm3.
The density of the substance is 0.25 g/cm^3. This is calculated by dividing the mass (25 g) by the volume (100 cm^3).
Lead has a higher density compared to aluminum. So, to find the mass of lead that occupies the same volume as 100g of aluminum, you would first calculate the volume of the aluminum using its density. Then, you would find the mass of lead that occupies the same volume by using the density of lead.
Density = (mass) / (volume) = 27/10 = 2.7 gm/cm3 .
No, the piece of wood will not float. The density of the wood can be calculated by dividing its mass by its volume (2cm x 10cm x 5cm). If the density is greater than the density of water (1 g/cm3), the wood will sink.
density = mass/volume = 250g/45cm3 = 5.6g/cm3 (rounded to 2 sig figs)
Density is equal to mass divided by volume (d= m/v). So m= 250 g and v = 125 cm cubed (cm3), there fore density is 2 g/cm3.
The density of the substance is 0.25 g/cm^3. This is calculated by dividing the mass (25 g) by the volume (100 cm^3).
The mass and volume of aluminum are related by density: mass = volume x density and density depends upon temperature and pressure. Aluminum has a density of 2.70 grams per cubic centimeter in its solid state. In its liquid state, Aluminum has a density of 2.375 grams per cubic centimeter.
You need some aluminum, a scale to determine the mass, and a measuring cup halfway filled with water to determine the volume of the piece of aluminum by substracting the volume after and before you drop the piece of aluminum in the water. Then you can calculate the density of the aluminum = mass / volume.
To find the answer to 200g by 100cm³, you can interpret this as calculating the density. Density is defined as mass divided by volume. Therefore, 200g divided by 100cm³ equals 2g/cm³.
If you divide the mass by the volume, for any object, you get its density.
The number of milliliters in 250g depends on the density of the substance. For water, which has a density of 1g/mL, 250g is equal to 250mL. However, for other substances, you would need to know the density to convert grams to milliliters.
Density equals mass over volume (mass divided by volume), so you simply divide 34.6 g by 12.8 mL (you don't need to convert any units because the density unit is g/mL).
Lead has a higher density compared to aluminum. So, to find the mass of lead that occupies the same volume as 100g of aluminum, you would first calculate the volume of the aluminum using its density. Then, you would find the mass of lead that occupies the same volume by using the density of lead.
Since the density of aluminum is 2.7 g cm-3, a sample with a mass of 5.4 would have a volume of 2 cm3.
the mass is the 50 grams you probably need the volume volume = mass / density get the density from tables