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.
Calculate the volume of 66.7 g of cobalt using its density: Volume = Mass / Density = 66.7 g / 8.90 g/cm³ = 7.48 cm³. Use the volume to find the mass of aluminum it would occupy: Mass = Volume x Density = 7.48 cm³ x 2.71 g/cm³ ≈ 20.3 g of aluminum.
To find the volume of 8.1 g of aluminum, you can rearrange the density formula (Density = Mass/Volume) to Volume = Mass/Density. So for 8.1 g of aluminum and a density of 2.7 g/ml, the volume would be 8.1 g / 2.7 g/ml = 3 ml.
First, calculate the volume of aluminum used: volume = thickness * area = 0.550 mm * 1.00 cm^2 = 0.550 mm * 1.00 cm = 0.550 cm^3. Next, convert volume to mass using density: mass = volume * density = 0.550 cm^3 * 2.699 g/cm^3 = 1.48295 g. Finally, convert mass to moles of aluminum and then calculate the number of moles of aluminum based on the molar mass and determine the length of aluminum used in miles using the Avogadro's number.
To find the volume of 54 grams of aluminum with a density of 2.7 g/cm3, divide the mass by the density: 54 grams / 2.7 g/cm3 = 20 cm3. Therefore, the volume of 54 grams of aluminum is 20 cubic centimeters.
To find the average density of the can and its contentsWeigh the can of soda pop (mass) and then divide by the number of cubic centimeters in the can (volume). Density = mass/volume.To find the density of the aluminum canEmpty the can completely, weigh it, then place it in a filled liquid container to determine the volume of the aluminum. Divide as above to find the density of the aluminum (should be approximately 2.7 grams per cubic centimeter).
To find the volume of the mass, you can use the formula: volume = mass/density. Given the mass is 540 g and the density is 2.7 g/cm³, the volume would be calculated as follows: volume = 540 g / 2.7 g/cm³ = 200 cm³. Therefore, the volume of the 540 g mass is 200 cm³.
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.
27.3 g is the mass of an aluminum sample with a volume of 10.0 cm3.
If you divide the mass by the volume, for any object, you get its density.
You need at least 1000,000 cubic centimeters to make 540 800 soda cans.
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.
The given data (mass and volume) corresponds to aluminum, as the density of aluminum is approximately 2.7 g/ml, which results in a mass of 75g for a volume of 3.8 ml. Gold, iron, and plutonium have much higher densities compared to aluminum, so they would not have the same mass and volume measurements.
the mass is the 50 grams you probably need the volume volume = mass / density get the density from tables
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.
Aluminum has a specific gravity of 2.7, therefore its mass is 2.7 times the mass of an identical volume of water. 12.2 cm3 of water has a mass of 12.2 grams, so 12.2 cm3 of aluminum has a mass of 32.94 grams (2.7 x 12.2 grams).
1.0 gram of steel has a greater volume than 1.0 gram of aluminum. This is because steel has a higher density than aluminum, meaning it has more mass packed into a smaller volume.
The density of aluminum is approximately 2.7 g/cm^3. To calculate the density of an aluminum cylinder, you would need to know its mass and volume, and then divide the mass by the volume to get the density.