Density = Mass/Volume = 600/30 = 20 grams per ml.
The volume of water can be calculated using its density, which is approximately 1 gram per milliliter (g/mL) at room temperature. Therefore, 600 grams of water would have a volume of about 600 milliliters (mL). Since 1 liter equals 1,000 mL, this is equivalent to 0.6 liters.
To calculate the mass of a 600 ml sample of seawater, you need to know the density. If the density of seawater is approximately 1.025 g/ml, the mass can be calculated using the formula: mass = density × volume. Therefore, the mass of the seawater would be approximately 600 ml × 1.025 g/ml = 615 grams.
To calculate the volume of a 2% Clindamycin solution, we need to know the density of the powder. Different formulations of Clindamycin powder may have different densities. Once we have the density, we can divide the mass of the powder (12 g) by the density to obtain the volume of the solution. The equation is: Volume (mL) = Mass (g) / Density (g/mL).
Volume = length * width * height Mass = volume * density Take the density of iron (about 7.9 g / cm^3) from Wikipedia and plug all the values in Google, and you will end up with a mass of about 600 kg (1300 lbs).
(1:600) x 70 = 0.1166666666666667 grams.
The volume of water can be calculated using its density, which is approximately 1 gram per milliliter (g/mL) at room temperature. Therefore, 600 grams of water would have a volume of about 600 milliliters (mL). Since 1 liter equals 1,000 mL, this is equivalent to 0.6 liters.
density = mass ÷ volume = 600 g ÷ 30 cm3 = 20 g/cm3
Well, sweetheart, to find the volume of that rock, you divide the mass by the density. So, 600 g divided by 3.00 g/cm3 gives you a volume of 200 cm3. Voila, you've got your answer!
The density of the liquid sample is 0.75 g/mL. Density is calculated by dividing the mass of the liquid sample by its volume: density = mass/volume. Given that the mass is 450 g and the volume is 600 mL, the density is 450 g / 600 mL = 0.75 g/mL.
To calculate the density of the bowling ball, use the formula: density = mass/volume. The mass is 3.0 kg and the volume is 0.0050 m³. Thus, the density is 3.0 kg / 0.0050 m³ = 600 kg/m³. Therefore, the density of the bowling ball is 600 kg/m³.
0.5
The conversion from milliliters to grams depends on the substance and its density. For water, 600 milliliters is equal to 600 grams since the density of water is 1 gram per milliliter. If the substance is different, you would need to know its density to make the conversion.
Because density is d=G/V: 450/600=0,75 g/mL.
600 grams is 0.6 kilograms.
600 milliliters of water is equivalent to 0.6 liters or approximately 20.29 fluid ounces. In terms of weight, 600 ml of water weighs approximately 600 grams, as the density of water is 1 gram per milliliter. This volume of water is commonly used in recipes, scientific experiments, and everyday measurements due to its convenient metric value.
Considering the average density of uranium (19.05 g/cm^3), a 600 kg ball of uranium would have a volume of approximately 31,450 cm^3. This would be roughly equivalent to a sphere with a diameter of around 22 cm (8.7 inches).
To calculate the volume of a 2% Clindamycin solution, we need to know the density of the powder. Different formulations of Clindamycin powder may have different densities. Once we have the density, we can divide the mass of the powder (12 g) by the density to obtain the volume of the solution. The equation is: Volume (mL) = Mass (g) / Density (g/mL).