The mass of 1.0 liter of water is approximately 1000 grams or 1 kilogram.
One L of gold would have a mass approximately 19 times that of 1 L of water. This is because the density of gold is ~19 x that of water.
1.25 liters of water has a mass of 1.25 kilograms.
The density of water is 1000 kg/m3 1,000 kg/lThe density of ethanol 789 kg/m3 0,789 kg/lThe answer is 1 liter of water =)
The reduced mass of water is approximately 8.3 × 10^-27 kg. This value is calculated to account for the relative motion of the atoms in the water molecule which affects its overall mass.
The mass of 1.0 liter of water is approximately 1000 grams or 1 kilogram.
The mass of water that will occupy 1.5 L of volume is 1.5 kg. The density of water is 1 kg/L, so 1.5 L of water would have a mass of 1.5 kg.
27 grams.
One L of gold would have a mass approximately 19 times that of 1 L of water. This is because the density of gold is ~19 x that of water.
There are 1.5 moles of water molecules in a 27 gram sample of water. This is calculated by dividing the mass of the sample (27 grams) by the molar mass of water (18 grams/mol).
3000 g
1.25 liters of water has a mass of 1.25 kilograms.
To find the number of moles of water molecules in a 27 gram sample, you need to divide the mass by the molar mass of water (18.015 g/mol). 27 g / 18.015 g/mol = approximately 1.5 moles of water molecules.
The density of water is 1000 kg/m3 1,000 kg/lThe density of ethanol 789 kg/m3 0,789 kg/lThe answer is 1 liter of water =)
1 litre of water. density of water is 1kg/L
The reduced mass of water is approximately 8.3 × 10^-27 kg. This value is calculated to account for the relative motion of the atoms in the water molecule which affects its overall mass.
The mass of 1 L of water is approximately 1 kg. The weight of an object can be calculated using the formula Weight = mass x acceleration due to gravity. For water, the weight of 1 kg is approximately 9.8 N.