divide this number by avagadros number to get moles.
(5.16x1024)/(6.02x1023)=8.57mol of H2O
as there are 3 atoms in each molecule there are 3x8.57=25.7 moles of atoms.
To find the number of molecules in 100 grams of water (H₂O), first calculate the number of moles. The molar mass of water is approximately 18 g/mol, so 100 g of water is about 5.56 moles (100 g ÷ 18 g/mol). Since one mole contains Avogadro's number of molecules (approximately (6.022 \times 10^{23})), the total number of molecules in 100 g of H₂O is approximately (3.34 \times 10^{24}) molecules (5.56 moles × (6.022 \times 10^{23}) molecules/mole).
follow the avagardo number here, 2.60x10^23 molecules of H2O X 1mole ------- 6.02x10^23 molecule of H2O ( molecule of H2O cancel and just remain with mole ) so, 2.60x10^23 ----------------- moles 6.02x10^23 your final product wii be 0.43 mole of H20 source me rata mokai
In a dozen molecules of H2O, there are 24 atoms of hydrogen because each H2O molecule contains two hydrogen atoms.
2 H2O is the chemical formula of two molecules of water, not a reaction.
No, photosynthesis is the absorbtion of CO2, H20 and UV light in order to produce O2 and sugar molecules.
45 grams H20 x (1 mole H20/18 grams H2O) x (6.02E23 molecules H20/1 mole H2O) the grams H2O and moles H2O cancel out. When you punch it into your calculator, the answer comes out to: =1.505E24 molecules H2O
A mole of any substance is 6.02214179×1023 (just use 6.022) molecules of it. So 1.23 moles of any substance (including water) is 1.23 x 6.022 x 1023 molecules, whatever that is...
Each mole of a substance contains 6.022 E23 molecules or atoms of that substance. Four moles of H2O will contain 2.4088 E24 molecules.
To determine the number of molecules in 6.9 g of water (H2O), you first need to convert grams to moles. The molar mass of water is approximately 18 g/mol. Therefore, 6.9 g is equal to 6.9/18 = 0.383 moles of water. Next, you can use Avogadro's number (6.022 x 10^23) to find the number of molecules in 0.383 moles of water, which is approximately 2.3 x 10^23 molecules.
Yes, H2O and Ozone both are molecules. H20 is water.
4 moles of oxygen atoms are present in 4 moles of H2O
To find the number of molecules in 100 grams of water (H₂O), first calculate the number of moles. The molar mass of water is approximately 18 g/mol, so 100 g of water is about 5.56 moles (100 g ÷ 18 g/mol). Since one mole contains Avogadro's number of molecules (approximately (6.022 \times 10^{23})), the total number of molecules in 100 g of H₂O is approximately (3.34 \times 10^{24}) molecules (5.56 moles × (6.022 \times 10^{23}) molecules/mole).
2.60x10^23 water molecules contain 2.60x10^23 molecules of water.
Water has a molecuar mass of 18. This means it weights 18g per a mole. The molecular formula for water is H20. Your answer for how many moles in 1000 grams of water is 55.5084351.
it would be 2 L not 2 Kg
Since the molar mass (grams per mole) of H2O is 18.02, the grams of H2O in 4 moles is 72.08g.
follow the avagardo number here, 2.60x10^23 molecules of H2O X 1mole ------- 6.02x10^23 molecule of H2O ( molecule of H2O cancel and just remain with mole ) so, 2.60x10^23 ----------------- moles 6.02x10^23 your final product wii be 0.43 mole of H20 source me rata mokai