The chemical formula for sucrose is C12H22O11. So the mass of one molecule of the substance in grams will be 11.79 X 10-23 g. The molar mass of a molecule is the mass of 6.023 X 10 23 molecules of that substance. This was calculated by multiplying the atomic weight of hydrogen (1.008) by two and adding the result to the weight for one … When calculating molecular weight of a chemical compound, it tells us how many grams are in one mole of that substance. Thus . 1 mol = approximately 6.022*10^23 Question 1: If you don't remember that, you can also look it up on Wikipedia, or refer to a periodic table and add up the molar masses of two hydrogen atoms and one … molecular mass = (1 x 14.0067) + (3 x 1.00794) molecular mass = 14.0067 + 3.02382 molecular mass = 17.0305 Note the calculator will give an answer of 17.03052, but the reported answer contains fewer significant figures because there are six significant digits in the atomic mass values used in the … mass of 6.023 X 10 23 molecules of the substance = 11.79 X 10-23 X 6.023 X 10 23 = 71.011 g . 1 molecule of a substance weigh = 4.65 X 10-23. We know that there are two hydrogen atoms and one oxygen atom for every H 2 0 molecule. One mol of water thus has a mass of approximately 18 grams The mass of of 3.01 x 10^23 molecules of water is: (3.01 x 10^23/mol) times the mass of one mol of water = (3.01 x 10^23/mol) 18 grams. These relative atomic masses were based on the stoichiometric proportions of chemical … From Avogadro's constant, the mass of one molecule … What is the mass of one molecule of H2O? In most cases molecular mass is a baseline average; the weight of any one molecule may be slightly different than another because of isotopes.Isotopes are variations of elements and have a nucleus with the same number of protons but a different number of neutrons, giving them a different … Now, what is 3.01 x 10^23 divided by 1 mol? The molar mass of the substance is 71.011 g. You can determine that by using the molar mass in "g/mol" of the water molecule and converting so that you get the absolute mass in "g". water is H2O. The history of the mole is intertwined with that of molecular mass, atomic mass units, and the Avogadro number.. This gives a molar mass of 342.296 grams per mole. Finding molar mass starts with units of grams per mole (g/mol). A) Since mass percent is given it is convenient to use 100 g of the compound as starting material containing 26.7 g of phosphate, 12.1 g of nitrogen and 61.2 g of chlorine. 1 mol of oxygen atoms has a mass of 16 grams. The formula weight is simply the weight in atomic mass units of all the atoms in a given formula. Step #1 - the molar mass of water is 18.015 g/mol. The first table of standard atomic weight (atomic mass) was published by John Dalton (1766–1844) in 1805, based on a system in which the relative atomic mass of hydrogen was defined as 1. So molecular mass is also 28 g. 6.02 X 10 23 molecules weigh = 4.65 X10-23 X 6.02 X 10 23 = 28 g (Molar mass of a substance is a mass of 6.023 X10 23 molecules).. The molar mass is "MM"_("H"_2"O")" = 18.015 g/mol". To find the mass of 1.00×10 24 (a septillion) molecules of water, first we have to find the mass of one molecule of water (H 2 O). 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