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Worked Examples · Example 1.2

Q.How much positive and negative charge is there in a cup of water? (Assume the mass of one cup of water to be 250 g250\,\text{g}.)

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Counting the 1010 protons (and 1010 electrons) in every water molecule, a 250 g250\,\text{g} cup contains about 1.34×107 C1.34\times10^{7}\,\text{C} of positive charge and an equal magnitude of negative charge — they cancel, which is why water is neutral.

This question is about the charge that matter contains, not any net charge it carries. Every neutral molecule holds equal positive and negative charge; the task is to work out how large each of those is for a cup of water.

Step 1 — Number of moles.

The molar mass of water is M=2(1)+16=18 g/molM=2(1)+16=18\,\text{g/mol}, so

n=mM=25018=13.9 mol.n=\frac{m}{M}=\frac{250}{18}=13.9\,\text{mol}.

Step 2 — Number of molecules.

N=nNA=13.9×(6.022×1023)=8.36×1024 molecules.N=nN_A=13.9\times(6.022\times10^{23})=8.36\times10^{24}\ \text{molecules}.

Step 3 — Charges per molecule.

Each H2O\text{H}_2\text{O} has 22 hydrogen atoms (11 proton each) and 11 oxygen atom (88 protons), i.e. 1010 protons and, being neutral, 1010 electrons.

Step 4 — Total positive charge.

Total protons =10N=8.36×1025=10N=8.36\times10^{25}, so …

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