12 moles
Sodium phosphate is the name, but it is NOT an acid, rather a base!
soluble
The products of the dehydration reaction between Na3PO4 and 12 H2O would be NaPO3 and 11 H2O molecules. Water (H2O) will be eliminated as a byproduct, leaving behind the dehydrated form of sodium phosphate, NaPO3.
The chemical formula for trisodium phosphate is Na3PO4.
1349 miles by car
Mixing NaOH and Na3PO4 will yield Na2HPO4 (sodium hydrogen phosphate) and Na3PO4 (trisodium phosphate) as products.
The dissolution reaction for Na3PO4 in water can be written as: Na3PO4(s) -> 3Na+(aq) + PO4^(3-)(aq)
There are 0.75 moles of sodium ions present in 2.50 L of 0.300 M Na3PO4. Each formula unit of Na3PO4 has 3 sodium ions. So, for every mole of Na3PO4, there are 3 moles of sodium ions. Calculating the moles of sodium ions: 2.5 L * 0.300 mol/L * 3 mol Na+ / 1 mol Na3PO4 = 0.75 moles of Na+.
In 1349, there were no cures for the plague.
A Suitable Boy has 1349 pages.
The symbol for Sodium Phosphate is Na3PO4.
No, 1348 was the closest year of the rat. 1349 was the year of the ox.
Yes, 1349 is a prime number. It can only be divided by one and itself.
There was very high mortality with the bubonic plague during 1348-1349. Never the less many patients did survive the deadly disease.
Sodium phosphate (Na3PO4).
The net ionic equation for Na3PO4 is 3Na+ + PO4^3- -> Na3PO4. This equation shows that the sodium ion (Na+) and phosphate ion (PO4^3-) combine to form sodium phosphate (Na3PO4) without any spectator ions.