Dimensional analysis simply refers to the inclusion of units in an equation. After setting up the solution map, dimensional analysis can be used to set up the conversion factors that lead to the desired values vithin this map. The correct setup of an equation can be verified by checking if the result will only have the desired units after unit cancellation. Bas (PO4)2 (aq) + 3N22SO4 (aq) → 3BaSO4(s) + 2NagPO4(aq) For the described reaction, you have a 0.200 L solution of 0.660 M Ba3 (PO4)2(aq). Using the solution map from Part A as a guide, complete the following dimensional analysis that allows you to calcula he moles of BaSO, (s) that can be formed by placing the values of each conversion factor according to whether they should appear in the numerator or denominator. Drag the appropriate values to their respective targets. View Available Hint(s) Reset Help 0.396 mol BaS0,(s) 1 mol Ba3(PO4)2(aq) 0.101 mol BaS0,(s) 0.044 mol BaS0,(s) 3 mol BaSO4(s) 0.660 mol Baş (PO,)2 (aq) 0.909 mol BaSO4(s) 0.200 L solution 1L solution

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Dimensional analysis simply refers to the inclusion of units in an equation. After setting up the solution map, dimensional analysis can be used to set up the conversion factors that lead to the desired values
vithin this map. The correct setup of an equation can be verified by checking if the result will only have the desired units after unit cancellation.
Ba3 (PO4)2 (aq) + 3Na2SO4 (aq) –→ 3BASO4 (s) + 2NA3PO4(aq)
For the described reaction, you have a 0.200 L solution of 0.660 M Ba3(PO4)2(aq). Using the solution map from Part A as a guide, complete the following dimensional analysis that allows you to calculate
he moles of BaSO4 (s) that can be formed by placing the values of each conversion factor according to whether they should appear in the numerator or denominator.
Drag the appropriate values to their respective targets.
• View Available Hint(s)
Reset
Help
0.396 mol BaSO<(s)
1 mol Ba3 (PO4)2(aq)
0.101 mol BaS04(s)
0.044 mol BaS04(s)
3 mol BaSO4(s)
0.660 mol
0.909 mol BaSO4(s)
0.200 L solution
1L solution
Baz (PO4)2 (aq)
Group 1
Group 2
Group 1
Group 2
Group 1
Group 2
II
Transcribed Image Text:Dimensional analysis simply refers to the inclusion of units in an equation. After setting up the solution map, dimensional analysis can be used to set up the conversion factors that lead to the desired values vithin this map. The correct setup of an equation can be verified by checking if the result will only have the desired units after unit cancellation. Ba3 (PO4)2 (aq) + 3Na2SO4 (aq) –→ 3BASO4 (s) + 2NA3PO4(aq) For the described reaction, you have a 0.200 L solution of 0.660 M Ba3(PO4)2(aq). Using the solution map from Part A as a guide, complete the following dimensional analysis that allows you to calculate he moles of BaSO4 (s) that can be formed by placing the values of each conversion factor according to whether they should appear in the numerator or denominator. Drag the appropriate values to their respective targets. • View Available Hint(s) Reset Help 0.396 mol BaSO<(s) 1 mol Ba3 (PO4)2(aq) 0.101 mol BaS04(s) 0.044 mol BaS04(s) 3 mol BaSO4(s) 0.660 mol 0.909 mol BaSO4(s) 0.200 L solution 1L solution Baz (PO4)2 (aq) Group 1 Group 2 Group 1 Group 2 Group 1 Group 2 II
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