1. Concentration K⁺ = [K⁺] = 0.3 M
2. Ca²⁺concentration is half that of the Cl⁻ ion.
3. 45,838 grams of Na₃PO₄ will be needed
<h3><em>Further explanation</em></h3>
Stokiometry in Chemistry studies about chemical reactions mainly emphasizing quantitative, such as the calculation of volume, mass, amount, which is related to the number of ions, molecules, elements, etc.
Reaction equations are chemical formulas for reagents and product substances
Reaction coefficients are numbers in the chemical formula of substances involved in the reaction equation. Reaction coefficients are useful for balancing reagents and products.
The reaction coefficient shows the ratio of the number of moles or molecules of the reacting substance
The ionization reaction is the reaction of the decomposition of a substance into its ions when the substance is dissolved in water.
Molarity (M)
Molarity shows the number of moles of solute in every 1 liter of solution.
Where
M = Molarity
n = Number of moles of solute
V = volume of the solution
- 1. The decomposition / ionization reaction of K₂S is
K₂S(aq) ----> 2K⁺ (aq) + S²⁻ (aq)
Comparison of reaction coefficients = mole ratio = concentration ratio for the same volume, so
K₂S coefficient: coefficient 2K⁺ = 1: 2
[K⁺] = 2. [K₂S]
[K⁺] = 2. 0.15 M
[K⁺] = 0.3 M
- 2. The decomposition / ionization reaction of CaCl₂ is
CaCl₂ -> Ca²⁺ + 2Cl⁻
Same as the explanation in point 1:
coefficient Ca²⁺: coefficient Cl⁻= 1: 2
so that
[Ca²⁺] = 1/2 [Cl⁻]
[Ca²⁺] half of the concentration [Cl⁻]
- 3. Decomposition / ionization reactions from Na₃PO₄
Na₃PO₄ ---> 3Na + + PO₄³⁻
[Na₃PO₄] = 1/3. [Na +]
[Na₃PO₄] = 1/3. 1.3
[Na₃PO₄] = 0.43 M
then the number of moles is
mol = M. vol
mole = 0.43. 0.65 L
mole = 0.2795
So that its mass:
molar mass of Na₃PO₄ = 164 g / mol
mass = mole. molar mass
mass = 0.2795. 164
mass = 45,838 grams
<h3><em>Learn more</em></h3>
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sample of H₃PO₄ solution
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Keywords: ionization, molar mass, mole, mass, Na₃PO₄, K₂S, CaCl₂