DATARTTT 2. You dissolve 290 grams of K₂SO4 into 900 ml of water. Calculate the formula mass of K₂SO4 Calculate the moles of K₂SO4 Calculate the volume of water in liters. .Write the balanced dissociation equation • Calculate the molarity of K₂SO4 in the solution. Calculate the molarity of the K* and SOA in the solution. Formula Mass of K₂SO4 = Moles K₂SO4 = Volume (1) = Dissociation Equation [K₂SO4] = [K"]= [SO4²] = Answer 174 g/mol 1.67 mol 0.9 L 1.86 M 3.72 M 1.86 M VEWORKSHEETS Your calculations & equations 290 g/ 174 g/mol = 1.67 mol K2SO4(aq)-> 2K+(aq) + SO42-(aq)

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IN
LAADITTAT
2. You dissolve 290 grams of K₂SO4 into 900 ml of water.
Calculate the formula mass of K₂SO4
Calculate the moles of K₂SO4
Calculate the volume of water in liters.
.Write the balanced dissociation equation
• Calculate the molarity of K₂SO4 in the solution.
Calculate the molarity of the K and SO² in the solution.
Formula Mass of
K₂SO4 =
Moles K₂SO4 =
Volume (1) =
Dissociation Equation
[K₂SO4] =
[K*] =
[SO4²] =
Answer
174 g/mol
1.67 mol
0.9 L
1.86 M
3.72 M
1.86 M
BLIVEWORKSHEETS
Your calculations & equations
290 g/ 174 g/mol = 1.67 mol
K2SO4(aq)-> 2K+(aq) + SO42-(aq)
Transcribed Image Text:IN LAADITTAT 2. You dissolve 290 grams of K₂SO4 into 900 ml of water. Calculate the formula mass of K₂SO4 Calculate the moles of K₂SO4 Calculate the volume of water in liters. .Write the balanced dissociation equation • Calculate the molarity of K₂SO4 in the solution. Calculate the molarity of the K and SO² in the solution. Formula Mass of K₂SO4 = Moles K₂SO4 = Volume (1) = Dissociation Equation [K₂SO4] = [K*] = [SO4²] = Answer 174 g/mol 1.67 mol 0.9 L 1.86 M 3.72 M 1.86 M BLIVEWORKSHEETS Your calculations & equations 290 g/ 174 g/mol = 1.67 mol K2SO4(aq)-> 2K+(aq) + SO42-(aq)
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