Complete the concentration calculations. Show your calculations (as best as possible) in the column Your calculations & equations. Type your final answer for each part in the Answer column. 1. You dissolve 120 grams of NaHCO3 into 200 ml of water. Calculate the formula mass of NaHCO, Calculate the moles of NaHCO3 Calculate the volume of water in liters. .Write the balanced dissociation equation • Calculate the molarity of NaHCO3 in the solution. • Calculate the molarity of the Na* and HCO, in the solution. Formula Mass of NaHCO3 = Moles NaHCO3 = Volume (1)= Dissociation Equation [NaHCO;]= [Na] = [HCO,] = Answer Your calculations & equations

Chemistry: An Atoms First Approach
2nd Edition
ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
Publisher:Steven S. Zumdahl, Susan A. Zumdahl
Chapter6: Types Of Chemical Reactions And Solution Stoichiometry
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Problem 80E: The concentration of a certain sodium hydroxide solution was determined by using the solution to...
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W W
TAT
M
Complete the concentration calculations.
Show your calculations (as best as possible) in the column Your calculations &
equations. Type your final answer for each part in the Answer column.
1. You dissolve 120 grams of NaHCO3 into 200 ml of water.
Calculate the formula mass of NaHCO3
Calculate the moles of NaHCO3
Calculate the volume of water in liters.
.Write the balanced dissociation equation
• Calculate the molarity of NaHCO3 in the solution.
Calculate the molarity of the Na* and HCO3 in the solution.
Formula Mass of
NaHCO3 =
Moles NaHCO3 =
Volume (1) =
Dissociation Equation
[NaHCO;]=
[Na] =
[HCO,] =
Answer
Your calculations & equations
Transcribed Image Text:W W TAT M Complete the concentration calculations. Show your calculations (as best as possible) in the column Your calculations & equations. Type your final answer for each part in the Answer column. 1. You dissolve 120 grams of NaHCO3 into 200 ml of water. Calculate the formula mass of NaHCO3 Calculate the moles of NaHCO3 Calculate the volume of water in liters. .Write the balanced dissociation equation • Calculate the molarity of NaHCO3 in the solution. Calculate the molarity of the Na* and HCO3 in the solution. Formula Mass of NaHCO3 = Moles NaHCO3 = Volume (1) = Dissociation Equation [NaHCO;]= [Na] = [HCO,] = Answer Your calculations & equations
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