3. Suppose 43.7 mL of nitric acid reacts with 35.0 mL of a 0.300 M potassium carbonate solution. Balance the reaction and calculate the molarity of the nitric acid solution. Clearly show work using dimensional analysis, give final answer with correct sig.figs. and box lyour answer. K2CO3(aq) + HNO3(aq) → KNO3(aq) + CO2(g) + H2O(1)

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3. Suppose 43.7 mL of nitric acid reacts with 35.0 mL of a 0.300 M potassium carbonate solution.
Balance the reaction and calculate the molarity of the nitric acid solution. Clearly show work using
dimensional analysis, give final answer with correct sig.figs. and [box lyour answer.
K2CO3(aq) +
HNO3(aq) >
KNO3(aq) +
CO2(g) + H2O(1)
4. Each of the following compounds dissolves in water to form a solution. Write the formula for each
compound, classify as strong electrolyte (SE), weak electrolyte (WE) or nonelectrolyte (Non), and give
the formulas of the solute particles that are present in solution.
Formula
SE, WE or Non
Solute particles in solution
Ethanol
C2HSOH
Acetic acid
Aluminum nitrate
cobalt(II) chloride
nds and refer to the Solubility rules ativen in the lecture slides
phase (ag or (x)
Transcribed Image Text:3. Suppose 43.7 mL of nitric acid reacts with 35.0 mL of a 0.300 M potassium carbonate solution. Balance the reaction and calculate the molarity of the nitric acid solution. Clearly show work using dimensional analysis, give final answer with correct sig.figs. and [box lyour answer. K2CO3(aq) + HNO3(aq) > KNO3(aq) + CO2(g) + H2O(1) 4. Each of the following compounds dissolves in water to form a solution. Write the formula for each compound, classify as strong electrolyte (SE), weak electrolyte (WE) or nonelectrolyte (Non), and give the formulas of the solute particles that are present in solution. Formula SE, WE or Non Solute particles in solution Ethanol C2HSOH Acetic acid Aluminum nitrate cobalt(II) chloride nds and refer to the Solubility rules ativen in the lecture slides phase (ag or (x)
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