alculate the heat of neutralization (kJ/mole) for the reaction of 50.0 mL of 0.177 M potassium hydroxide with 100.0 mL 0.841 M sulfuric acid resulting in a temperature increase of 4.61 oC.  Assume the solutions have a density of water and specific heat capacity of water, 4.184 J/(g⋅oC).  The calorimeter is a perfect system with no heat loss.   2KOH + H2SO4 ⟶ K2SO4 + 2H2O

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Chapter7: Chemical Energy
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Problem 62E: In a coffee-cup calorimeter, 1.60 g NH4NO3 is mixed with 75.0 g water at an initial temperature of...
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Calculate the heat of neutralization (kJ/mole) for the reaction of 50.0 mL of 0.177 M potassium hydroxide with 100.0 mL 0.841 M sulfuric acid resulting in a temperature increase of 4.61 oC.  Assume the solutions have a density of water and specific heat capacity of water, 4.184 J/(g⋅oC).  The calorimeter is a perfect system with no heat loss.

 

2KOH + H2SO4 ⟶ K2SO4 + 2H2O

Group of answer choices
+34.4 kJ/mole
-218 kJ/mole
-34.4 kJ/mole
+218 kJ/mole
-2890 kJ/mole
+654 kJ/mole
-654 kJ/mole
+2890 kJ/mole
+109 kJ/mole
-327 kJ/mole
+327 kJ/mole
-109 kJ/mole
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