[References) In a coffee-cup calorimeter, 110.0 mL of 1.3 M NAOH and 110.0 mL of 1.3 M HCl are mixed. Both solutions were originally at 20.5°C. After the reaction, the final temperature is 29.2°C. Assuming that all the solutions have a density of 1.0 g/ cm and a specific heat capacity of 4.18 J/°C g, calculate the enthalpy change for the neutralization of HCI by NaOH. Assume that no brat is lost to the surroundings or to the calorimeter. AH = kT/mol

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In a coffee-cup calorimeter, 110.0 mL of 1.3 M NAOH and 110.0 mL of 1.3 M HCl are mixed. Both solutions were originally at 20.5°C. After the reaction, the final temperature is 29.2°C.
Assuming that all the solutions have a density of 1.0 g/ cm° and a specific heat capacity of 4.18 J/°C g, calculate the enthalpy change for the neutralization of HCl by NaOH. Assume that no heat is
lost to the surroundings or to the calorimeter.
ΔΗ-
kJ/mol
%3D
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Transcribed Image Text:GAO GAO-03 X x M MHE Re X G calculato x Content X 0 mySigTa XB Karl's Sn X M (no subj X b Answere X delta ec X New Tab now.com/ilrn/takeAssignment/takeCovalentActivity.do?locator=Dassignment-take [References] In a coffee-cup calorimeter, 110.0 mL of 1.3 M NAOH and 110.0 mL of 1.3 M HCl are mixed. Both solutions were originally at 20.5°C. After the reaction, the final temperature is 29.2°C. Assuming that all the solutions have a density of 1.0 g/ cm° and a specific heat capacity of 4.18 J/°C g, calculate the enthalpy change for the neutralization of HCl by NaOH. Assume that no heat is lost to the surroundings or to the calorimeter. ΔΗ- kJ/mol %3D Submit Answer Try Another Version 3 item attempts remaining Previous Next Email Instructor Save and Exit
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