Part 1 of 2 For the following reaction, calculate AH for the CI ions. Round your answer to 4 significant digits. (...) -167.3 Part 2 of 2 X Calculate the enthalpy of neutralization when 1 mole of a strong monoprotic acid (such as HCI) is titrated by 1 mole of a strong base (such as KOH) at 25 °C. Round your answer to 3 significant digits.

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Chapter8: Thermochemistry
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The standard enthalpies of formation of ions in aqueous solutions are obtained by arbitrarily assigning a value of zero to H* ions; that is, AH [H*(aq)]=0.
H₂O
HC1 (g)
Part 1 of 2
X (...)
- 167.3
Part 2 of 2
→ H* (aq) + CI (aq)
Note: Reference the Thermodynamic properties of pure substances table for additional information.
X:(...)
For the following reaction, calculate AH for the C1 ions. Round your answer to 4 significant digits.
-55.8
x10
X
x10
ΔΗ
rxn
Ś
010
-75.0
==
Calculate the enthalpy of neutralization when 1 mole of a strong monoprotic acid (such as HCl) is titrated by 1 mole of a strong base (such as KOH) at
25 °C. Round your answer to 3 significant digits.
kJ
mol
Transcribed Image Text:The standard enthalpies of formation of ions in aqueous solutions are obtained by arbitrarily assigning a value of zero to H* ions; that is, AH [H*(aq)]=0. H₂O HC1 (g) Part 1 of 2 X (...) - 167.3 Part 2 of 2 → H* (aq) + CI (aq) Note: Reference the Thermodynamic properties of pure substances table for additional information. X:(...) For the following reaction, calculate AH for the C1 ions. Round your answer to 4 significant digits. -55.8 x10 X x10 ΔΗ rxn Ś 010 -75.0 == Calculate the enthalpy of neutralization when 1 mole of a strong monoprotic acid (such as HCl) is titrated by 1 mole of a strong base (such as KOH) at 25 °C. Round your answer to 3 significant digits. kJ mol
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