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Ch.13 - Solutions & Their Properties
McMurry - Chemistry 8th Edition
McMurry8th EditionChemistryISBN: 9781292336145Non è quello che usi tu?Cambia libro di testo
Capitolo 13, Problema 39

Which would you expect to have the larger hydration energy, SO42- or ClO4-? Explain.

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Identify the charges on the ions: Both sulfate (SO4^2-) and perchlorate (ClO4^-) ions are anions, but sulfate has a -2 charge while perchlorate has a -1 charge.
Consider the size of the ions: Generally, smaller ions have higher charge densities, which can lead to stronger attractions with water molecules in the hydration process.
Compare the charge densities: Since SO4^2- has a higher charge (-2) and is typically smaller compared to ClO4^- which has a lower charge (-1), SO4^2- has a higher charge density.
Relate charge density to hydration energy: Higher charge density usually results in stronger interactions with water molecules, leading to a larger hydration energy.
Conclude based on charge density and ion size: Given the higher charge density and smaller size of SO4^2- compared to ClO4^-, SO4^2- would be expected to have the larger hydration energy.

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Hydration Energy

Hydration energy refers to the energy released when ions are surrounded by water molecules. It is a crucial factor in determining the solubility of ionic compounds in water. The magnitude of hydration energy depends on the charge and size of the ion; smaller and more highly charged ions typically have higher hydration energies due to stronger interactions with water molecules.
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Ionic Hydrates Naming

Ionic Charge and Size

The charge and size of an ion significantly influence its hydration energy. Ions with higher charges attract water molecules more strongly, leading to greater hydration energy. Conversely, larger ions have a lower charge density, resulting in weaker interactions with water. Therefore, comparing ions like SO42- and ClO4- involves assessing their respective charges and sizes to predict their hydration energies.
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Comparative Analysis of Anions

When comparing anions such as SO42- and ClO4-, it is essential to consider their structural differences and charge distributions. SO42- has a higher charge density due to its 2- charge and smaller size compared to ClO4-, which has a 1- charge and is larger. This difference suggests that SO42- would have a larger hydration energy, as it can interact more effectively with water molecules.
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Dimensional Analysis