Consider the energy diagram for a solution formed between molecules A and B. What can be said about this solution? A) The solute will be more soluble in the solvent at high temperatures. AH olvent B) The solute-solute attractions are much stronger than the solvent-solvent attractions. AH mix C) The solute is insoluble in the solvent. AH olute D) The solution formed is ideal. Energy

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**Energy Diagram for Solution Formation**

Consider the energy diagram for a solution formed between molecules A and B. 

**Energy Diagram Explanation:**

- The diagram shows three energy levels related to the solution process:
  - \( \Delta H_{\text{solute}} \): The energy change associated with breaking the solute particles, represented by a red upward arrow.
  - \( \Delta H_{\text{solvent}} \): The energy change associated with breaking intermolecular forces in the solvent, also shown with a red upward arrow.
  - \( \Delta H_{\text{mix}} \): The energy change when solute and solvent particles interact, illustrated with a blue downward arrow.

**Possible Conclusions:**

A) The solute will be more soluble in the solvent at high temperatures.

B) The solute-solute attractions are much stronger than the solvent-solvent attractions.

C) The solute is insoluble in the solvent.

D) The solution formed is ideal.
Transcribed Image Text:**Energy Diagram for Solution Formation** Consider the energy diagram for a solution formed between molecules A and B. **Energy Diagram Explanation:** - The diagram shows three energy levels related to the solution process: - \( \Delta H_{\text{solute}} \): The energy change associated with breaking the solute particles, represented by a red upward arrow. - \( \Delta H_{\text{solvent}} \): The energy change associated with breaking intermolecular forces in the solvent, also shown with a red upward arrow. - \( \Delta H_{\text{mix}} \): The energy change when solute and solvent particles interact, illustrated with a blue downward arrow. **Possible Conclusions:** A) The solute will be more soluble in the solvent at high temperatures. B) The solute-solute attractions are much stronger than the solvent-solvent attractions. C) The solute is insoluble in the solvent. D) The solution formed is ideal.
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