You have ice at just below the freezing point of water and then apply pressure to the ice (such as from an ice boat on a lake.) What will happen? Refer to the phase diagram for water below to answer the question. Phase Diagram for Water Critl Point 217.75 A) Nothing the temperature is still at the freezing point. (Criticl B) The ice would now freeze at a higher temperature so you still have ice. Normal Iwening point 1.00 Normal boding poi 0.0060 C) The ice would now freeze at a lower temperature so you now have a liquid. Triple point 0.00 0.01 100.00 373.99 Temperature in °C Pressure in atm

Chemistry
10th Edition
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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You have ice at just below the freezing point of water and then apply pressure to the ice (such as from an ice boat on a lake). What will happen? Refer to the phase diagram for water below to answer the question.

**Phase Diagram Explanation:**

The phase diagram for water is presented on a graph with pressure in atm on the y-axis and temperature in °C on the x-axis. The diagram includes several key points:

- **Point A**: Represents the triple point of water, where solid, liquid, and gas phases coexist.
- **Point B**: Indicates the normal freezing point at 1 atm, where water transitions from liquid to solid.
- **Point C**: Represents the normal boiling point at 1 atm, where water transitions from liquid to gas.
- **Point D**: Shows the critical pressure of 217.75 atm.
- **Point E**: Marks the critical point at a temperature of 373.99°C.

The diagram highlights how water can exist in different phases (solid, liquid, gas) depending on the temperature and pressure conditions.

**Multiple Choice Question:**

A) Nothing, the temperature is still at the freezing point.

B) The ice would now freeze at a higher temperature, so you still have ice.

C) The ice would now freeze at a lower temperature, so you now have a liquid.
Transcribed Image Text:You have ice at just below the freezing point of water and then apply pressure to the ice (such as from an ice boat on a lake). What will happen? Refer to the phase diagram for water below to answer the question. **Phase Diagram Explanation:** The phase diagram for water is presented on a graph with pressure in atm on the y-axis and temperature in °C on the x-axis. The diagram includes several key points: - **Point A**: Represents the triple point of water, where solid, liquid, and gas phases coexist. - **Point B**: Indicates the normal freezing point at 1 atm, where water transitions from liquid to solid. - **Point C**: Represents the normal boiling point at 1 atm, where water transitions from liquid to gas. - **Point D**: Shows the critical pressure of 217.75 atm. - **Point E**: Marks the critical point at a temperature of 373.99°C. The diagram highlights how water can exist in different phases (solid, liquid, gas) depending on the temperature and pressure conditions. **Multiple Choice Question:** A) Nothing, the temperature is still at the freezing point. B) The ice would now freeze at a higher temperature, so you still have ice. C) The ice would now freeze at a lower temperature, so you now have a liquid.
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