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The additional heat causes the kinetic energy of some of the ice molecules to so they can more readily undergo the phase change to liquid. Therefore, the temperature of the ice remains constant. Since some of the ice changes to liquid water, the amount of ice .

Question

The additional heat causes the kinetic energy of some of the ice molecules to so they can more readily undergo the phase change to liquid. Therefore, the temperature of the ice remains constant. Since some of the ice changes to liquid water, the amount of ice .

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Solution

The text you provided seems to be incomplete and lacks a clear question. However, it appears to be discussing the process of melting ice. When heat is added to ice, it increases the kinetic energy of the ice molecules, allowing them to change from a solid phase (ice) to a liquid phase (water). During this phase change, the temperature of the ice remains constant because the energy is used for the phase change, not for raising the temperature. As a result, the amount of ice decreases as it turns into water.

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Similar Questions

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A student had a glass of water at 25°C. He put some ice in it. Once the ice melted, he found that the water's temperature had decreased to 18°C.The student puts the same amount of water at 25°C into another glass. He then adds more ice to this glass than he had added to the first glass. Which statement correctly explains what will happen after the ice melts? A. The water will be colder than 18°C because more thermal energy would have been added to it. B. The water will be warmer than 18°C because it would have received more heat from the ice. C. The water will be warmer than 18°C because melting would have taken place for a longer time. D. The water will be colder than 18°C because more heat would have flowed from it to the ice.

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