Pregunta
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To treat a burn on his hand, a person decides to place an ice cube on the burned skin. The mass of the ice cube is 12.7 g , and its initial temperature is . The water resulting from the melted ice reaches the temperature of his skin, . How much heat is absorbed by the ice cube and resulting water? Assume that all of the water remains in the hand. Constants for water can be found in this table.

Ask by Williams Hammond. in the United States
Mar 24,2025

Solución de inteligencia artificial de Upstudy

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The ice cube and resulting water absorb approximately 6,070 joules of heat.

Solución

Let
The process occurs in three steps:
  1. Warming the ice from to :
    The specific heat capacity of ice is
    The temperature change is
    Thus, the heat required is
    Calculating, we get
  2. Melting the ice at :
    The latent heat of fusion for water is
    The heat required to melt the ice is
    Calculating, we obtain
  3. Warming the resulting water from to :
    The specific heat capacity of water is
    The temperature change is
    The heat required is
    Calculating, we find
  4. Total Heat Absorbed:
    The net heat absorbed is the sum of the three steps:
    Therefore,
Thus, the heat absorbed by the ice cube and the resulting water is approximately

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Mind Expander

To calculate the heat absorbed by the ice cube and the resulting water, we’ll follow a two-step process: first, the ice cube warms up to 0°C, then it melts and finally, the melted water warms up to the skin temperature.
  1. Heating the ice from -11.9°C to 0°C:
    For , it is approximately 2.09 J/g°C. Therefore:
  2. Melting the ice at 0°C:
    Where (heat of fusion for ice) is 334 J/g. Thus:
  3. Heating the water from 0°C to 28.4°C:
    For , it’s approximately 4.18 J/g°C. Thus:
  4. Total Heat Absorbed:
So, the total heat absorbed by the ice cube and the resulting water is approximately:

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