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Question 1
A perfectly insulated flask contains a sample of metal M at a temperature of -10 °C. Figure 1 shows how the temperature of the sample changes when energy is transfe... show full transcript
Step 2
Answer
The energy transferred reduces the number of nearest atomic neighbors, allowing the atoms to move their centers of vibration. As the energy continues to increase, it may also break some of the atomic bonds, changing the arrangement from a crystalline to an amorphous state.
Step 3
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During the time interval tA to tB, the total or mean kinetic energy remains constant while the total or mean potential energy increases. The energy supplied is used to overcome the intermolecular forces, leading to a change of state.
Step 4
Step 5
Answer
Using the formula for specific heat capacity, we can determine:
Where:
Given that the temperature changes from -10 °C to 28 °C, we find:
Now, substituting into the formula:
Assuming the time taken for this heating process is 60 seconds:
Thus, plugging values into the specific heat formula:
Solving for c:
c = rac{2100}{0.25 imes 38} = 2100 / 9.5 = 221.05 J kg^{-1} K^{-1}
Therefore, the specific heat capacity of M is approximately 221.05 J kg⁻¹ K⁻¹.
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