A 32.520 g piece of unknown metal was heated in a hot water bath at 99.80 °C. The hot metal was then transferred to a coffee-cup calorimeter containing 100.0 mL of water. Time-Temperature data was collected and plotted. From the plot, the initial and final temperatures for the water were determined to be T, 23.76 °C and T; = 26.18 °C. 3. %3D Calculate and 9water (Assume Ccal =21.0 J/ °C.) a. Acal b. Calculate qmetal. C. Calculate Cmetal d. Calculate the molar mass for the metal and identify it using the Periodic Table.

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A 32.520 g piece of unknown metal was heated in a hot water bath at 99.80 °C. The hot
metal was then transferred to a coffee-cup calorimeter containing 100.0 mL of water.
Time-Temperature data was collected and plotted. From the plot, the initial and final
temperatures for the water were determined to be T, 23.76 °C and T= 26.18 °C.
3.
%3D
Calculate
and
9water (Assume Ccal =21.0 J/ °C.)
a.
Acal
b. Calculate qmetal.
Calculate Cmetal·
С.
d. Calculate the molar mass for the metal and identify it using the Periodic Table.
Transcribed Image Text:A 32.520 g piece of unknown metal was heated in a hot water bath at 99.80 °C. The hot metal was then transferred to a coffee-cup calorimeter containing 100.0 mL of water. Time-Temperature data was collected and plotted. From the plot, the initial and final temperatures for the water were determined to be T, 23.76 °C and T= 26.18 °C. 3. %3D Calculate and 9water (Assume Ccal =21.0 J/ °C.) a. Acal b. Calculate qmetal. Calculate Cmetal· С. d. Calculate the molar mass for the metal and identify it using the Periodic Table.
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