In this experiment you calculate specific heat of aluminum metal by calorimetry. Record your observations, complete Data table and perform calculations. Include both the numerical value and unit for each measurement and calculation. Data mass Specific Heat : C(J/g-°C) Initial temperature (°C): t₁ Final temperature (°C) : t₂ AT=t₂-t₁. CALCULATIONS Aluminum ? 20.59 79.8°C 28.6°C 51.1°c Do the following with your experimental data. water 82.19 4.184 26.28 28.6°C 2.4 ℃ Calculate the amount of heat absorbed by the water. Qu20 = m of H₂O x 4.184 x (IT of H₂O) The amount of heat given up by the aluminum block. Q=-QH20

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter6: Thermochemistry
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Problem 143IP: A cubic piece of uranium metal (specific heat capacity = 0.117 J/C g) at 200.0C is dropped into...
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Specific Heat of Aluminum metal
In this experiment you calculate specific heat of aluminum metal by calorimetry.
Record your observations, complete Data table and perform calculations.
Include both the numerical value and unit for each measurement and calculation.
Data
mass
Specific Heat: C(J/g °C)
Initial temperature (°C):
t₁
Final temperature
(°C): t₂
AT-t₂-t₁.
CALCULATIONS
Aluminum
?
20.59
+79.8°C)
28.6°C
51.1°c
water
82.19
4.184
26.2%
28.6°C
2.4
ماهان
Do the following with your experimental data.
Calculate the amount of heat absorbed by the water. QH20 = m of H₂O x 4.184
x (T of H₂O)
The amount of heat given up by the aluminum block. QA = -QH₂0
120
Transcribed Image Text:Specific Heat of Aluminum metal In this experiment you calculate specific heat of aluminum metal by calorimetry. Record your observations, complete Data table and perform calculations. Include both the numerical value and unit for each measurement and calculation. Data mass Specific Heat: C(J/g °C) Initial temperature (°C): t₁ Final temperature (°C): t₂ AT-t₂-t₁. CALCULATIONS Aluminum ? 20.59 +79.8°C) 28.6°C 51.1°c water 82.19 4.184 26.2% 28.6°C 2.4 ماهان Do the following with your experimental data. Calculate the amount of heat absorbed by the water. QH20 = m of H₂O x 4.184 x (T of H₂O) The amount of heat given up by the aluminum block. QA = -QH₂0 120
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