C(solution) 4.18 kJ/kg/°C V (solutions) = 100 mL Density (solutions) = 1.0 g/mL C(solutions) 1.0 mol/L Magnesium oxide reaction data: mMgo = 1.0 g T₁ = 28°C T₁ = 35 °C AT= °C Magnesium reaction data: mMg = 0.5 g T₁ = 28 °C T₁ = 46 °C AT = °C

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter9: Energy And Chemistry
Section: Chapter Questions
Problem 9.56PAE: 9.56 Using heats of formation tabulated in Appendix E, calculate the heats of reaction for the...
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Based on the lab data given in the screenshot,

1. Calculate the temperature change for each reaction
2. Calculate the energy released, in kJ, for each reaction using q = mc∆T

Thank you!

C(solution) = 4.18 kJ/kg/°C
V (solutions) = 100 mL
Density (solutions) = 1.0 g/mL
C(solutions) = 1.0 mol/L
Magnesium oxide reaction data:
mMgo = 1.0 g
T₁ = 28°C
T₁ = 35 °C
AT =
°C
Magnesium reaction data:
mMg = 0.5 g
T₁ = 28 °C
T₁ = 46 °C
AT =
°C
Transcribed Image Text:C(solution) = 4.18 kJ/kg/°C V (solutions) = 100 mL Density (solutions) = 1.0 g/mL C(solutions) = 1.0 mol/L Magnesium oxide reaction data: mMgo = 1.0 g T₁ = 28°C T₁ = 35 °C AT = °C Magnesium reaction data: mMg = 0.5 g T₁ = 28 °C T₁ = 46 °C AT = °C
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