A18 kg block of iron at 29 °C is rapidly heated by a torch such that 11 kJ is transferred to it. What temperature would the block of iron reach (assuming the complete transfer of heat and no loss to the surroundings)? If that same amount of heat (11 kJ ) was quickly transferred to a 860 g pellet of copper at 22°C, what temperature would the copper reach before it begins losing heat to the surroundings? Use the equation for heat capacity and the following heat capacity values: mc, AT %3D 0.450 J/(g C) 0.385 J/(g C) Cs, Fe(s) Cs, Cu(s) Express the final temperatures of the iron and copper in C to two significant figures separated by a comma.
A18 kg block of iron at 29 °C is rapidly heated by a torch such that 11 kJ is transferred to it. What temperature would the block of iron reach (assuming the complete transfer of heat and no loss to the surroundings)? If that same amount of heat (11 kJ ) was quickly transferred to a 860 g pellet of copper at 22°C, what temperature would the copper reach before it begins losing heat to the surroundings? Use the equation for heat capacity and the following heat capacity values: mc, AT %3D 0.450 J/(g C) 0.385 J/(g C) Cs, Fe(s) Cs, Cu(s) Express the final temperatures of the iron and copper in C to two significant figures separated by a comma.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![Part D
A18 kg block of iron at 29 °C is rapidly heated by a torch such that 11 kJ is transferred to it. What temperature would the block of iron reach (assuming the complete
transfer of heat and no loss to the surroundings)? If that same amount of heat (11 kJ ) was quickly transferred to a 860 g pellet of copper at 22°C, what temperature would
the copper reach before it begins losing heat to the surroundings? Use the equation for heat capacity and the following heat capacity values:
mc,AT
Cs, Fe(s)
= 0.450 J/(g°C)
Cs, Cu(s) = 0.385 J/(g °C)
Express the final temperatures of the iron and copper in °C to two significant figures separated by a comma.
> View Available Hint(s)
Πνη ΑΣ Φ
Final temperatures of Fe, Cu =
°C
O A 12:07
acer](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5d36e35a-8a68-4eff-b153-e0673a890037%2Fab762fbd-fe1a-4d60-b094-bffbca428c59%2Fvm4bazi_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Part D
A18 kg block of iron at 29 °C is rapidly heated by a torch such that 11 kJ is transferred to it. What temperature would the block of iron reach (assuming the complete
transfer of heat and no loss to the surroundings)? If that same amount of heat (11 kJ ) was quickly transferred to a 860 g pellet of copper at 22°C, what temperature would
the copper reach before it begins losing heat to the surroundings? Use the equation for heat capacity and the following heat capacity values:
mc,AT
Cs, Fe(s)
= 0.450 J/(g°C)
Cs, Cu(s) = 0.385 J/(g °C)
Express the final temperatures of the iron and copper in °C to two significant figures separated by a comma.
> View Available Hint(s)
Πνη ΑΣ Φ
Final temperatures of Fe, Cu =
°C
O A 12:07
acer
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