. Is the water absorbing or releasing heat? (Hint: Think of if the water temperature is increasing or gaining.) b. What is the relationship of the q of the water and the q of the rebar? (Hint: What is the relationship between q of the system and q of the surroundings?) c. What mass of water is involved in this system? d. Write out the equation you will use to find the temperature of the rebar, and solve. Help. Please

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a. Is the water absorbing or releasing heat? (Hint: Think of if the water temperature is increasing or gaining.) b. What is the relationship of the q of the water and the q of the rebar? (Hint: What is the relationship between q of the system and q of the surroundings?) c. What mass of water is involved in this system? d. Write out the equation you will use to find the temperature of the rebar, and solve. Help. Please
A 360.0-g piece of rebar (a steel rod used for reinforcing concrete) is dropped into 425 mL of water at 24.0 °C. The final
temperature of the water was measured as 42.7 °C. Calculate the initial temperature of the piece of rebar. Assume the
specific heat of steel is approximately the same as that for iron 0.44), and that all heat transfer occurs between the
rebar and the water (there is no heat exchange with the surroundings).
Transcribed Image Text:A 360.0-g piece of rebar (a steel rod used for reinforcing concrete) is dropped into 425 mL of water at 24.0 °C. The final temperature of the water was measured as 42.7 °C. Calculate the initial temperature of the piece of rebar. Assume the specific heat of steel is approximately the same as that for iron 0.44), and that all heat transfer occurs between the rebar and the water (there is no heat exchange with the surroundings).
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