5. A piece of metal weighing 59.047 g was heated to 100.0 °C and then put it into 100.0 mL of water (initially at 23.7 °C). The metal and water were allowed to come to an equilibrium temperature, determined to be 27.8 °C. Assuming no heat lost to the environment, calculate the specific heat of the metal.

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5. A piece of metal weighing 59.047 g was heated to 100.0 °C and then put it into 100.0 mL of water (initially at 23.7
°C). The metal and water were allowed to come to an equilibrium temperature, determined to be 27.8 °C.
Assuming no heat lost to the environment, calculate the specific heat of the metal.
S.) Text Predictions: On Editor Suggestions: Showing
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DII
F4
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DELL
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A
F8
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prt sc
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Heade
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Transcribed Image Text:I J 5. A piece of metal weighing 59.047 g was heated to 100.0 °C and then put it into 100.0 mL of water (initially at 23.7 °C). The metal and water were allowed to come to an equilibrium temperature, determined to be 27.8 °C. Assuming no heat lost to the environment, calculate the specific heat of the metal. S.) Text Predictions: On Editor Suggestions: Showing E 3 DII F4 P F5 F6 DELL F7 A F8 F9 prt sc F10 home F11 + Heade end 100% 90
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