Heat Transfer and Calorimetry 4. A 10.0 g metal block is heated to 100.0 °C and then added to 20.0 g of water at 23.0°C in an insulated calorimeter. At thermal equilibrium, the system was measured as 25.0 °C. What is the specific heat (Cs) of the block? Additional Information: Cs of H2O(1) = 4.184 J/g-°C Surrounding System

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**Heat Transfer and Calorimetry**

**4.** A 10.0 g metal block is heated to 100.0 °C and then added to 20.0 g of water at 23.0 °C in an insulated calorimeter. At thermal equilibrium, the system was measured as 25.0 °C. What is the specific heat (\( C_s \)) of the block?

**Additional Information:**
- \( C_s \) of H\(_2\)O(l) = 4.184 J/g·°C

**Surrounding**

- \( M_{\text{surrounding}} = \)
- \( C_{s\ \text{surrounding}} = \)
- \( \Delta T_{\text{surrounding}} = \)

**System**

- \( M_{\text{system}} = \)
- \( C_{s\ \text{system}} = \)
- \( \Delta T_{\text{system}} = \)

Using the information below, please identify the metal block.
Transcribed Image Text:**Heat Transfer and Calorimetry** **4.** A 10.0 g metal block is heated to 100.0 °C and then added to 20.0 g of water at 23.0 °C in an insulated calorimeter. At thermal equilibrium, the system was measured as 25.0 °C. What is the specific heat (\( C_s \)) of the block? **Additional Information:** - \( C_s \) of H\(_2\)O(l) = 4.184 J/g·°C **Surrounding** - \( M_{\text{surrounding}} = \) - \( C_{s\ \text{surrounding}} = \) - \( \Delta T_{\text{surrounding}} = \) **System** - \( M_{\text{system}} = \) - \( C_{s\ \text{system}} = \) - \( \Delta T_{\text{system}} = \) Using the information below, please identify the metal block.
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