QUESTION IMAGE
Question
you computed the specific heat for each of the four metals using the formula below:
c_{\text{metal}} = \frac{-c_{\text{water}} m_{\text{water}} delta t_{\text{water}}}{m_{\text{metal}} delta t_{\text{metal}}}
check all items that you used, either directly or indirectly, each time you did this computation.
- the first law of thermodynamics (heat lost by a metal equals the heat gained by the water)
- the ability of heat to flow from a hot object to a cooler one
- masses for the metal and the water in the calorimeter
- temperature changes for the water and the metal
- the known specific heat of the water
- The formula \(c_{\text{metal}}=\frac{-c_{\text{water}}m_{\text{water}}\Delta T_{\text{water}}}{m_{\text{metal}}\Delta T_{\text{metal}}}\) is derived from the first - law of thermodynamics (\(Q_{\text{metal}}=-Q_{\text{water}}\), heat lost by metal equals heat gained by water).
- Heat flow from hot (metal) to cold (water) is a fundamental concept in calorimetry (related to the energy transfer which is part of the thermodynamic process).
- \(m_{\text{metal}}\) and \(m_{\text{water}}\) (masses of metal and water) are directly used in the formula.
- \(\Delta T_{\text{metal}}\) and \(\Delta T_{\text{water}}\) (temperature changes) are also directly used.
- \(c_{\text{water}}\) (specific heat of water) is a known constant used in the formula.
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All options (the first law of thermodynamics (heat lost by a metal equals the heat gained by the water), the ability of heat to flow from a hot object to a cooler one, masses for the metal and the water in the calorimeter, temperature changes for the water and the metal, the known specific heat of the water) should be checked.