QUESTION IMAGE
Question
how much energy does the water in this experiment absorb according to the calorimeter data?
\
$$\begin{tabular}{|l|c|}
\\hline
\\multicolumn{2}{|c|}{calorimeter data} \\\\
\\hline
mass (g) & 200.0 \\\\
\\hline
specific heat (\\text{j}/\\text{g}^{\\circ}\\text{c}) & 4.18 \\\\
\\hline
t_i (^{\\circ}\\text{c}) & 20.1 \\\\
\\hline
t_f (^{\\circ}\\text{c}) & 45.1 \\\\
\\hline
\\end{tabular}$$
q_{\text{h}_2\text{o}} = ? \text{ j}
Identify the given values
We extract the following values from the calorimeter data table:
- Mass of water \(m = 200.0\text{ g}\)
- Specific heat capacity of water \(c = 4.18\text{ J/g}^\circ\text{C}\)
- Initial temperature \(T_i = 20.1^\circ\text{C}\)
- Final temperature \(T_f = 45.1^\circ\text{C}\)
Calculate the temperature change
Using the Specific Heat Capacity concept:
$$
\Delta T = T_f - T_i
$$
$$
\Delta T = 45.1^\circ\text{C} - 20.1^\circ\text{C} = 25.0^\circ\text{C}
$$
Calculate the absorbed energy
Using the Calorimetry Calculations concept:
$$
q_{\text{H}_2\text{O}} = m \cdot c \cdot \Delta T
$$
$$
q_{\text{H}_2\text{O}} = 200.0\text{ g} \times 4.18\text{ J/g}^\circ\text{C} \times 25.0^\circ\text{C}
$$
$$
q_{\text{H}_2\text{O}} = 20900\text{ J}
$$
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How much energy does the water in this experiment absorb according to the calorimeter data?
\(q_{\text{H}_2\text{O}} =\) <blank>20900</blank> J