QUESTION IMAGE
Question
round to two significant figures.
how much energy must be transferred to lower the temperature of 5.1 g of water from 201 k to 125 k
is energy absorbed or released?
Step1: Recall heat transfer formula
The formula for heat transfer is $q = mc\Delta T$, where $m$ is mass, $c$ is specific heat capacity of water ($4.184\ \text{J/g·K}$), and $\Delta T = T_{\text{final}} - T_{\text{initial}}$.
Step2: Calculate temperature change
$\Delta T = 125\ \text{K} - 201\ \text{K} = -76\ \text{K}$
Step3: Compute heat energy
$q = 5.1\ \text{g} \times 4.184\ \text{J/g·K} \times (-76\ \text{K}) \approx -1630\ \text{J}$
Step4: Round to 2 significant figures
$-1630\ \text{J} \approx -1600\ \text{J}$ (or $-1.6 \times 10^3\ \text{J}$). Negative sign means energy is released.
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Energy transferred: $-1.6 \times 10^3\ \text{J}$; Energy released.