Answer:
156 °F
Explanation:
Newton's Law of Heating results in the exponential function you show in your problem statement. We can use the given starting and "in-progress" temperatures and times to solve for the value of the factor "k" in the exponential function.
![T(t)=T_\infty+(T_0-T_\infty)e^(-kt)\\\\T(2.5)=123=305+(72-305)e^(-k\cdot2.5)\qquad\text{substitute given temps and times}\\\\(123-305)/(72-305)=e^(-2.5k)=(182)/(233)\qquad\text{subtract 305, divide by $(72-305)$}\\\\k=(-1)/(2.5)\ln(182)/(233)\approx0.0988127\approx0.099\qquad\text{rounded to 3 places}](https://img.qammunity.org/2023/formulas/mathematics/college/a46u8w1w9ej3sxrsj6100bolayt6fcqoj6.png)
Then the temperature after 4.5 hours is ...
T(4.5) = 305 -233e^(-0.099·4.5) ≈ 156 . . . . °F
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Additional comment
It will take about 6.3 hours for the turkey temperature to reach 180 °F.