After sitting out of a refrigerator for a while, a turkey at room temperature (72°F) is placed into an oven. The oven temperature is 315°F. Newton's Law of Heating explains that the temperature of the...


After sitting out of a refrigerator for a while, a turkey at room<br>temperature (72°F) is placed into an oven. The oven temperature is<br>315°F. Newton's Law of Heating explains that the temperature of the<br>turkey will increase proportionally to the difference between the<br>temperature of the turkey and the temperature of the oven, as given by<br>the formula below:<br>T = Ta+ (To – Ta)e¬kt<br>-<br>Ta = the temperature surrounding the object<br>To = the initial temperature of the object<br>t = the time in hours<br>T = the temperature of the object after t hours<br>k = decay constant<br>%3D<br>The turkey reaches the temperature of 135°F after 2.5 hours. Using<br>this information, find the value of k, to the nearest thousandth. Use<br>the resulting equation to determine the Fahrenheit temperature of<br>the turkey, to the nearest degree, after 5 hours.<br>Enter only the final temperature into the input box.<br>

Extracted text: After sitting out of a refrigerator for a while, a turkey at room temperature (72°F) is placed into an oven. The oven temperature is 315°F. Newton's Law of Heating explains that the temperature of the turkey will increase proportionally to the difference between the temperature of the turkey and the temperature of the oven, as given by the formula below: T = Ta+ (To – Ta)e¬kt - Ta = the temperature surrounding the object To = the initial temperature of the object t = the time in hours T = the temperature of the object after t hours k = decay constant %3D The turkey reaches the temperature of 135°F after 2.5 hours. Using this information, find the value of k, to the nearest thousandth. Use the resulting equation to determine the Fahrenheit temperature of the turkey, to the nearest degree, after 5 hours. Enter only the final temperature into the input box.

Jun 05, 2022
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