A pot of boiling soup with an internal temperature of 100° Fahrenheit was taken off the stove to cool in a 72°F room. After fifteen minutes, the internal temperature of the soup was 92°F. Use Newton's Law of Cooling to write a formula T(t) that models this situation, where T is the temperature of the soup in degrees Fahrenheit and t is time in minutes. T(t) =
A pot of boiling soup with an internal temperature of 100° Fahrenheit was taken off the stove to cool in a 72°F room. After fifteen minutes, the internal temperature of the soup was 92°F. Use Newton's Law of Cooling to write a formula T(t) that models this situation, where T is the temperature of the soup in degrees Fahrenheit and t is time in minutes. T(t) =
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![**Text Transcription:**
A pot of boiling soup with an internal temperature of 100° Fahrenheit was taken off the stove to cool in a 72°F room. After fifteen minutes, the internal temperature of the soup was 92°F.
Use Newton's Law of Cooling to write a formula \( T(t) \) that models this situation, where \( T \) is the temperature of the soup in degrees Fahrenheit and \( t \) is time in minutes.
\[ T(t) = \text{[ ]} \]
**Explanation:**
This text describes a scenario where a hot object (soup) cools in a room at a different temperature. Using Newton's Law of Cooling, you are tasked with creating an equation to describe the temperature changes over time. The initial and ambient temperatures, as well as a specific time and temperature, are provided to help build this model. The equation will be in the form of \( T(t) \), where \( T \) is the temperature and \( t \) is the time in minutes.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0ecd4a66-8a79-4255-8635-c33dc6734dad%2F290f812f-1d50-4e63-8d7e-49600ec31647%2Fap6ua3_processed.png&w=3840&q=75)
Transcribed Image Text:**Text Transcription:**
A pot of boiling soup with an internal temperature of 100° Fahrenheit was taken off the stove to cool in a 72°F room. After fifteen minutes, the internal temperature of the soup was 92°F.
Use Newton's Law of Cooling to write a formula \( T(t) \) that models this situation, where \( T \) is the temperature of the soup in degrees Fahrenheit and \( t \) is time in minutes.
\[ T(t) = \text{[ ]} \]
**Explanation:**
This text describes a scenario where a hot object (soup) cools in a room at a different temperature. Using Newton's Law of Cooling, you are tasked with creating an equation to describe the temperature changes over time. The initial and ambient temperatures, as well as a specific time and temperature, are provided to help build this model. The equation will be in the form of \( T(t) \), where \( T \) is the temperature and \( t \) is the time in minutes.
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