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Nastasia [14]
3 years ago
4

A large object with an initial temperature of 150 degrees Fahrenheit is dropped into the ocean. The current temperature of the o

cean water in the area is 77 degrees. The function f(t)=Ce(−kt)+77 represents the situation, where t is time in minutes, C is a constant, and k is a constant. After 10 minutes the object has a temperature of 120 degrees. After how many minutes will the temperature of the object be equal to 80 degrees?
Mathematics
1 answer:
harkovskaia [24]3 years ago
5 0

Answer:

t = 60.3 minutes.

Step-by-step explanation:

The function f(t) = Ce^{-kt} +77 ........ (1)  

Now, at t = 0, f(0) = 150 = C + 77

⇒ C = 73

So, the function (1) becomes f(t) = 73e^{-kt} +77 ......... (2)

Now, it is given that at t = 10 minutes, f(10) = 120 degree.

Therefore, from equation (2),  120 = 73e^{-10k} +77

⇒ 73e^{-10k} = 43

⇒ e^{-10k} = 0.589

Now, taking ln both sides we get -10k (ln e) =ln (0.589)

⇒ k = 0.0529

Therefore, the equation (2) becomes  f(t) = 73e^{-0.0529t} +77 ......(3)

Now, putting f(t) = 80 degree, we have fro equation (3),

80 = 73e^{-0.0529t} +77

⇒ 3 = 73e^{-0.0529t}

⇒ e^{-0.0529t} = 0.041

Taking ln both sides we get, -0.0529t = - 3.19, ⇒ t = 60.3 minutes. (Answer)

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3 years ago
A function y(t) satisfies the differential equation dy dt = y4 − 9y3 + 20y2. (a) What are the constant solutions of the equation
Darya [45]

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Step-by-step explanation:

Data provided in the question:

function y(t) satisfies the differential equation:

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8 0
4 years ago
HELP NOW PLEASE
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3x-5

We are given that they add up to 31, so we can write

x+(3x-5) = 31

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3 years ago
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