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Aliun [14]
3 years ago
5

What is one twelve of 1

Mathematics
1 answer:
Sergeu [11.5K]3 years ago
8 0

Answer:

1/12 of 1 =0.08333333333

Step-by-step explanation:

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40

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Is f(x)=4x+9 a function? please answer immediately!
GalinKa [24]

Answer:

Yes!

Step-by-step explanation:

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3 years ago
Read 2 more answers
When Joseph first starts working at a grocery store, his hourly rate is $10. For each year he works at the grocery store, his ho
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Answer: R(t) = 10 + 0.50t

Step-by-step explanation:

From the question, we've been informed that Joseph's hourly rate is $10 and that for every year he works at the grocery store, his hourly rate increases by $0.50.

Therefore, the function will be

R(t) = 10 + 0.50t

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3 years ago
Which shows the calculation you need to convert 8 liters to kiloliters?
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x KL = 8

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3 years ago
the temperature of a cup of coffee obeys newton's law of cooling. The initial temperature of the coffee is 150F and 1 minute lat
natka813 [3]

Answer:

Newton's law of cooling says that:

T(t) = Tₐ + (T₀ - Tₐ)*e^(k*t)

or:

\frac{dT}{dt} = -k*(T - T_a)

in the differential form.

where:

T is the temperature as a function of time

Tₐ  is the ambient temperature, in this case, 70F

T₀ is the initial temperature of the object, in this case, 150F

k is a constant, and we want to find the value of k.

Then our equation is:

T = 70F + (150F - 70F)*e^(k*t)

Now we also know that after a minute, or 60 seconds, the temperature was 135F

then:

135F = 70F + (150F - 70F)*e^(k*60s)

We can solve this for k:

135F = 70F + 80F*e^(k*60s)

135F - 70F = 80F*e^(k*60s)

65F =  80F*e^(k*60s)

(65/80) = e^(k*60s)

Now we can apply the Ln(x) function to both sides to get:

Ln(65/80) = Ln(e^(k*60s))

Ln(65/80) = k*60s

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Then the differential equation is:

\frac{dT}{dt} = -0.0035 s^-1*(T - 70F)

8 0
3 years ago
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