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Evgesh-ka [11]
2 years ago
15

A hot air balloon descends from an altitude of 2,000 feet at a constant rate of 90 feet per minute. The graph shows the altitude

of the balloon over time. Write a linear function in the form y = mx + b to represent the situation.
Mathematics
2 answers:
liberstina [14]2 years ago
6 0

Answer:

y=90x+2,000

Step-by-step explanation:

90 is the rate of change because the hot air balloon descends 90 feet per minute.

And 2,000 is the starting point because the hot air balloon started the descent at 2,000 feet.

ohaa [14]2 years ago
3 0

Answer:

y(t)=(-90\frac{feet}{minute})t+2000feet

Step-by-step explanation:

Given the linear function in the form

y=mx+b

We are going to represent the situation using the linear function.

We are going to call the variable ''x'' time. We can write x = t ⇒

y=mt+b

y(t) will be the altitude function that depends on the variable ''t'' that is time in minutes.

In the instant t=0minutes the hot air balloon has an altitude of 2000 feet ⇒

y(0)=2000feet=m(0)+b=b ⇒ b=2000feet

We can think that the slope ''m'' is the constant rate of the function.

Given that the hot air balloon descends, m ⇒m=-90\frac{feet}{minute}

Now we write the function :

y=mt+b\\

y(t)=(-90\frac{feet}{minute})t+2000feet

For example, when t = 0 ⇒

y(0)=(-90\frac{feet}{minute}).0+2000feet=2000feet

Or if we want to find the time when the hot air balloon finally descends :

0=(-90\frac{feet}{minute})t+2000feet

t=\frac{-2000feet}{-90\frac{feet}{minute}}=22.222minutes

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Answer:

1/12 of the watermelon in each piece

Step-by-step explanation:

  1. We must divide 1/3 by 4.
  2. 1/3 divided by 4 is also 1/3 x 1/4.

The final answer is 1/12.



<em>I hope this helped!</em>

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A study found that 9% of dog owners brush their dog’s teeth. Of 578 dog owners, about how many would be expected to brush their
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Answer:

9 percent of 578 is 52.02.

Step-by-step explanation:

578/x=100/9

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578/11.111111111111=x  

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2 years ago
Susan is going to rent a truck for one day. There are two companies she can choose from, and they have the following prices. Com
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Idk if this is correct but ugh ill try my best

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Use lagrange multipliers to find the points on the given surface that are closest to the origin. y2 = 64 + xz
Inessa [10]
The distance between an arbitrary point on the surface and the origin is

d(x,y,z)=\sqrt{x^2+y^2+z^2}

Recall that for differentiable functions g(x) and h(x), the composition g(h(x)) attains extrema at the same points that h(x) does, so we can consider an augmented distance function

D(x,y,z)=x^2+y^2+z^2

The Lagrangian would then be

L(x,y,z,\lambda)=x^2+y^2+z^2+\lambda(y^2-64-xz)

We have partial derivatives

\begin{cases}L_x=2x-\lambda z\\L_y=2y+2y\lambda\\L_z=2z-\lambda x\\L_\lambda=y^2-64-xz\end{cases}

Set each partial derivative to 0 and solve the system to find the critical points.

From the second equation it follows that either y=0 or \lambda=-1. In the first case we arrive at a contradiction (I'll leave establishing that to you). If \lambda=-1, then we have

\begin{cases}2x+z=0\\2z+x=0\end{cases}\implies x=0,z=0

This means y^2=64\implies y=\pm8

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8 0
2 years ago
Foggy Optics, Inc., makes laboratory microscopes. Setting up each production run costs $2500. Insurance costs, based on the aver
Ray Of Light [21]

Answer: 4

Step-by-step explanation:

Let N be the total number of runs.

The microscopes per year will be equal to the total number of runs * microscopes per run

total number of microscopes = total number of runs * microscopes per run

now we have each run to cost 2500, therefore:

run costs = 2500 * total runs = 2500*N

we also have insurance and storage costs (note the average thats why we divide by 2):

storage costs = 20* microscopes per run /2 = 20*N/2

insurance costs = 15 * microscopes per run = 15*N

the costs are:

costs = run costs + storage + insurance

now the comany sells 1600 microscopes a year, so in order to figure out the number of microscopes per run we divide 1600 by the total number of runs N and replace in the costs

costs = 2500N + 40000/N => C(N) = 2500N + 40000/N

now derivate the function with respect to N and equal to 0:

\frac{d}{dN}(2500N + 40000/N) = 2500(1-16/N^2) \\\\  2500(1-16/N^2) = 0\\

this gives you two solutions, N = -4 which is not eligible (you cant make negative microscopes lol) and N = 4 which is the answer

have a nice day

4 0
2 years ago
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