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mylen [45]
3 years ago
12

–9x + 1 = –x + 17 Solve the equation

Mathematics
1 answer:
Darya [45]3 years ago
4 0

Answer:

Step-by-step explanation:

-9x + 1 = -x + 17

-8x + 1 = -17

-8x = -16

x = 2

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A circle has a diameter of 4 meters. What is its perimeter (to the nearest hundredth)? What is its area (to the nearest hundredt
Ilya [14]

Answer:

<h2>C ≈ 12.56 m, A ≈ 12.56 m²</h2>

Step-by-step explanation:

The formula of a perimeter (circumference) of a circle:

C=d\pi

<em>d</em> - diameter

The formula of an area of a circle:

A=\pi r^2

<em>r</em> - radius

We have <em>d = 2r = 4m → r = 2m.</em>

<em>Substitute:</em>

<em>Use π ≈ 3.14</em>

C=4\pi\ m\approx(4)(3.14)=12.56\ m

A=\pi(2^2)=4\pi\ m^2\approx(4)(3.14)=12.56\ m^2

4 0
4 years ago
A phone plan costs $10 per month, plus $0.03 per text message. John wants his phone bill to be less than $40, before taxes. What
BlackZzzverrR [31]

Answer:

100 messeges per month

Step-by-step explanation:

7 0
3 years ago
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Which of the following is a factor of f(x)=5x^3+24x^2-75x+14
qwelly [4]
I find it convenient to let a graphing calculator help me with factoring. It shows the roots to be -7, 1/5, 2. Hence the factorization will be
.. = (x +7)(5x -1)(x -2)

4 0
3 years ago
From t = 0 to t = 5.00 min, a man stands still, and from t = 5.00 min to t = 10.0 min, he walks briskly in a straight line at a
Alex73 [517]

1) Definitions

Average velocity = change in position / total time

Average acceleration = change in velocity / total time

2) (a) Average velocity in the time interval 2.00min to 8.00 min

i) time elapsed = 8.00min - 2.00min = 6.00 min = 360 s

ii) initial position at t = 2.00: x = 0 (the man remained still until t = 5.00)

iii) final position at t = 8.00:

constant speed from t = 5.00 to t = 8.00, V = 2.20 m/s

Change in position = constant velocity × time =

time = 8.00min - 5.00min = 3.00 min = 180s

Change in position = 2.20 m/s × 180 s = 396m

iv) Compute the verage velocity

Average velocity = change in position / time elapsed = 396m / 360 s = 1.10 m/s

3) (b) Average acceleration in the time interval 2.00 min to 8.00 min

i) time elapsed: 360 s

ii) initial velocity, at t = 2.00 min: 0

iii) final velocity, at t = 8.00 min: 2.20 m/s

iv) Compute the average acceleration

Average acceleration = change in velocity / time elapsed = 2.20 m/s / 360s = 0.00611 m/s²

4) (c) Average velocity in the time interval 3.00min to 9.00min

i) time elapsed: 9.00min - 3.00min = 6.00 min = 360 s

ii) initial position, at t = 3.00 min: 0

iii) final position, at t = 9.00 min

change in position = constant speed × time

time = 9.00min - 5.00min = 4.00 min = 240s

displacement = 2.20m/s × 240s = 528m

iv) Compute the average velocity

Average velocity = 528m / 360 s = 1.47 m/s

5) (d) Average acceleration in the interval 3.00 min to 9.00 min?

i) change in velocity: 2.20 m/s

ii) time elapsed = 6.00min = 360 s

iii) compute: 2.20m/s / 360s = 0.00611 m/s²

6 (e) Sketch x versus t and v versus t, and indicate how the answers to (a) through (d) can be obtained from the graphs.

i) to do the sketches use these tables

x versus time

t -------- x

0 ------- 0

2 ------- 0

3 ------- 0

5 ------- 0

8 ------- 396

9 ------ 528

10 ----- 660

velocity versus time

t ------- v

0 ----- 0

2 ----- 0

3 ----- 0

5 ----- 0

8 ----- 2.20

9 ----- 2.20

10 --- 2.20

Here the times are in minutes and the speeds in m/s

ii) You can obtain the answers to (a) through (d) by using these facts:

- speed = slope of the graph x versus t

- acceleration = slope of the graph v versust t.

Then, for each case, take the extremes of the time intervals and find the quotient (divide) rise / run, i.e. vertical change / horizontal change, between the extreme points of your time interval.

Doing that for the graph x versus t you obtaind the average speed, and for the graph v versus t you obtain average acceleration.

5 0
4 years ago
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Jamie has 7/10 of a pound of chicken to cook for dinner if she's going to split the chicken between three people how much chicke
DiKsa [7]

we know that

Jamie has 7/10 of a pound of chicken to cook for dinner for three people

so

<u>Step 1</u>

Divide 7/10 by 3

\frac{(7/10)}{3}   =\frac{7}{10*3} =  \frac{7}{30}\ lb

therefore

<u>the answer is</u>

Each person get \frac{7}{30}\ lb of chicken

8 0
3 years ago
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