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Llana [10]
3 years ago
5

If a rectangle's length is

Mathematics
2 answers:
Natali [406]3 years ago
3 0

Answer:

Perimeter = 6t - 4

Area = 2t² - 7t - 3

Step-by-step explanation:

Given length = 2t + 1

Width = t - 3

So perimeter = 2t +1 + t - 3 + 2t + 1 + t - 3

= 2t + t + 2t + t + 1 - 3 + 1 - 3

= 6t - 4

Area = (2t + 1)(t - 7)

= 2t² - 6t + t - 3

= 2t² - 7t - 3

Sorry if im wrong but i think thats the answer

Luden [163]3 years ago
3 0

For this case we have that by definition:

The area of a rectangle is given by:

A = a * b

Where:

a and b are the sides of the rectangle.

For its part, the perimeter will be given by:

P = 2a + 2b

If we have as data:

a = 2t + 1\\b = t-3

So, the area is given by:

A = (2t + 1) (t-3)

We apply distributive property:

A=2t^2-6t+t-3\\A=2t^2-5t-3

For its part, the perimeter is:

P = 2 (2t + 1) +2 (t-3)\\P = 4t + 2 + 2t-6\\P = 6t-4

ANswer:

A = 2t ^ 2-5t-3\\P = 6t-4

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Write an equation in point-slope form, slope intercept form, and standard form for a line that passes through (-2,8) with slope
a_sh-v [17]

9514 1404 393

Answer:

  • y -8 = 8/5(x +2)
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Step-by-step explanation:

Since you're given a point and slope, it is convenient to start with that form.

<u>Point-slope form</u>

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  y -8 = 8/5(x +2) . . . point-slope equation

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<u>Slope-intercept form</u>

  y = mx + b . . . . . line with slope m and y-intercept b

The above equation can be rearranged to this form.

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__

<u>Standard form</u>

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The probability of a train arriving on time and leaving on time is 0.8. The probability of the same train arriving on time is 0.
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P(train arriving on time) = 0.84
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Answer: 0.688

Hope it helped :)
8 0
3 years ago
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