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zhannawk [14.2K]
3 years ago
12

How do I solve this?

Mathematics
2 answers:
Flura [38]3 years ago
3 0
Area=LW
perimiter=2(L+W)

aera=36
P=25

36=LW
25=2(L+W)


25=2(L+W)
divide both sides by 2
12.5=L+W
minus W
12.5-W=L

sub for L
36=W(12.5-W)
36=12.5W-W^2
minus (12.5W-W^2) both sides
0=W^2-12.5W+36
use quadratic formula

if you have
ax^2+bx+c=0
x=\frac{-b+/- \sqrt{b^{2}-4ac} }{2a}

a=1
b=-12.5
c=36

W=\frac{-(-12.5)+/- \sqrt{(-12.5)^{2}-4(1)(36)} }{2(1)}
W=\frac{12.5+/- \sqrt{156.25-144} }{2}
W=\frac{12.5+/- \sqrt{12.25} }{2}
aprox
W=8 or 4.5

sub
12.5-W=L


12.5-8=L=4.5
12.5-4.5=L=8
either way

the dimentions are 4.5cm by 8 cm
Thepotemich [5.8K]3 years ago
3 0
\sf\\P=2L+2W=25 \sf\\A=LW=36\\\\Find\ the\ value\ of\ one\ of\ the\ variables\ in\ terms\ of\ the\ other. \sf\\36=LW\\W= \frac{36}{L}\\\\Substitute.\\P=25\\=2L+2W\\=2L+2( \frac{36}{L} )\\=2L+ \frac{72}{L} \\\\Make\ them\ have\ a\ common\ denominator.\\2L+\frac{72}{L}\\= \frac{2L}{1} +\frac{72}{L}\\=\frac{2L^2}{L}+ \frac{72}{L} \\= \frac{2L^2+72}{L} \\\\Multiply\ L\ on\ the\ other\ side.\\25L=2L^2+72\\0=2L^2-25L+72\\\\Use\ the\ quadratic\ formula.\\ L=\frac{-b+/- \sqrt{b^{2}-4ac} }{2a}\\ax^2+bx+c
a=2\\b=-25\\c=72\\\\ L=\frac{-(-25) +/- \sqrt{(-25)^{2}-4(2)(72)} }{2(2)} \\ =\frac{25+/- \sqrt{625-576} }{4} \\ =\frac{25+/- \sqrt{49} }{4}\\ =\frac{25(+/-)7}{4} \\\\\sf\ We\ now\ have\ two\ options.\\(1) L=\frac{25+7}{4}= \frac{32}{4} =8\\(2)L=\frac{25-7}{4}= \frac{18}{4} =4.5\\\\\sf\ Either\ W\ is\ 8\ and\ L\ is\ 4.5\ or\ W\ is\ 4.5\ and\ L\ is\ 8.\ It\ doesn't\ matter.\\\\{\boxed{The\ dimensions\ are\ 8\ cm\ by\ 4.5\ cm.}
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Answer:

The Acceleration of bike after 3 minutes of ride is  14 meter² per minutes

Step-by-step explanation:

Given as :

The displacement of bike is the function of time

i.e s(t) = t³ - 2 t² + 3  meters

The Time of bike acceleration = t = 3 minutes

Let The Acceleration of bike = a meter² per minutes

Now, According to question

∵ <u>Acceleration is define as the rate of change of velocity</u>

i.e acceleration = \dfrac{\textrm velocity}{\textrm time}

or, a =  \dfrac{\textrm v}{\textrm t}

And

<u>Velocity is define as rate of change of displacement</u>

i.e velocity =  \dfrac{\textrm displacement}{\textrm time}

Or, v =  \dfrac{\textrm s}{\textrm t}

Since here displacement is function of time

So , v = \frac{\partial s(t)}{\partial t}

Or, v =   \frac{\partial (t³ - 2 t² + 3)}{\partial t}

Or, v = 3 t² - 4 t + 3

So, velocity is the function of time = v = 3 t² - 4 t + 3   meter per minutes

Now, Again

Acceleration = a = \frac{\partial v}{\partial t}

Or, a = \frac{\partial (3 t² - 4 t + 3)}{\partial t}

Or, a = 6 t - 4

∴  Acceleration is the function of time = a = 6 t - 4

Now, Acceleration of bike after 3 minutes

So, at t = 3 min

i.e a = 6 t - 4

Or, a = 6 × 3 - 4

Or, a = 18 - 4

∴  a = 14 meter² per minutes

Hence, The Acceleration of bike after 3 minutes of ride is  14 meter² per minutes . Answer

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