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snow_tiger [21]
3 years ago
7

What is the method of finding x in this problem?

Mathematics
1 answer:
Alinara [238K]3 years ago
8 0

Answer:

these are supplementary angles

value of X=14

Step-by-step explanation:

since they are supplementary you can set them equal to 180

13x-2=180

13x=182

x=14

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Simplify the expression. Assume all variables are positive. <br> (r/32s)^8/5
balandron [24]

Answer:

Step-by-step explanation:

Alright, lets get started.

The given expression is :

(\frac{r}{32s} )^{\frac{8}{5} }

It could be written as

(\frac{r}{s} )^{\frac{8}{5} }*(\frac{1}{32} )^{\frac{8}{5} }

32 could be written as 2^{5}

So, replacing that in our expression

(\frac{r}{s} )^{\frac{8}{5} }*(\frac{1}{2^{5} } )^{\frac{8}{5} }

(\frac{r}{s} )^{\frac{8}{5} }*(\frac{1}{2} )^{5*\frac{8}{5} }

(\frac{r}{s} )^{\frac{8}{5} }*(\frac{1}{2} )^{8}

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This is the simplified form of given expression.  :  Answer

Hope it will help :)




6 0
3 years ago
I need help right away ASAP!!!Please help me please finding the missing angle
german

\\ \sf\longmapsto tan\Theta=\dfrac{P}{B}

\\ \sf\longmapsto tan40=\dfrac{48}{x}

\\ \sf\longmapsto 0.8=\dfrac{48}{x}

\\ \sf\longmapsto 0.8x=48

\\ \sf\longmapsto x=\dfrac{48}{0.8}

\\ \sf\longmapsto x=60

8 0
3 years ago
Read 2 more answers
Vacation Property Rentals purchased 50 television sets for their rental units at a cost of $250 per television. The televisions
Alex787 [66]
Under A straight line basis which is a method of computing depreciation and amortization by dividing the difference between an asset's cost and its expected salvage value by the number of years it is expected to be used. Also known as straight line depreciation or straight line amortization, this is the simplest depreciation method. But instead of that find The rate of depreciation
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In the second year the depreciation is
10,500×0.2=2,100
Book value
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In the third year the depreciation is
10500×0.2=2100
Book value
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the book value for all of the televisions at the end of the third year is 6200
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4 years ago
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arcLM = 2\pi .r (\frac{72}{360} )

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