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evablogger [386]
2 years ago
13

Write a equivalent expression (24a+56b)​

Mathematics
1 answer:
ollegr [7]2 years ago
3 0

Answer:

Step-by-step explanation:

the answer is 24a + 56b = 3(8a + 7b)  

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What is the inverse of the function f(x) = 4x + 8
Y_Kistochka [10]

Answer:

let f(x)= y

y = 4x+8

x= 4y + 8

4y = x - 8

y = (x - 8)/4

Hope this helps.

7 0
4 years ago
Read 2 more answers
The polynomial in standard form that represents the perimeter of the quadrilateral 
Naddik [55]

Answer:

3(4x-1)

Step-by-step explanation:

I hope this is correct and helpful

6 0
3 years ago
Help me pls! Thank you so much
frosja888 [35]
\bf cos\left[tan^{-1}\left(\frac{12}{5}  \right)+ tan^{-1}\left(\frac{-8}{15}  \right) \right]\\
\left. \qquad  \qquad  \quad   \right.\uparrow \qquad \qquad  \qquad  \uparrow \\
\left. \qquad  \qquad  \quad   \right.\alpha \qquad \qquad  \qquad  \beta
\\\\\\
\textit{that simply means }tan(\alpha)=\cfrac{12}{5}\qquad and\qquad tan(\beta)=\cfrac{-8}{5}
\\\\\\
\textit{so, we're really looking for }cos(\alpha+\beta)

now.. hmmm -8/15  is rather ambiguous, since the negative sign is in front of the rational, and either 8 or 15 can be negative, now, we happen to choose the 8 to get the minus, but it could have been 8/-15

ok, well hmm so, the issue boils down to 

\bf tan(\theta)=\cfrac{opposite}{adjacent}\qquad thus
\\\\\\
tan(\alpha)=\cfrac{12}{5}\cfrac{\leftarrow opposite=b}{\leftarrow  adjacent=a}
\\\\\\
\textit{so, what is the hypotenuse "c"?}\\
\textit{ well, let's use the pythagorean theorem}
\\\\\\
c=\sqrt{a^2+b^2}\implies c=\sqrt{25+144}\implies c=\sqrt{169}\implies \boxed{c=13}\\\\
-----------------------------\\\\
\textit{this simply means }\boxed{cos(\alpha)=\cfrac{5}{13}\qquad \qquad sin(\alpha)=\cfrac{12}{13}
}


now, let's take a peek at the second angle, angle β

\bf tan(\beta)=\cfrac{-8}{15}\cfrac{\leftarrow opposite=b}{\leftarrow adjacent=a}
\\\\\\
\textit{again, let's find "c", or the hypotenuse}
\\\\\\
c=\sqrt{15^2+(-8)^2}\implies c=\sqrt{289}\implies \boxed{c=17}\\\\
-----------------------------\\\\
thus\qquad \boxed{cos(\beta)=\cfrac{15}{17}\qquad \qquad sin(\beta)=\cfrac{-8}{17}}

now, with that in mind, let's use the angle sum identity for cosine

\bf cos({{ \alpha}} + {{ \beta}})= cos({{ \alpha}})cos({{ \beta}})- sin({{ \alpha}})sin({{ \beta}})\\\\
-----------------------------\\\\
cos({{ \alpha}} + {{ \beta}})= \left( \cfrac{5}{13} \right)\left( \cfrac{15}{17} \right)-\left( \cfrac{12}{13} \right)\left( \cfrac{-8}{17} \right)
\\\\\\
cos({{ \alpha}} + {{ \beta}})= \cfrac{75}{221}-\cfrac{-96}{221}\implies cos({{ \alpha}} + {{ \beta}})= \cfrac{75}{221}+\cfrac{96}{221}
\\\\\\
\boxed{cos({{ \alpha}} + {{ \beta}})=\cfrac{171}{221}}

8 0
3 years ago
Please help me on this, I'm bring timed!!​
makkiz [27]

Answer:

It's the second one

Hope that helps!

6 0
3 years ago
This recipe makes 18 shortbread fingers.
Nadya [2.5K]

Answer:

Butter: 40 g

Sugar: 20 g

Flour: 60 g

Step-by-step explanation:

The recipe makes 18 fingers.

Rose wants to make 6 fingers.

6/18 = 1/3

Rose wants to make 1/3 of the recipe, so she needs 1/3 of each ingredient.

Butter: 1/3 * 120 g = 40 g

Sugar: 1/3 * 60 g = 20 g

Flour: 1/3 * 180 g = 60 g

5 0
3 years ago
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