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Liula [17]
4 years ago
11

A game store recieved a shipment of puzzles.The puzzles are stacked in 6rows with 6 boxes in each row.Each box contains 6 puzzle

s. How many puzzles are in the shipment.
Mathematics
1 answer:
IRINA_888 [86]4 years ago
4 0
I think it’s 216) because you do 6 times 6 then times that by 6
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Ok so hi I need help with this
MrMuchimi

Answer:

x=-5, 5

Step-by-step explanation:

Because there is absolute value symbol and is equal to 5.

6 0
3 years ago
Read 2 more answers
100 points and brainliest
MaRussiya [10]

Answer:

4400

Step-by-step explanation:

3 0
3 years ago
Find the quotient of the complex numbers. Leave answer in polar form.
Goryan [66]
\bf \qquad \textit{division of two complex numbers}
\\\\
\cfrac{r_1[cos(\alpha)+isin(\alpha)]}{r_2[cos(\beta)+isin(\beta)]}\implies
 \cfrac{r_1}{r_2}[cos(\alpha - \beta)+isin(\alpha - \beta)]\\\\
-------------------------------

\bf \cfrac{z1}{z2}\implies \cfrac{\frac{1}{8}\left[cos\left(\frac{2\pi }{3}  \right)+i~sin\left(\frac{2\pi }{3}  \right)  \right]}
{\frac{1}{3}\left[cos\left(\frac{\pi }{4}  \right)+i~sin\left(\frac{\pi }{4}  \right)  \right]}
\\\\\\
\cfrac{\quad \frac{1}{8}\quad }{\frac{1}{3}}\left[cos\left(\frac{2\pi }{3}-\frac{\pi }{4}  \right)+i~sin\left(\frac{2\pi }{3}-\frac{\pi }{4}  \right)  \right]
\\\\\\
\cfrac{3}{8}\left[cos\left(\frac{5\pi }{12}  \right)+i~sin\left(\frac{5\pi }{12}  \right)  \right]
4 0
3 years ago
PLEASE HELP BEST ANSWER GETS BRAINLYEST
Dima020 [189]

Answer:

-3x-7

Step-by-step explanation:

hoffe das hilft

Hope this helps :)

3 0
3 years ago
Complete the expression that represents the table<br><br> Y=___x
bezimeni [28]

Answer:

The equation that represents the table is:

  • y=\frac{9}{2}x

Step-by-step explanation:

Taking two points from the table

  • (2, 9)
  • (4, 18)

\mathrm{Slope\:between\:two\:points}:\quad \mathrm{Slope}=\frac{y_2-y_1}{x_2-x_1}

\left(x_1,\:y_1\right)=\left(2,\:9\right),\:\left(x_2,\:y_2\right)=\left(4,\:18\right)

m=\frac{18-9}{4-2}

m=\frac{9}{2}

As the slope-intercept form is

\:y=mx+b

Plugging (2, 9) to find the y-intercept 'b'

9=\frac{9}{2}\left(2\right)+b

\mathrm{Switch\:sides}

\frac{9}{2}\left(2\right)+b=9

\mathrm{Remove\:parentheses}:\quad \left(a\right)=a

\frac{9}{2}\cdot \:2+b=9

9+b=9

b=0

so the equation becomes

\:y=mx+b

  • m=\frac{9}{2}
  • b=0

y=\frac{9}{2}\left(x\right)+0

y=\frac{9}{2}x

Therefore, the equation that represents the table is:

  • y=\frac{9}{2}x

The graph of the equation is also attached below.

6 0
3 years ago
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