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Romashka [77]
3 years ago
10

44 points in 4 quarters

Mathematics
1 answer:
matrenka [14]3 years ago
4 0
I'm not sure what the question is here, I'll try to guess at your meaning. If you are trying to find the amount of points earned per quarter, you must divide the points by the quarters, (44/4) which equals 11 per quarter. 
If you are trying to find how many points you would earn after 4 quarters or 44 points, you would multiply 44 by 4 (44 time 4), which equals 176. 

If neither of these solutions answer your question, please rephrase it!

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Suppose a certain combination lock requires three selections of numbers, each from 1 through 25. (a) How many choices are there
Montano1993 [528]

Answer:

25 choices

Step-by-step explanation:

Given

Possible Combinations: 1 to 25

Selections: 3 numbers

Required

Determine the number of choices of the first number

The first number of the lock can be any of 1 to 25.

This is so because when you counting from 1 to 25, there are 25 numbers

<em>Hence, number of choices is 25 numbers</em>

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3 years ago
The base is the pyramid is an equilateral triangle. What is the approximate volume of the pyramid? Pyramid with a triangular bas
ser-zykov [4K]
ANSWER

\boxed { C. \:  \:   \: 57.7 {cm}^{3} }

EXPLANATION

The volume of a pyramid is given by the formula,


V =  \frac{1}{3}  \times base \: area  \times height


The base of the pyramid is an equilateral triangle.


The base area is

=  \frac{1}{2}  \times base  \times  height


=  \frac{1}{2}  \times 10 \times 8.66


= 43.3 {cm}^{2}


The volume of the pyramid is now equal to:


V =  \frac{1}{3}  \times 43.3 \times 4 {cm}^{3}



V = 57.7{cm}^{3}

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Which vector matrix represents the reflection of the vector &lt;-1,5&gt; across the line x = y
Arturiano [62]

Answer:

V = \left[\begin{array}{ccc}5&-1\end{array}\right]

Step-by-step explanation:

We want to reflect this 2x1 vector on the line y = x.

To make this reflection we must use the following matrix:

R=\left[\begin{array}{cc}0&1\\1&0\\\end{array}\right]

Where R is known as the reflection matrix on the line x = y

Now perform the product of the vector <-1,5> x R.

\left[\begin{array}{ccc}-1\\5\end{array}\right]x\left[\begin{array}{ccc}0&1\\1&0\end{array}\right]\\\\\\\left[\begin{array}{ccc}-1(0) +5(1)&-1(1)+5(0)\end{array}\right]\\\\\\\left[\begin{array}{ccc}5&-1\end{array}\right]

The vector matrix that represents the reflection of the vector <-1,5> across the line x = y is:

V = \left[\begin{array}{ccc}5&-1\end{array}\right]

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Answer:

Wheres the statements?

Step-by-step explanation:

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