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Genrish500 [490]
3 years ago
7

PLS HELP I DON'T UNDERSTAND

Mathematics
2 answers:
labwork [276]3 years ago
5 0
It's not that hard. Number 5 means the prime numbers that make up that number. Number 5 is the third answer.
Vikentia [17]3 years ago
4 0
5. The third choice
6.108
7.12
8.4

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70 students choose to attend one of three after school activities: football, tennis or running. There are 30 boys. 13 students c
sweet [91]

Answer:

13/35

Step-by-step explanation:

13 students choose football.

31 students choose tennis.

this leaves 26 students that chose running.

probability of choosing running is 26/70 = 13/35

4 0
3 years ago
Write (4x8) divided by 16 as a squared number
Korvikt [17]

Answer: =

\frac{1}{2^7} \\

Step-by-step explanation:

4 0
3 years ago
Help!!!!!!!!!!!!!!!!
pashok25 [27]

Answer:

If the input is n then the output f(n) will be 4n - 8.

Step-by-step explanation:

Let the input of the function is denoted by x and the output is denoted by y.

Then, two ordered pairs of the linear function i.e.(x,y) are (2,0) and (3,4).

Therefore, the relation between x and y i.e. the equation of the straight line will be given by

\frac{y - 4}{4 - 0} = \frac{x - 3}{3 - 2}

⇒ y - 4 = 4(x - 3)

⇒ y = 4x - 8

⇒ f(x) = 4x - 8

Therefore, if the input is n then the output f(n) will be 4n - 8. (Answer)

6 0
4 years ago
Identify the domain and range:
Y_Kistochka [10]

Answer:

Domain: [3, ∞)

Range: [-1, ∞)

Step-by-step explanation:

lmk if you want an explanation

6 0
3 years ago
Which description compares the vertical asymptote(s) of Function A and Function B correctly?
r-ruslan [8.4K]
Function A:  f(x)=\frac{1}{x}+4.  Vertical asymptotes are in the form x=, and they are a vertical line that the function approaches but never hits.  They can be easily found by looking for values of <em>x</em> that can not be graphed.  In this case, <em>x</em> cannot equal 0, as we cannot divide by 0.  Therefore <em>x</em>=0 is a vertical asymptote for this function.  The horizontal asymptote is in the form <em>y</em>=, and is a horizontal line that the function approaches but never hits.  It can be found by finding the limit of the function.  In this case, as <em>x</em> increases, 1/<em>x</em> gets closer and closer to 0.  As that part of the function gets closer to 0, the overall function gets closer to 0+4 or 4.  Thus y=4 would be the horizontal asymptote for function A.
Function B:  From the graph we can see that the function approaches the line x=2 but never hits.  This is the vertical asymptote.  We can also see from the graph that the function approaches the line x=1 but never hits.  This is the horizontal asymptote.
3 0
3 years ago
Read 2 more answers
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