Answer:
see below for the graph
Step-by-step explanation:
The desired graph has two y-intercepts and one x-intercept. It is not the graph of a function.
Here's one way to get there.
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Start with the parent function y = |x| and scale it down so that it has a y-intercept of -1 and x-intercepts at ±1.
Now, it is ...
f(x) = |x| -1
We want to scale this vertically by a factor of -5. this puts the y-intercept at +5 and leaves the x-intercepts at ±1.
Horizontally, we want to scale the function by an expansion factor of 3. The transformed function g(x) will be ...
g(x) = -5f(x/3) = -5(|x/3| -1) = -5/3|x| +5
This function has two x-intercepts at ±3 and one y-intercept at y=5. By swapping the x- and y-variables, we can get an equation for the graph you want:
x = -(5/3)|y| +5
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Comment on this answer
Since there are no requirements on the graph other than it have the listed intercepts, you can draw it free-hand through the intercept points. It need not be describable by an equation.
B. 4 2/9
C. 9
D. 24
Answer:
A.) 31 2/3
Step-by-step explanation:
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Answer:
9 1/6
Step-by-step explanation:
2 1/2 * 3 2/3
Change each mixed number to an improper fraction
2 1/2 = (2*2+1) /2 = 5/2
3 2/3 = (3*3+2)/3 =11/3
5/2*11/3 = 55/6
Now we change back to a mixed number
6 goes into 55 9 times
9*6 =54 so there is 1 left over
9 1/6
Answer:
A ratio table is a structured list of equivalent (equal value) ratios that helps us understand the relationship between the ratios and the numbers. Rates, like your heartbeat, are a special kind of ratio, where the two compared numbers have different units
Answer:
Sue buy 21 balls.
Answer:
21
Step-by-step explanation:
7 cans times 3 balls each equals 21 balls
The co-ordinates of N' will be (1.5c,1.5d).
A quadrilateral is a 2D figure having four sides.
According to the given question a quadrilateral M N O P was dilated with the origin as the center of dilation to create quadrilateral M ′ N ′ O ′ P ′.
The quadrilateral was dilated using a scale factor of 1.5.
Assuming the given co-ordinates of the quadrilateral are (a,b), (c,d), (e,f), (g,h).
It is dilated by a factor of 1.5 with origin as the center of dilation we can think of these given vertices of the quadrilateral as straight lines from origin so after the dilation each line will be stretched by a factor of 1.5.
∴ The dilated co-ordinates will be multiplied by a factor of 1.5 and they will be
(1.5a,1.5b), (1.5c,1.5d), (1.5e,1.5f), (1.5g,1.5h).
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Answer:
12
Step-by-step explanation:
I got the answer on ttm.
8 times 1.5 = 12