The question seems to be written incorrectly, because m(3) = 4 and that is not an option.
If instead we wanted to find m(2) (where the function has the jump) we can see that m(2) = 2, and in this case the third option is the correct one.
Here we have the graph of a piecewise function m(x), we can see that this function has a jump at x = 2 (where you can see the jump from the line with negative slope to a line with positive slope).
We want to use this graph to find the value m(3)
Notice that x = 3 belongs in the second line, just find x = 3 in the horizontal axis and then go up until you meet the graph.
At that point move to the left until you meet the y-axis at the correspondent value of m(3).
Doing that, we can see that:
m(3) = 4
That is not an option, and I think that your teacher actually should have asked to find the value of m(2), where we have the jump.
To identify the value just need to locate which of the segments has the closed circle, that is the correct option.
With that in mind we can se that m(2) = 2, so in this case the third option is the correct.
Learn more about piecewise functions:
#SPJ1
Answer: THE ANSWER IS: 45° + 360°
Step-by-step explanation:
Answer:
r = 2. The center is at (0, 3).
Step-by-step explanation:
Compare the given x ^ 2 + (y - 3) ^ 2 = 4 to the standard equation
(x - h)^2 + (y - k)^2 = r^2.
It becomes obvious that h = 0, k = 3 and r = 2. The center is at (0, 3).
Answer:
37.5%
Step-by-step explanation:
40-x%*40=25
x%40=15
x%=15/40=37.5%
Answer:The equation of any straight line, called a linear equation, can be written as: y = mx + b, where m is the slope of the line and b is the y-intercept. The y-intercept of this line is the value of y at the point where the line crosses the y axis
Step-by-step explanation: