Answer:
No, the inverse function does not pass the vertical line test.
Step-by-step explanation:
Remember that . To find the inverse of our function we are going to invert x and y and solve for y:
Now we can graph our function an perform the vertical line test (check the attached picture).
Remember that the vertical line test is a visual way of determine if a relation is a function. A relation is a function if and only if it only has one value of y for each value of x. In other words, a relation is a function if a vertical line only intercepts the graph of the function once.
As you can see in the picture, the vertical line x = 15 intercepts the function twice, so the inverse function h(x) is not a function.
We can conclude that the correct answer is: No, the inverse function does not pass the vertical line test.
I'm 80% sure.
The Answer is: <em>B
</em><em /><em>
Because if I plugged all "y" with a the same number in the same postion they would equal the same.
For EX: 4*3+2+2=(4*3+2)+2
16 = 16
Hope this helps!</em>
Its when you range the numbers greatest to least like for example 27,21,116,13,9
Answer:
Step-by-step explanation:
Answer:
A
Step-by-step explanation:
The formula that relates current, power and resistance is
Where
I is the current (in amperes)
P is the power (in watts)
R is the resistance (in ohms)
We know P = 500 and R = 25, we plug them into the formula and solve for I:
Correct answer is 4.47 Amperes, or choice A.