SOLUTION: 1. Complete the table below (use fractions - not decimals!) and use it to graph the function f(x) = 3x. "Note the x on the three is an exponent the x goes as an exponent on the 3

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Question 1198009: 1. Complete the table below (use fractions - not decimals!) and use it to graph the function f(x) = 3x. "Note the x on the three is an exponent the x goes as an exponent on the 3. I just did not know how to put the x as the exponent on the 3 in my question here.
.

X Y
-2
-1
0
1
2







Domain _______________


Range ________________

coordinates of the y-intercept ____________

equation of the asymptote _____________





2. Using your knowledge of inverses, prepare a table of values for the inverse of the function in
problem #1.
Graph the inverse on the same coordinate system as the function.
Label each graph appropriately as f(x) or f-1(X).

Answer the following for the inverse function:

The equation of the inverse is f-1
(x) = ______________

X Y



Domain _______________

Range ________________

coordinates of the x-intercept ____________

equation of the asymptote ____________

Found 2 solutions by Alan3354, MathLover1:
Answer by Alan3354(69443)   (Show Source): You can put this solution on YOUR website!
We don't need underscores.
Answer by MathLover1(20850)   (Show Source): You can put this solution on YOUR website!
1. Complete the table below (use fractions - not decimals!) and use it to graph the function

|
| .....
| .....
| .....
| .....
| .....

Domain ___ (all real numbers)

Range _____{ element : } (all positive real numbers)
coordinates of the y-intercept __

equation of the asymptote ____Horizontal asymptote
means as




2. Using your knowledge of inverses, prepare a table of values for the inverse of the function in
problem #1.
Graph the inverse on the same coordinate system as the function.
Label each graph appropriately as or .
Answer the following for the inverse function:
The equation of the inverse is = ______________
recall that , so
.......swap variables
................solve for



your inverse is
to make a table of values for the inverse of the function just switch the values of variables
|
|
|
|
|
|
Domain ____
will be what was a range of original function; { element : }
Range _______a domain of original function; (all real numbers)
coordinates of the x-intercept _______
equation of the asymptote _____Vertical:







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