Function Invertibility and Tests

Function Invertibility and Tests

Assessment

Interactive Video

Mathematics

9th - 10th Grade

Hard

Created by

Thomas White

FREE Resource

The video tutorial explains how to determine if a function has an inverse by using graphical methods. It introduces the vertical and horizontal line tests to identify functions and their invertibility. Examples of different functions, such as lines, parabolas, and cubic functions, are used to illustrate these concepts. The tutorial also defines one-to-one functions, which are functions that have a unique correspondence between x and y values, making them invertible.

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20 questions

Show all answers

1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What is the primary purpose of determining if a function has an inverse?

To determine the function's continuity

To find the function's domain

To understand the function's range

To identify if the function can be undone

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Which test is used to determine if a graph represents a function?

Vertical line test

Horizontal line test

Diagonal line test

Slope test

3.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What does the vertical line test check for in a graph?

If the graph is differentiable

If the graph is invertible

If the graph is a function

If the graph is continuous

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Which test is used to determine if a function is invertible?

Continuity test

Slope test

Horizontal line test

Vertical line test

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What does the horizontal line test check for in a function?

If the function is continuous

If the function is differentiable

If the function is a function

If the function is invertible

6.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What does it mean if a function passes the horizontal line test?

The function is continuous

The function is a one-to-one function

The function is a parabola

The function is differentiable

7.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

What is the significance of the horizontal line test in determining a function's invertibility?

It checks if the function is continuous

It checks if the function is a function

It checks if the function is invertible

It checks if the function is differentiable

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