Analyze Real-World Functional Relationships

Analyze Real-World Functional Relationships

8th - 9th Grade

20 Qs

quiz-placeholder

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Analyze Real-World Functional Relationships

Analyze Real-World Functional Relationships

Assessment

Quiz

Mathematics

8th - 9th Grade

Hard

Created by

Barbara White

FREE Resource

20 questions

Show all answers

1.

MULTIPLE CHOICE QUESTION

30 sec • 5 pts

All of the x values or inputs are called what?
Domain
Range
Relation
Function

2.

MULTIPLE CHOICE QUESTION

30 sec • 5 pts

All of the y values or outputs are called what?
Domain
Range
Relation
Function

3.

MULTIPLE CHOICE QUESTION

1 min • 1 pt

RANGE is found by reading the ends of a graph from ___ to ___.

Right to left

Left to right

Bottom to top

Top to bottom

4.

MULTIPLE CHOICE QUESTION

1 min • 1 pt

DOMAIN is found by reading the ends of a graph from ___ to ___.

Right to left

Left to right

Bottom to top

Top to bottom

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

The height of a basketball after it bounces is represented by h(t) = -8t2 + 50t where h represents the height, in feet, and t represents the number of seconds that have passed since the ball bounced off the ground.


What represents the domain of this function?

Height in feet

Height in inches

Number of seconds that have passed

Number of basketballs

6.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

The LNHS Lions stadium seats about 2,000 people. The tickets sell for $6 each. The function f(x) = 6x represents the situation where x is the number of people in attendance and f(x) is the amount of money LNHS makes as revenue.


What is the domain of the situation?

x is all real numbers

0 < x < 2,000

0 < x < 6 where x is all non-negative integers

X is the set of all whole numbers < 2,000

7.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

The LNHS Lions stadium seats about 2,000 people. The tickets sell for $6 each. The function f(x) = 6x represents the situation where x is the number of people in attendance and f(x) is the amount of money LNHS makes as revenue.


What is the range of the situation?

0 < f(x) < 6

0 < f(x) < 2,000

0 < f(x) < 12,000

2,000 < f(x) < 12,000

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