Identify Exponential Growth and Decay from Graphs and Tables

Identify Exponential Growth and Decay from Graphs and Tables

9th - 10th Grade

22 Qs

quiz-placeholder

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Identify Exponential Growth and Decay from Graphs and Tables

Identify Exponential Growth and Decay from Graphs and Tables

Assessment

Quiz

Mathematics

9th - 10th Grade

Hard

CCSS
HSF-IF.C.8B, HSF.LE.A.2, HSF-IF.C.7E

+2

Standards-aligned

Created by

Barbara White

FREE Resource

22 questions

Show all answers

1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Media Image
Classify the following graph.
Exponential Growth
Exponential Decay
Logarithmic

Tags

CCSS.HSF-IF.C.7E

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Media Image
Classify the following graph.
Exponential Growth
Exponential Decay
Logarithmic

Tags

CCSS.HSF-IF.C.8B

3.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Classify
 f(x)=4/5(.8)x-9
Exponential Growth
Exponential Decay

Tags

CCSS.HSF-IF.C.8B

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Media Image
Which function is exponential?
f(x)
h(x)
g(x)

5.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

A population of 1500 deer decreases by 1.5% per year. At the end of 10 years, there will be approximately 1290 deer in the population. Which function can be used to determine the number of deer, y, in this population at the end of t years?
y = 1500(1 - 0.015)t
y = 1500(0.015)t
y = 1500(1 + 0.015)t
y = 1500(1.5)t

Tags

CCSS.HSF.LE.A.2

6.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

There were 417 cell phones sold at an electronics store in January. Since then, cell phone sales at this store have increased at a rate of 3.75% per month. At this rate of growth, which function can be used to determine the monthly cell phone sales x months after January?
f(x) = 417(3.75)x
f(x) = 417(0.0375)x
f(x) = 417(1.0375)x
f(x) = 417(1.375)x

Tags

CCSS.HSF.LE.A.2

7.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

Media Image
The graph represents an exponential growth situation.
Eventually, the car will be worth exactly $0.
The starting value of the car was $12,000.
The range for the situation is y ≥ 0.

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