This graph shows the number of calories burned while riding a stationary bike. 100 80 60 L 40 20 4 Number of Calories Burned 8 12 16 20 24 Time (in Minutes)
This graph shows the number of calories burned while riding a stationary bike. 100 80 60 L 40 20 4 Number of Calories Burned 8 12 16 20 24 Time (in Minutes)
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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I can't figure out b or g

Transcribed Image Text:**Question 9**
The graph displays the number of calories burned while riding a stationary bike.
**Graph Description:**
- **X-axis:** Time (in Minutes)
- **Y-axis:** Number of Calories Burned
- The line graph shows a linear relationship, where the calories burned increase steadily as time increases.
**Questions:**
a.) What is the label of the output variable?
- *Answer:* Number of Calories Burned
b.) Interpret the meaning of the ordered pair (8, 32). Write in a complete sentence.
- *Answer:* In 8 minutes, 32 calories are burned.
c.) _____ calories are burned in 10 minutes.
- *Answer:* 40
d.) 50 calories are burned in _____ minutes.
- *Answer:* 12
e.) _____ calories are burned in 16 minutes.
- *Answer:* 60
f.) 100 calories are burned in _____ minutes.
- *Answer:* 24
g.) Identify the vertical intercept. Write it as an ordered pair and interpret its meaning in a complete sentence.
- *Answer:* The vertical intercept is (0, 0). This means that at 0 minutes, 0 calories are burned.
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