Cyclist Joe brakes as he approaches a stop sign. His velocity graph over a 5 second period (in units of feet/sec) is shown in 20 16 12 4 1 2 3 5 Compute best possible upper and lower es- timates for the distance he travels over this period by dividing [0, 5] into 5 equal subinter- vals and using endpoint sample points. 2

Calculus: Early Transcendentals
8th Edition
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Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
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Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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4. area≈ 3.407
Cyclist Joe brakes as he approaches a stop
sign. His velocity graph over a 5 second period
(in units of feet/sec) is shown in
20
16
12
8
4
1
3 4 5
Compute best possible upper and lower es-
timates for the distance he travels over this
period by dividing [0, 5] into 5 equal subinter-
vals and using endpoint sample points.
2
1. 54 ft distance < 70 ft
2. 50 ft distance < 74 ft
3. 54 ft distance < 72 ft
4. 52 ft distance < 72 ft
5. 50 ft distance < 72 ft
6. 52 ft distance < 70 ft
7. 54 ft distance < 74 ft
8. 50 ft distance < 70 ft
9. 52 ft distance < 74 ft
34
secon
10
11
nc
er a 5
wn
options
the
he
nd us
Transcribed Image Text:4. area≈ 3.407 Cyclist Joe brakes as he approaches a stop sign. His velocity graph over a 5 second period (in units of feet/sec) is shown in 20 16 12 8 4 1 3 4 5 Compute best possible upper and lower es- timates for the distance he travels over this period by dividing [0, 5] into 5 equal subinter- vals and using endpoint sample points. 2 1. 54 ft distance < 70 ft 2. 50 ft distance < 74 ft 3. 54 ft distance < 72 ft 4. 52 ft distance < 72 ft 5. 50 ft distance < 72 ft 6. 52 ft distance < 70 ft 7. 54 ft distance < 74 ft 8. 50 ft distance < 70 ft 9. 52 ft distance < 74 ft 34 secon 10 11 nc er a 5 wn options the he nd us
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