9. As a sled is pulled over the top of snow, the frictional force on the sled varies due to the changing consistency of the snow. The graph to the right shows the function F = g(d), where F is the frictional force on the sled, in Newtons, and d is the distance that the sled has been pulled, in meters, from its starting point. (a) By drawing in an appropriate tangent line, estimate the value of g'(40), and include the proper untis. (b) Give a complete sentence interpretation of g'(40) in the con- text of this problem. F 160- 150. 140 130- 10 20 30 40 d 50
9. As a sled is pulled over the top of snow, the frictional force on the sled varies due to the changing consistency of the snow. The graph to the right shows the function F = g(d), where F is the frictional force on the sled, in Newtons, and d is the distance that the sled has been pulled, in meters, from its starting point. (a) By drawing in an appropriate tangent line, estimate the value of g'(40), and include the proper untis. (b) Give a complete sentence interpretation of g'(40) in the con- text of this problem. F 160- 150. 140 130- 10 20 30 40 d 50
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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Transcribed Image Text:9. As a sled is pulled over the top of snow, the frictional force on the
sled varies due to the changing consistency of the snow. The graph
to the right shows the function F = g(d), where F is the frictional
force on the sled, in Newtons, and d is the distance that the sled
has been pulled, in meters, from its starting point.
(a) By drawing in an appropriate tangent line, estimate the value
of g'(40), and include the proper untis.
(b) Give a complete sentence interpretation of g'(40) in the con-
text of this problem.
F
160-
150.
140
130-
10
20 30
40
d
50
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