Volume of wood produced (cubic meters/hectare) 10 14 12 20 30 Years T₂ 10 y-fo 40 50 7 Here f(t) is measured in cubic meters per hectare and t is measured in years. By computing the slopes of the respective tangent lines, estimate the rate at which the wood grown is changing at the beginning of year 10 and at the beginning of year 30. year 10 year 30 m³ per hectare per year m³ per hectare per year

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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EX 2.6 Q2

The following graph shows the volume of wood produced in a single-species forest.
10 y=f(t)
V
10
30 40 50
Years
Volume of wood produced
(cubic meters/hectare)
i
Here f(t) is measured in cubic meters per hectare and t is measured in years. By computing the slopes of the respective tangent lines, estimate the rate at which the wood grown is changing at the beginning of
year 10 and at the beginning of year 30.
year 10
m³ per hectare per year
year 30
m³ per hectare per year
Transcribed Image Text:The following graph shows the volume of wood produced in a single-species forest. 10 y=f(t) V 10 30 40 50 Years Volume of wood produced (cubic meters/hectare) i Here f(t) is measured in cubic meters per hectare and t is measured in years. By computing the slopes of the respective tangent lines, estimate the rate at which the wood grown is changing at the beginning of year 10 and at the beginning of year 30. year 10 m³ per hectare per year year 30 m³ per hectare per year
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