Table of contents
- 0. Functions7h 52m
- Introduction to Functions16m
- Piecewise Functions10m
- Properties of Functions9m
- Common Functions1h 8m
- Transformations5m
- Combining Functions27m
- Exponent rules32m
- Exponential Functions28m
- Logarithmic Functions24m
- Properties of Logarithms34m
- Exponential & Logarithmic Equations35m
- Introduction to Trigonometric Functions38m
- Graphs of Trigonometric Functions44m
- Trigonometric Identities47m
- Inverse Trigonometric Functions48m
- 1. Limits and Continuity2h 2m
- 2. Intro to Derivatives1h 33m
- 3. Techniques of Differentiation3h 18m
- 4. Applications of Derivatives2h 38m
- 5. Graphical Applications of Derivatives6h 2m
- 6. Derivatives of Inverse, Exponential, & Logarithmic Functions2h 37m
- 7. Antiderivatives & Indefinite Integrals1h 26m
- 8. Definite Integrals3h 25m
4. Applications of Derivatives
Differentials
Problem 54b
Textbook Question
Growth rate of bamboo Bamboo belongs to the grass family and is one of the fastest growing plants in the world.
b. Based on the Mean Value Theorem, what can you conclude about the instantaneous growth rate of bamboo measured in millimeters per second between 10:00 A.M. and 3:00 P.M.?
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1
Identify the function that represents the growth of bamboo over time, denoted as G(t), where t is the time in hours from 10:00 A.M. to 3:00 P.M.
Determine the interval of interest, which is from t = 0 (10:00 A.M.) to t = 5 (3:00 P.M.).
Calculate the average growth rate of bamboo over the interval by finding the difference in growth values at the endpoints, G(5) - G(0), and dividing by the length of the interval, which is 5 hours.
Apply the Mean Value Theorem, which states that there exists at least one point c in the interval (0, 5) such that the instantaneous growth rate at that point, G'(c), is equal to the average growth rate calculated in the previous step.
Conclude that the instantaneous growth rate of bamboo at some point between 10:00 A.M. and 3:00 P.M. is equal to the average growth rate found, indicating how fast the bamboo is growing at that specific moment.
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