A Union student decided to depart from Earth after graduation to find work on Mars. Careful calculations made regarding the space shuttle to be built used the following mathematical model for the velocity (in ft/sec) of the shuttle from liftoff at t = 0 seconds until the solid rocket boosters are jettisoned at t = 85.8 seconds: v(t) = 0.00146867 – 0.08382r + 31.13t + 9.59 Using this model, consider the acceleration of the shuttle. Find the absolute maximum and minimum values of acceleration between liftoff and the jettisoning of the boosters. 1. Absolute maximum of acceleration = 2. Absolute minimum of acceleration =

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
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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A Union student decided to depart from Earth after graduation to find
work on Mars. Careful calculations made regarding the space shuttle to
be built used the following mathematical model for the velocity (in ft/sec)
of the shuttle from liftoff at t = 0 seconds until the solid rocket boosters
are jettisoned at t = 85.8 seconds:
v(t) = 0.00146867
– 0.08382r + 31.13t + 9.59
Using this model, consider the acceleration of the shuttle. Find the
absolute maximum and minimum values of acceleration between liftoff
and the jettisoning of the boosters.
1. Absolute maximum of acceleration =
2. Absolute minimum of acceleration =
Transcribed Image Text:A Union student decided to depart from Earth after graduation to find work on Mars. Careful calculations made regarding the space shuttle to be built used the following mathematical model for the velocity (in ft/sec) of the shuttle from liftoff at t = 0 seconds until the solid rocket boosters are jettisoned at t = 85.8 seconds: v(t) = 0.00146867 – 0.08382r + 31.13t + 9.59 Using this model, consider the acceleration of the shuttle. Find the absolute maximum and minimum values of acceleration between liftoff and the jettisoning of the boosters. 1. Absolute maximum of acceleration = 2. Absolute minimum of acceleration =
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