Problem. Suppose that a projectile is fired straight upward with ini- tial velocity vo from the surface of the earth. If air resis- tance is not a factor, then its height x(t) at time t satisfies the initial value problem d²x gR2 (x + R)² x (0) = 0, x' (0) = vo. dt2 Use the values g = 32.15 ft/s² ~ 0.006089 mi/s? for the gravitational acceleration of the earth at its surface and R = 3960 mi as the radius of the earth. If vo = 1 mi/s, find the maximum height attained by the projectile and its time of ascent to this height.

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
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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Problem.
Suppose that a projectile is fired straight upward with ini-
tial velocity vo from the surface of the earth. If air resis-
tance is not a factor, then its height x(t) at time t satisfies
the initial value problem
d²x
gR2
(x + R)²
x (0) = 0,
x' (0) = vo.
dt2
Use the values g = 32.15 ft/s² ~ 0.006089 mi/s? for the
gravitational acceleration of the earth at its surface and
R = 3960 mi as the radius of the earth. If vo = 1 mi/s,
find the maximum height attained by the projectile and its
time of ascent to this height.
Transcribed Image Text:Problem. Suppose that a projectile is fired straight upward with ini- tial velocity vo from the surface of the earth. If air resis- tance is not a factor, then its height x(t) at time t satisfies the initial value problem d²x gR2 (x + R)² x (0) = 0, x' (0) = vo. dt2 Use the values g = 32.15 ft/s² ~ 0.006089 mi/s? for the gravitational acceleration of the earth at its surface and R = 3960 mi as the radius of the earth. If vo = 1 mi/s, find the maximum height attained by the projectile and its time of ascent to this height.
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