25) At time t=0 sec a stone is thrown straight down off a 250 ft cliff with initial velocity 20 ft/sec. Ac due to gravity is 32 ft/sec. Express its height h(t), in feet above the ground at time, t in seconds. h(t) is from the ground up, and the the stone was throwm do wnward, opposite of this direction it me irutial velocity is actually -20ft/sec for the purpose of building up the h(t) function And of course g opposite of the direction of the height so it also is negative

Calculus: Early Transcendentals
8th Edition
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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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Question 125.
echify - P x
S Galaxy Tab S7 x
O VitalSource B x
O Position, Velo X
G Study Guide:
ule item id=8510503
A ALEKS - Ever Castro
O Other
egration 2 Worksheet-1.docx
2 Worksheet-1.docx
tion 2 Worksheet-1.docx (351 KB)
a) Express his height, h(t), in feet above the ground at time, t, in seconds.
b) How high does he go?
c) How long is the astronaut off the ground?
125) At time t=0 sec a stone is thrown straight down off a 250 ft cliff with initial velocity 20 ft/sec. Ace
due to gravity is 32 ft/sec. Expre ss its height h(t), infeet above the ground at time, t in seconds.
h(t) is from the ground up, and the the stone was thrown do wnward, opposite of this direction it me
initial velocity is actually -20ft/sec for the purpose of building up the h(t) function And of course gf
opposite of the direction of the height so it also is negative.
127) On Mars the acceleration due to gravity is 12
se
it
(On Earth gravity is much stronger at 32
movie, John Carter, it shows Carter leaping about 100 feet up on Mars John Carter is an Earth man
been transported to Mars so his leg musdes have been built to handle Earth's gravity while Mars gra
less On Earth, Michael Jordan (a famous basketball player) had a vertical fump velocity of 16tt/sec.
John Carter could triple that initial jump velocity due to being on Mars so his initial velodty would I
ft/sec
* 53T Mostly doudy
Y
LI
pause
ULL
alt
ctri
HP Laptop
Power thro
Transcribed Image Text:echify - P x S Galaxy Tab S7 x O VitalSource B x O Position, Velo X G Study Guide: ule item id=8510503 A ALEKS - Ever Castro O Other egration 2 Worksheet-1.docx 2 Worksheet-1.docx tion 2 Worksheet-1.docx (351 KB) a) Express his height, h(t), in feet above the ground at time, t, in seconds. b) How high does he go? c) How long is the astronaut off the ground? 125) At time t=0 sec a stone is thrown straight down off a 250 ft cliff with initial velocity 20 ft/sec. Ace due to gravity is 32 ft/sec. Expre ss its height h(t), infeet above the ground at time, t in seconds. h(t) is from the ground up, and the the stone was thrown do wnward, opposite of this direction it me initial velocity is actually -20ft/sec for the purpose of building up the h(t) function And of course gf opposite of the direction of the height so it also is negative. 127) On Mars the acceleration due to gravity is 12 se it (On Earth gravity is much stronger at 32 movie, John Carter, it shows Carter leaping about 100 feet up on Mars John Carter is an Earth man been transported to Mars so his leg musdes have been built to handle Earth's gravity while Mars gra less On Earth, Michael Jordan (a famous basketball player) had a vertical fump velocity of 16tt/sec. John Carter could triple that initial jump velocity due to being on Mars so his initial velodty would I ft/sec * 53T Mostly doudy Y LI pause ULL alt ctri HP Laptop Power thro
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