When estimating distances from a table of velocity data, it is not necessary that the time intervals are equally spaced. After a space ship is launched, the following velocity data is obtained. Use these data to estimate the height above the Earth's surface at 129 seconds. t (sec) v (ft/s) lower estimate of distance traveled = 27.0 upper estimate of distance traveled = 0 6 17 19 43 60 68 129 0 132 374 418 946 1320 1696 4563 o miles miles Report answers accurate to 1 places. This is not meant to be a trick question...be careful of the UNITS!

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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How to find the upper distance.
When estimating distances from a table of velocity data, it is not necessary that the time intervals are
equally spaced. After a space ship is launched, the following velocity data is obtained. Use these data to
estimate the height above the Earth's surface at 129 seconds.
t (sec)
v (ft/s)
lower estimate of distance traveled = 27.0
upper estimate of distance traveled =
0
6
17
19
43
60
68
129
0
132
374
418
946
1320
1696
4563
o miles
miles
Report answers accurate to 1 places. This is not meant to be a trick question...be careful of the UNITS!
Transcribed Image Text:When estimating distances from a table of velocity data, it is not necessary that the time intervals are equally spaced. After a space ship is launched, the following velocity data is obtained. Use these data to estimate the height above the Earth's surface at 129 seconds. t (sec) v (ft/s) lower estimate of distance traveled = 27.0 upper estimate of distance traveled = 0 6 17 19 43 60 68 129 0 132 374 418 946 1320 1696 4563 o miles miles Report answers accurate to 1 places. This is not meant to be a trick question...be careful of the UNITS!
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