Determine the distance traveled x numerically using relation x = integrated v dt. Try to attain a good accuracy. b. Find the velocity at 30 sec, using Newton divided difference interpolation with third order accuracy. c. Fit an exponential curve fitting to the data and find the coefficient of determination.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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a. Determine the distance traveled x numerically using relation x = integrated v dt. Try to attain a good accuracy.

b. Find the velocity at 30 sec, using Newton divided difference interpolation with third order accuracy.

c. Fit an exponential curve fitting to the data and find the coefficient of determination.

d. Use answer in (c) to find the distance travelled x and the velocity at 30 sec and compare your results with answer (a) and (b), respectively.

The velocity of a particle was measured as a function of time as shown in the
following data:
|6 12
18
27
36
42
48
54
60
(sec)
V
5
(m/s)
5.5
7
7.5
12
13.5
15
19
Transcribed Image Text:The velocity of a particle was measured as a function of time as shown in the following data: |6 12 18 27 36 42 48 54 60 (sec) V 5 (m/s) 5.5 7 7.5 12 13.5 15 19
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