HW11_2 (textbook 21.14) A plane is being tracked by radar, and data are taken every second in polar coordinates 0 and r t (s) 200 202 204 206 208 210 0 (rad) 0.75 0.72 0.70 0.68 0.67 0.66 r (m) 5120 5370 5560 5800 6030 6240 At 206 seconds, use the centered finite-difference (second order correct) to find the vector expressions for velocity i and å. The velocity and acceleration given in polar coordinates are v = rë, + rôë, and a = (* – rô?)ë, + ( rö + 2rô)ëg Write a MATLAB script to implement the above and use fprintf to display the magnitudes of velocity and

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HW11_2 (textbook 21.14) A plane is being tracked by radar, and data are taken every second in polar
coordinates 0 and r
t (s)
200
202
204
206
208
210
e (rad)
0.75 0.72 0.70
0.68
0.67
0.66
r (m)
5120 5370 5560 5800 6030 6240
At 206 seconds, use the centered finite-difference (second order correct) to find the vector expressions for
velocity i and å. The velocity and acceleration given in polar coordinates are
v = rë, + rôë, and a = (* – rô?)ẽ, +(rö + 2rô)ẽg
Write a MATLAB script to implement the above
| use fprintf to display the magnitudes of velocity and
acceleration at 206 seconds.
Transcribed Image Text:HW11_2 (textbook 21.14) A plane is being tracked by radar, and data are taken every second in polar coordinates 0 and r t (s) 200 202 204 206 208 210 e (rad) 0.75 0.72 0.70 0.68 0.67 0.66 r (m) 5120 5370 5560 5800 6030 6240 At 206 seconds, use the centered finite-difference (second order correct) to find the vector expressions for velocity i and å. The velocity and acceleration given in polar coordinates are v = rë, + rôë, and a = (* – rô?)ẽ, +(rö + 2rô)ẽg Write a MATLAB script to implement the above | use fprintf to display the magnitudes of velocity and acceleration at 206 seconds.
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