The radar station at O is tracking a meteor Pas it moves through the atmosphere. At the instant shown, the station measures the following data for the motion of the meteor: r= 22000 ft, 0= 40°, r = -22440 ft/s, 0 = -2.935 rad/s, * = 187500 ft/s², and 0 = -5.409 rad/s². Determine the magnitude and direction (relative to the xy coordinate system shown) of the acceleration vector at this instant.(Round the final answers to four decimal places.) The magnitude of the acceleration vector is The orientation of a from the x axis is ft/s². C

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The radar station at O is tracking a meteor Pas it moves through the atmosphere. At the instant shown, the station
measures the following data for the motion of the meteor: r= 22000 ft, 0 = 40°, r = −22440 ft/s, Ò = −2.935 rad/s,
* = 187500 ft/s², and 6 = −5.409 rad/s².
P
y
L₂
Determine the magnitude and direction (relative to the xy coordinate system shown) of the acceleration vector at this instant. (Round
the final answers to four decimal places.)
The magnitude of the acceleration vector is
The orientation of a from the x axis is
ft/s².
U
Transcribed Image Text:Required information The radar station at O is tracking a meteor Pas it moves through the atmosphere. At the instant shown, the station measures the following data for the motion of the meteor: r= 22000 ft, 0 = 40°, r = −22440 ft/s, Ò = −2.935 rad/s, * = 187500 ft/s², and 6 = −5.409 rad/s². P y L₂ Determine the magnitude and direction (relative to the xy coordinate system shown) of the acceleration vector at this instant. (Round the final answers to four decimal places.) The magnitude of the acceleration vector is The orientation of a from the x axis is ft/s². U
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