The flight path of the helicopter as it takes off from A is defined by the parametric equations x = (2t²) mandy=(0.04t) m where t is the time in seconds. Determine the distance the helicopter is from point A and the magnitudes of its velocity and acceleration whent = 10 s.
The flight path of the helicopter as it takes off from A is defined by the parametric equations x = (2t²) mandy=(0.04t) m where t is the time in seconds. Determine the distance the helicopter is from point A and the magnitudes of its velocity and acceleration whent = 10 s.
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![3. The flight path of the helicopter as it takes off from A is defined by the parametric equations x=
(2t²) mandy=(0.04t) m where t is the time in seconds. Determine the distance the helicopter is
from point A and the magnitudes of its velocity and acceleration when t = 10 s.
1
4. The double inclined plane supports two blocks A and B each ha
Chaffi](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8246610c-6e69-4282-b012-5c8ae7373b45%2F5c4f1ca0-a49e-4b10-ae72-020ec706b789%2F9gjvalt_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. The flight path of the helicopter as it takes off from A is defined by the parametric equations x=
(2t²) mandy=(0.04t) m where t is the time in seconds. Determine the distance the helicopter is
from point A and the magnitudes of its velocity and acceleration when t = 10 s.
1
4. The double inclined plane supports two blocks A and B each ha
Chaffi
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