4. An aircraft flies a path described by the equation, r² = (10 cos 20) m² at a certain portion of its flight. If 0 = (0.4t²) rad. Determine the radial and transverse components of the aircraft's acceleration and velocityat t = 1s. Take note that e is in radians and t is in seconds. (Note: solve trigo functions in radians mode)
4. An aircraft flies a path described by the equation, r² = (10 cos 20) m² at a certain portion of its flight. If 0 = (0.4t²) rad. Determine the radial and transverse components of the aircraft's acceleration and velocityat t = 1s. Take note that e is in radians and t is in seconds. (Note: solve trigo functions in radians mode)
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![4. An aircraft flies a path described by the equation, r² = (10 cos 20) m² at a certain portion of its flight.
If e = (0.4t2) rad. Determine the radial and transverse components of the aircraft's acceleration and
velocityat t = 1s. Take note that 0 is in radians and t is in seconds. (Note: solve trigo functions in
radians mode)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fde5f976d-3e3d-4320-8350-b73ecb3100ac%2F45dc2ef6-2e77-4ec4-8a3d-43a84cbdb2fd%2Fl7a3r6i_processed.png&w=3840&q=75)
Transcribed Image Text:4. An aircraft flies a path described by the equation, r² = (10 cos 20) m² at a certain portion of its flight.
If e = (0.4t2) rad. Determine the radial and transverse components of the aircraft's acceleration and
velocityat t = 1s. Take note that 0 is in radians and t is in seconds. (Note: solve trigo functions in
radians mode)
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