An aircraft (A) is climbing along the straight trajectory ("dotted line") as shown in Fig.1. Q1. At the time shown in the figure (t=0s) the velocity of the aircraft is 300km/h. Immediately after, the aircraft experiences an acceleration of å = 2t²ē, (m/s²). For time t=5s, a. Write the aircraft's acceleration in Polar Coordinates (Ox-yo).. b. Write the aircraft's acceleration in rectangular coordinates (Ox¡y) Write the aircraft's velocity in Polar Coordinates (Ox-yo). d. Write the aircraft's velocity in rectangular coordinates (Oxıy:). e. What is the velocity of the aircraft with respect to the observer, if the observer starts walking along the x-direction at a constant velocity of 2m/s? (You may use any coordinate system to represent this velocity). C.

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I,-F- unit wectors
er, eo -unit.vectors
Observer"
300
Earth Sorface
Q1 An aircraft (A) is climbing along the straight trajectory ("dotted line") as shown in Fig.1.
At the time shown in the figure (t=0s) the velocity of the aircraft is 300km/h. Immediately after, the
aircraft experiences an acceleration of å = 2t?e, (m/s²). For time t=5s,
a. Write the aircraft's acceleration in Polar Coordinates (Ox-yo).
b. Write the aircraft's acceleration in rectangular coordinates (Oxıy.)4
Write the aircraft's velocity in Polar Coordinates (Ox-y«).
d. Write the aircraft's velocity in rectangular coordinates (Oxıy.).
e. What is the velocity of the aircraft with respect to the observer, if the observer starts
walking along the x-direction at a constant velocity of 2m/s? (You may use any coordinate
system to represent this velocity)
C.
(Be precise in writing vectors, scalars, etc.)
Transcribed Image Text:I,-F- unit wectors er, eo -unit.vectors Observer" 300 Earth Sorface Q1 An aircraft (A) is climbing along the straight trajectory ("dotted line") as shown in Fig.1. At the time shown in the figure (t=0s) the velocity of the aircraft is 300km/h. Immediately after, the aircraft experiences an acceleration of å = 2t?e, (m/s²). For time t=5s, a. Write the aircraft's acceleration in Polar Coordinates (Ox-yo). b. Write the aircraft's acceleration in rectangular coordinates (Oxıy.)4 Write the aircraft's velocity in Polar Coordinates (Ox-y«). d. Write the aircraft's velocity in rectangular coordinates (Oxıy.). e. What is the velocity of the aircraft with respect to the observer, if the observer starts walking along the x-direction at a constant velocity of 2m/s? (You may use any coordinate system to represent this velocity) C. (Be precise in writing vectors, scalars, etc.)
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