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.
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.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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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.)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F75348ea2-8210-4474-a025-77c94c92b1e4%2F08abb134-a215-4aa0-bfbd-f96917e993e4%2F34d3z39b_processed.png&w=3840&q=75)
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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