As a part of your role in the motion and dynamics analysis department, you have been asked to design a mission consists of airplane and boat. The mission target is to deliver a package by the airplane that must be picked by the boat. You must provide two analysis steps to solve the problem: 50 m/s Package Figure.2: Package of emergency supplies Part 1 • The airplane traveling horizontally at 50 m/s • The airplane is 150 m above the sea 9. Write the displacement vector r" as a function of time and find by calculus the acceleration vector a". 10. Compare the acceleration vector you have got from Part.9 with the known projectile motion values. 11. What is your student ID?

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
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Task 3
As a part of your role in the motion and dynamics analysis department, you have been asked to
design a mission consists of airplane and boat. The mission target is to deliver a package by the
airplane that must be picked by the boat. You must provide two analysis steps to solve the
problem:
50 m/s
Package
Figure.2: Package of emergency supplies
Part 1
• The airplane traveling horizontally at 50 m/s
• The airplane is 150 m above the sea
9. Write the displacement vector r* as a function of time and find by calculus the acceleration
vector a".
10. Compare the acceleration vector you have got from Part.9 with the known projectile motion
values.
11. What is your student ID?
Transcribed Image Text:Task 3 As a part of your role in the motion and dynamics analysis department, you have been asked to design a mission consists of airplane and boat. The mission target is to deliver a package by the airplane that must be picked by the boat. You must provide two analysis steps to solve the problem: 50 m/s Package Figure.2: Package of emergency supplies Part 1 • The airplane traveling horizontally at 50 m/s • The airplane is 150 m above the sea 9. Write the displacement vector r* as a function of time and find by calculus the acceleration vector a". 10. Compare the acceleration vector you have got from Part.9 with the known projectile motion values. 11. What is your student ID?
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