A 4550kg aircraft generates a mid-flight thrust given by the vector F; 2j + 3.8k kN. It is simultaneously subjected to a resistance vector (drag and wind) as F, = -15i – 1.2 – 2.4k kN. Calculate the net acceleration vector. = 22i +

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter8: Applications Of Trigonometry
Section8.3: Vectors
Problem 41E
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A 4550kg aircraft generates a mid-flight thrust given by the vector ?? = 22? + 2? + 3.8? kN. It is simultaneously subjected to a resistance vector (drag and wind) as ?? = −15? − 1.2 − 2.4? kN. Calculate the net acceleration vector

QUESTION 3
This question is about Vectors and Newton's Laws of motion.
A 4550kg aircraft generates a mid-flight thrust given by the vector F;
2j + 3.8k kN. It is simultaneously subjected to a resistance vector (drag and
wind) as F, = -15i – 1.2 – 2.4k kN. Calculate the net acceleration vector.
= 22i +
a) 0.95i + 0.24j + 0.602k m/s²
b) 1.5i + 1.9j + 0.98k m/s²
c) 0.34i + 0:25j + 0.58k m/s²
d) 1.5i + 0.175j + 0.307k m/s²
Transcribed Image Text:QUESTION 3 This question is about Vectors and Newton's Laws of motion. A 4550kg aircraft generates a mid-flight thrust given by the vector F; 2j + 3.8k kN. It is simultaneously subjected to a resistance vector (drag and wind) as F, = -15i – 1.2 – 2.4k kN. Calculate the net acceleration vector. = 22i + a) 0.95i + 0.24j + 0.602k m/s² b) 1.5i + 1.9j + 0.98k m/s² c) 0.34i + 0:25j + 0.58k m/s² d) 1.5i + 0.175j + 0.307k m/s²
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