Conceptual Physics: The High School Physics Program
Conceptual Physics: The High School Physics Program
9th Edition
ISBN: 9780133647495
Author: Paul G. Hewitt
Publisher: Prentice Hall
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Chapter 5, Problem 18A

For Questions 18—19, recall that when two vectors in the same or exactly opposite directions are added, the magnitude of their resultant is the sum or difference of their original magnitudes.

Calculate the resultant velocity of an air-plane that normally flies at 200 km/h if it encounters a 50-km/h tailwind. If it encounters a 50-km/h headwind.

Expert Solution & Answer
Check Mark
To determine

Resultant velocity of airplane.

Answer to Problem 18A

Resultant velocity is 250 km/h when encounters tailwind and 150 km/h when encounters headwind.

Explanation of Solution

Given :

Velocity of airplane, va=200 km/h ,velocity of wind which encounters tail of airplane is vw1=50 km/h and velocity of wind which encounters head of airplane is, vw2=50 km/h

Formula used :

According to concept of relative velocity.

  v=va+vw …..(1)

Where, va and vw are velocity of airplane and velocity of wind in same direction.

  v=vavw ……(2)

Where, va and vw are velocity of airplane and velocity of wind in opposite direction .

Calculation :

Substituting the value of va and vw=vw1 in equation (1).

  v=200+50=250 km/h

Now, substituting the value of va and vw=vw2 in equation (2).

  v=20050=150 km/h

Conclusion :

Therefore, resultant velocity of airplane when it encounters tailwind is 250 km/h and 150 km/h when it counters headwind

Chapter 5 Solutions

Conceptual Physics: The High School Physics Program

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