Concept explainers
Part (a)
Landing speed in the absence of air resistance.
Part (a)
Answer to Problem 56P
Solution:
1100 km/h
Explanation of Solution
Given:
Mass of flight including pilot
Initial horizontal speed of flight
Initial height of pilot
Final land speed of flight
Formula used: Conservation of energy (only gravitational force is acting which is conservative in nature)
Calculation:
Initial kinetic energy:
Initial potential energy:
Final kinetic energy:
Final potential energy:
Conclusion:Landing speed in the absence of air resistance would be 1100 km/h.
Part (b)
The average force of air resistance exerted if it came in at a constant glide angle of
Part (b)
Answer to Problem 56P
Solution:2400 N
Explanation of Solution
Given:
Mass of flight including pilot
Initial horizontal speed of flight
Initial height of pilot
Final land speed of flight
Formula used: Conservation of energy (only gravitational force is acting which is conservative in nature)
Calculation:
If air resistance is acting, then speed of plane with which it landed is
Kinetic energy in this case
If air resistance does not act, then speed with which flight land at a speed
Kinetic energy in this case
Work done by air resistance (magnitude only)
Work done by air resistance can also find out
= air resistance
Distance travelled can be find out
Air resistance:
Conclusion: Average force of friction acting on the flights
Chapter 6 Solutions
Physics: Principles with Applications
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