Use the following information to solve i. and ii. Initial velocity =u Angle of fire 0 Time of flight to apex of trajectory = (uSine)/g Total time of flight t (2uSine)/g Range to apex of trajectory = (u'Sin20)/2g Total range s = (u³Sin20)/g Max altitude h = (uSin 0)/(2g) Using simulation of 3 different angles and use graphs to show that the maximum range can only be achieved at angle 45 degrees if u is a constant. i. ii. Explain your solution in ii.

Database System Concepts
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ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
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Use the following information to solve i. and ii.
Initial velocity = u
h
Angle of
fire 0
Time of flight to apex of trajectory = (uSine)/g
Total time of flight t = (2uSine)/g
Range to apex of trajectory = (u²Sin20)/2g
Total range s = (u?Sin20)/g
Max altitude h = (uSin 0)/(2g)
i.
Using simulation of 3 different angles and use graphs to show that the maximum range
can only be achieved at angle 45 degrees if u is a constant.
Explain your solution in ii.
ii.
Transcribed Image Text:Use the following information to solve i. and ii. Initial velocity = u h Angle of fire 0 Time of flight to apex of trajectory = (uSine)/g Total time of flight t = (2uSine)/g Range to apex of trajectory = (u²Sin20)/2g Total range s = (u?Sin20)/g Max altitude h = (uSin 0)/(2g) i. Using simulation of 3 different angles and use graphs to show that the maximum range can only be achieved at angle 45 degrees if u is a constant. Explain your solution in ii. ii.
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