experimental fireworks shell is launched vertically from point A with an initial velocity of magnitude vo 87 ft/sec. In addition to the acceleration due to gravity, an internal rusting mechanism causes a constant acceleration component of 1.6g in the direction shown for the first 2.3 seconds of flight, after which the thruster ceases to function. Determin e maximum height h achieved, the total flight time t, the net horizontal displacement x from point A, and plot the entire trajectory. Neglect any acceleration due to aerodynamics. nswers: = ¹01 64 1.6 g ft sec ft ick if you would like to Show Work for this question: Open Show Work

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Chapter 2, Problem 2/074
An experimental fireworks shell is launched vertically from point A with an initial velocity of magnitude vo = 87 ft/sec. In addition to the acceleration due to gravity, an internal
thrusting mechanism causes a constant acceleration component of 1.6g in the direction shown for the first 2.3 seconds of flight, after which the thruster ceases to function. Determine
the maximum heighth achieved, the total flight time t, the net horizontal displacement x from point A, and plot the entire trajectory. Neglect any acceleration due to aerodynamics.
Answers:
h =
t =
X =
64°
1.6 g
ft
sec
ft
Click if you would like to Show Work for this question: Open Show Work
Transcribed Image Text:Chapter 2, Problem 2/074 An experimental fireworks shell is launched vertically from point A with an initial velocity of magnitude vo = 87 ft/sec. In addition to the acceleration due to gravity, an internal thrusting mechanism causes a constant acceleration component of 1.6g in the direction shown for the first 2.3 seconds of flight, after which the thruster ceases to function. Determine the maximum heighth achieved, the total flight time t, the net horizontal displacement x from point A, and plot the entire trajectory. Neglect any acceleration due to aerodynamics. Answers: h = t = X = 64° 1.6 g ft sec ft Click if you would like to Show Work for this question: Open Show Work
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