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Recall That the Flight of a Projectile Can Be Modeled θ\theta

Question 192

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Recall that the flight of a projectile can be modeled with the parametric equations:
 Recall that the flight of a projectile can be modeled with the parametric equations:   ,   where t is in seconds, v<sub>o</sub> is the initial velocity,  \theta  is the angle with the horizontal, and x and y are in feet. A missile is fired from a ship at an angle of 39°, an initial height of 20 feet above the water's surface, and at a speed of 3890 feet per second. Will it be able to hit a target that is 2.4 miles away? A)  Yes, it will easily hit the target. B)  No, it will miss the target. C)  no solution ,  Recall that the flight of a projectile can be modeled with the parametric equations:   ,   where t is in seconds, v<sub>o</sub> is the initial velocity,  \theta  is the angle with the horizontal, and x and y are in feet. A missile is fired from a ship at an angle of 39°, an initial height of 20 feet above the water's surface, and at a speed of 3890 feet per second. Will it be able to hit a target that is 2.4 miles away? A)  Yes, it will easily hit the target. B)  No, it will miss the target. C)  no solution where t is in seconds, vo is the initial velocity, θ\theta is the angle with the horizontal, and x and y are in feet.
A missile is fired from a ship at an angle of 39°, an initial height of 20 feet above the water's surface, and at a speed of 3890 feet per second. Will it be able to hit a target that is 2.4 miles away?


A) Yes, it will easily hit the target.
B) No, it will miss the target.
C) no solution

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