SOLUTION: A projectile is fired from a cliff 400 feet above water at an inclination of 45 degrees to the horizontal, with a muzzle velocity of 160 feet per second. The height h of the projec

Algebra ->  Quadratic Equations and Parabolas -> SOLUTION: A projectile is fired from a cliff 400 feet above water at an inclination of 45 degrees to the horizontal, with a muzzle velocity of 160 feet per second. The height h of the projec      Log On


   



Question 816071: A projectile is fired from a cliff 400 feet above water at an inclination of 45 degrees to the horizontal, with a muzzle velocity of 160 feet per second. The height h of the projectile above the water is given by h(x)=-32x^2/(160)^2+x+400, where x is the horizontal distance of the projectile from the base of the cliff. Find the maximum height of the projectile.
Answer by TimothyLamb(4379) About Me  (Show Source):
You can put this solution on YOUR website!
h(x) = -32x^2/(160)^2 + x + 400
-32x^2/(160)^2 + x + 400
-0.00125x^2 + x + 400
---
the above quadratic equation is in standard form, with a=-0.00125, b=1, and c=400
---
to solve the quadratic equation, plug this:
-0.00125 1 400
into this: https://sooeet.com/math/quadratic-equation-solver.php
---
the quadratic vertex is a maximum at ( x=400, h(x)=600 )
---
Answer:
the projectile reaches a maximum height of 600 feet above the water
---
Solve and graph linear equations:
https://sooeet.com/math/linear-equation-solver.php
---
Solve quadratic equations, quadratic formula:
https://sooeet.com/math/quadratic-formula-solver.php
---
Convert fractions, decimals, and percents:
https://sooeet.com/math/fraction-decimal-percent.php
---
Calculate and graph the linear regression of any data set:
https://sooeet.com/math/linear-regression.php