Answer:
Explanation:
Let's split the analysis on two components, horizontal and vertical.
Supposed no air resistence, the horizontal movement is given by the expression
. Since it travels 50 m, solving for
you get
.
The vertical movement is given by the expression
, where
is the gravitational acceleration. The highest point is reached when the vertical velocity (
) is zero, or at
![t=(25.0sin20°)/(9.81) \approx 1s. At this time, it's height will be [tex] h= 25.0sin20° (1) -\frac1/2 (9.81) (1^2) \approx 4 m.](https://img.qammunity.org/2020/formulas/mathematics/high-school/6kw067h6xtx43riaflcs4q5gnoe6cyf9d9.png)
Please note that the number are heavily approximated, do plug yours in a calculator