Y=(Vo^2 x sin^2(theta))/2g
Solve for Vo
The angle of projection affects the maximum height by determining the vertical and horizontal components of the initial velocity. At 90 degrees (vertical), all the initial velocity is vertical which results in maximum height. As the angle decreases from 90 degrees, the vertical component decreases, leading to a lower maximum height.
Changing the angle of projection affects the magnitude of range, maximum height, and time of flight. A higher angle will decrease the range and increase the maximum height while maintaining the time of flight. A lower angle will increase the range and decrease the maximum height while also maintaining the time of flight.
The maximum height of a projectile depends on its initial velocity and launch angle. In ideal conditions, the maximum height occurs when the launch angle is 45 degrees, reaching a height equal to half the maximum range of the projectile.
The maximum height attained by the ball can be calculated using the kinematic equation for projectile motion. The formula to calculate the maximum height is (v^2 * sin^2(angle))/(2g), where v is the initial velocity, angle is the launch angle, and g is the acceleration due to gravity. Substituting the values, the maximum height is approximately 15 meters.
After the collision, the maximum height the other ball will reach is determined by factors such as its initial velocity, mass, and angle of projection.
96.6 ft
If the base of the elevation is at a distance d from the observer, then the highest point is at a height = d*tan(angle of elevation)
i dont care about math even though i use it.
The angle of projection affects the maximum height by determining the vertical and horizontal components of the initial velocity. At 90 degrees (vertical), all the initial velocity is vertical which results in maximum height. As the angle decreases from 90 degrees, the vertical component decreases, leading to a lower maximum height.
Changing the angle of projection affects the magnitude of range, maximum height, and time of flight. A higher angle will decrease the range and increase the maximum height while maintaining the time of flight. A lower angle will increase the range and decrease the maximum height while also maintaining the time of flight.
Angle of elevation: tangent angle = opposite/adjacent and by rearranging the given formula will help to solve the problem
The maximum height of a projectile depends on its initial velocity and launch angle. In ideal conditions, the maximum height occurs when the launch angle is 45 degrees, reaching a height equal to half the maximum range of the projectile.
Using the sine rules in trigonometry the height of the mountain works out as 3704 meters in height to the nearest whole number.
If you also know its shadow then you can work out the angle of elevation
The angle of elevation in math is "the angle formed between the horizontal line and the line of sight when an observer looks upwards is known as an angle of elevation". It is always at a height that is greater than the height of the observer. visit our website: www. srisakthigold .com
the height to which something is elevated or to which it rises: The elevation of the tower is 80 feet. :)
Using trigonometery if you know the length of its shadow and angle of elevation