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projectile ??
ITS
1. time period ,
2. horizontal range .....
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Horizontal Range -
The range of the motion is fixed by the condition y=0y=0. Using this we can rearrange the parabolic motion equation to find the range of the motion:
R=u2⋅sin2θgR=u2⋅sin2θg.
The time of flight of a projectile motion is the time from when the object is projected to the time it reaches the surface. As we discussed previously, TT depends on the initial velocity magnitude and the angle of the projectile:
The range of the motion is fixed by the condition y=0y=0. Using this we can rearrange the parabolic motion equation to find the range of the motion:
R=u2⋅sin2θgR=u2⋅sin2θg.
The time of flight of a projectile motion is the time from when the object is projected to the time it reaches the surface. As we discussed previously, TT depends on the initial velocity magnitude and the angle of the projectile:
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Horizontal Range Formula
A projectile is an object that is given an initial velocity, and is acted on by gravity. The horizontal range of a projectile is the distance along the horizontal plane it would travel, before reaching the same vertical position as it started from. The horizontal range depends on the initial velocity v0, the launch angle θ, and the acceleration due to gravity. The unit of horizontal range is meters (m).
A projectile is an object that is given an initial velocity, and is acted on by gravity. The horizontal range of a projectile is the distance along the horizontal plane it would travel, before reaching the same vertical position as it started from. The horizontal range depends on the initial velocity v0, the launch angle θ, and the acceleration due to gravity. The unit of horizontal range is meters (m).
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