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You cannot. You need to know either the initial speed or angle of projection (A).

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Q: How do you calculate range of projectile from ground at A degrees if you know its range is 200 meters if its launched from height of 2 meters at A degrees?
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Why projectile angle increase when projectile range also increase?

As the range of a projectile increases, the angle at which it is launched must also increase to compensate for the increased horizontal distance traveled. This is because a higher launch angle allows the projectile to spend more time in the air, allowing gravity to act upon it for a longer duration and help it cover the greater distance.


A projectile fired from the ground follows a parabolic path The speed of the projectile is minimum at the top of its path?

At the top of its path, the vertical component of the projectile's velocity is zero, making the overall speed minimum. This occurs because gravity slows down the projectile's upward motion until it stops momentarily before falling back down. The horizontal component of the velocity remains constant throughout the motion.


Is aerial tumbling best example of projectile principle for height?

Yes, aerial tumbling is a good example of the projectile principle for height. This is because the performer launches themselves vertically, experiences a free-fall phase, and then lands back on the ground. The height achieved during the tumbling routine is a result of the initial vertical launch and the influence of gravity on the performer's trajectory.


What do you do if the in-ground sprinkler system has not been blown out and it is 30 degrees out?

If the in-ground sprinkler system has not been blown out and it is 30 degrees out, it is important to act quickly to prevent the pipes from freezing and potentially bursting. Contact a professional to blow out the sprinkler system as soon as possible to remove any remaining water and protect the system from winter damage.


Is the temperature of the air high above the ground is often above or below 0 degrees Celsius?

often below

Related questions

What is half projectile?

A half projectile refers to the projectile motion of an object where it is launched at an angle of 45 degrees to the horizontal. This angle maximizes the range of the projectile for a given initial velocity, making it travel the furthest distance before hitting the ground. The path of the projectile is a parabolic curve.


A projectile upward at an angle of 75degree from the horizontal and strikes the ground a certain distance down range.For what other angle of launch ath the same speed wouldthis projectile land just a?

For the projectile to land at the same distance with the same initial speed, it must be launched at an angle of 15 degrees from the horizontal. This is because the range of a projectile is maximized when launched at a 45-degree angle. So, launching at 15 degrees in the opposite direction of 75 degrees should bring the projectile to the same landing point.


When projectile has maximum horizontal range?

A projectile has maximum horizontal range when it is launched at an angle of 45 degrees to the horizontal. This angle allows for the ideal balance between the horizontal and vertical components of the projectile's velocity, ensuring that it travels the farthest distance before hitting the ground.


How far does a projectile travel if you launch it at 30 degrees versus if you launch it at 60 degrees?

Assuming all other factors remain constant, a projectile launched at 60 degrees will travel further than one launched at 30 degrees. At 30 degrees, the horizontal component of the velocity is higher, leading to a shorter range, while at 60 degrees, the vertical component is higher, allowing the projectile to stay in the air for longer and cover a greater distance.


What do you need to know to determine how far a projectile travels horizontally?

To determine how far a projectile travels horizontally, you need to know the initial velocity of the projectile, the angle at which it is launched, and the acceleration due to gravity. The horizontal range of the projectile can be calculated using the formula: range = (initial velocity squared * sin(2*launch angle)) / acceleration due to gravity.


What do you you need to know to determine how far a projectile travels horizontally?

initial velocity, angle of launch, height above ground When a projectile is launched you can calculate how far it travels horizontally if you know the height above ground it was launched from, initial velocity and the angle it was launched at. 1) Determine how long it will be in the air based on how far it has to fall (this is why you need the height above ground). 2) Use your initial velocity to determine the horizontal component of velocity 3) distance travelled horizontally = time in air (part 1) x horizontal velocity (part 2)


What force acts on projectile?

The forces acting on a projectile are gravity, which causes it to fall towards the ground, and air resistance, which opposes its motion through the air. Additionally, the initial velocity at which the projectile is launched also influences its trajectory.


Which parameter remain same during projectile motion?

The magnitude of the initial velocity and the acceleration due to gravity remain constant during projectile motion. This means that the speed at which the projectile is launched and the rate at which it accelerates towards the ground do not change.


Why a small departure from 45 degree landing angle can reduce the horizontal range?

The range of a projectile on level ground, when air resistance is ignored, isd = v2*sin(2x)/g wherev is the intial velocity of the projectile,x is the angle above the horizontal at which the projectile is launchedandg is the acceleration due to the earth's gravity.This function is a maximum when x = 45 degrees and so d is smaller for other values of x.The range of a projectile on level ground, when air resistance is ignored, isd = v2*sin(2x)/g wherev is the intial velocity of the projectile,x is the angle above the horizontal at which the projectile is launchedandg is the acceleration due to the earth's gravity.This function is a maximum when x = 45 degrees and so d is smaller for other values of x.The range of a projectile on level ground, when air resistance is ignored, isd = v2*sin(2x)/g wherev is the intial velocity of the projectile,x is the angle above the horizontal at which the projectile is launchedandg is the acceleration due to the earth's gravity.This function is a maximum when x = 45 degrees and so d is smaller for other values of x.The range of a projectile on level ground, when air resistance is ignored, isd = v2*sin(2x)/g wherev is the intial velocity of the projectile,x is the angle above the horizontal at which the projectile is launchedandg is the acceleration due to the earth's gravity.This function is a maximum when x = 45 degrees and so d is smaller for other values of x.


Which projectile would hit the ground faster one projected at 20 meters per second horizontally or one projected at 20 meters per second in a direction other than horizontal no air?

If the non-horizontal projectile is launched abovehorizontal, thenit's the second one to hit the ground, after the horizontal one.If the non-horizontal one is launched below horizontal, then it'sthe first to hit the ground, before the horizontal one.


Why projectile angle increase when projectile range also increase?

As the range of a projectile increases, the angle at which it is launched must also increase to compensate for the increased horizontal distance traveled. This is because a higher launch angle allows the projectile to spend more time in the air, allowing gravity to act upon it for a longer duration and help it cover the greater distance.


The horizontal speed of a projectile launched over flat ground will affect the time that the projectile will stay in the air is this true or false?

this is false. the horizontal speed of the object has absolutely nothing to do with how long it takes to fall. if you fire a bullet on level ground it will hit the ground at the same time an apple would if you drop it from the same distance above the ground at the same time. the force of gravity is the same on everything on earth.