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The path that an object follows in projectile motion is determined by both its initial velocity and the force of gravity acting on it. The object will follow a curved path because it has horizontal and vertical components of motion. As long as there is no air resistance, the object will follow a parabolic trajectory.

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An object is in projectile motion if it?

An object is in projectile motion if it is only under the influence of gravity and air resistance is negligible. The object follows a curved path called a projectile trajectory. The motion can be broken down into horizontal and vertical components.


What do projectile motion and circular motion have in common?

Both projectile motion and circular motion involve the motion of an object in a curved path. In projectile motion, the object follows a curved path due to the influence of gravity, while in circular motion, the object moves in a circle with a constant radius. Both involve centripetal acceleration that changes the direction of the object's velocity without changing its speed.


Who discovered projectile motion?

Projectile motion was first studied by Galileo Galilei in the late 16th century. He observed that an object in motion follows a curved path due to the combined effects of its horizontal and vertical motion.


What is physics projectile motion?

Physics projectile motion is the motion of an object that is projected into the air and then moves under the influence of gravity. The object follows a curved path known as a trajectory, exhibiting both horizontal and vertical motion. The key factors affecting projectile motion are the initial velocity of the object, the angle at which it is launched, and the force of gravity.


Is an object sliding along a horizontal table an example of projectile motion?

No, an object sliding along a horizontal table is not an example of projectile motion. Projectile motion occurs when an object is launched into the air and follows a curved trajectory under the influence of gravity. A sliding object on a horizontal surface does not follow a curved path in the air.

Related Questions

An object is in projectile motion if it?

An object is in projectile motion if it is only under the influence of gravity and air resistance is negligible. The object follows a curved path called a projectile trajectory. The motion can be broken down into horizontal and vertical components.


What do projectile motion and circular motion have in common?

Both projectile motion and circular motion involve the motion of an object in a curved path. In projectile motion, the object follows a curved path due to the influence of gravity, while in circular motion, the object moves in a circle with a constant radius. Both involve centripetal acceleration that changes the direction of the object's velocity without changing its speed.


Who discovered projectile motion?

Projectile motion was first studied by Galileo Galilei in the late 16th century. He observed that an object in motion follows a curved path due to the combined effects of its horizontal and vertical motion.


What is physics projectile motion?

Physics projectile motion is the motion of an object that is projected into the air and then moves under the influence of gravity. The object follows a curved path known as a trajectory, exhibiting both horizontal and vertical motion. The key factors affecting projectile motion are the initial velocity of the object, the angle at which it is launched, and the force of gravity.


Is an object sliding along a horizontal table an example of projectile motion?

No, an object sliding along a horizontal table is not an example of projectile motion. Projectile motion occurs when an object is launched into the air and follows a curved trajectory under the influence of gravity. A sliding object on a horizontal surface does not follow a curved path in the air.


What object in projectile motion will follow which path?

An object in projectile motion follows a parabolic path. This path is determined by the initial velocity, angle of launch, and gravitational force acting on the object. The motion consists of two independent components: horizontal motion at a constant velocity and vertical motion under the influence of gravity.


What is the similarities and differences of free falling and projectile motion?

The similarities between free falling and projectile motion both involve the effects of gravity on an object's motion. The key difference is that in free falling, the object falls straight down due to gravity, while in projectile motion, the object is projected at an angle and follows a curved path due to both horizontal and vertical components of motion.


Is it true that the motion of an object thrown at an angle is projectile motion?

Yes, that's correct. Projectile motion is the motion of an object that is thrown or launched into the air and moves under the influence of gravity. When an object is thrown at an angle, it follows a curved path known as projectile motion, which can be analyzed using equations of motion.


True or false the motion of an object thrown at an angle is projectile motion?

True. Projectile motion describes the curved path an object follows when thrown or projected near the Earth's surface, under the influence of gravity, while also moving horizontally.


A car driving around a track is an example of projectile motion?

Actually, a car driving around a track is an example of circular motion, not projectile motion. In projectile motion, an object is launched into the air and follows a curved path due to gravity. Circular motion involves an object moving in a circular path around a center point.


13 The path of motion of a thrown javelin is an example of?

The path of motion of a thrown javelin is an example of projectile motion, where the object follows a curved trajectory under the influence of gravity. It can be described by the horizontal and vertical components of its motion independently.


What is the curved path an object follows when thrown?

If there's no influence from air resistance, then the path of a "projectile" is a parabola. That's what you get when one component of velocity is constant and its other (orthogonal) component is accelerated.