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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.


What is the difference between projectile motion and free falling?

Projectile motion involves an object being launched horizontally or at an angle, experiencing both horizontal and vertical motion due to gravity. Free falling, on the other hand, involves an object falling under the influence of gravity without any initial horizontal velocity. Both situations follow the same laws of physics governing motion under gravity.


What is the difference between free fall and projectile motion?

Free fall is the motion of an object falling under the influence of gravity alone, without any initial horizontal velocity. Projectile motion, on the other hand, involves both horizontal and vertical motion, with an initial horizontal velocity and the force of gravity acting on the object.


What type of Motion is Vertically Motion of a projectile?

I'm not sure of any specific name for "vertical motion" other than falling or acceleration and deceleration due to gravity. You will have the force of gravity. You may also have an element of a centripetal force, but for all practical purposes this would be minimal near the surface of the earth.


What are the differences between projectile motion and free fall?

Projectile motion involves an object moving both horizontally and vertically, while free fall is when an object falls only vertically due to gravity. In projectile motion, the object has an initial horizontal velocity, while in free fall, the object is only affected by gravity.

Related Questions

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.


What is the difference between projectile motion and free falling?

Projectile motion involves an object being launched horizontally or at an angle, experiencing both horizontal and vertical motion due to gravity. Free falling, on the other hand, involves an object falling under the influence of gravity without any initial horizontal velocity. Both situations follow the same laws of physics governing motion under gravity.


What is the difference between free fall and projectile motion?

Free fall is the motion of an object falling under the influence of gravity alone, without any initial horizontal velocity. Projectile motion, on the other hand, involves both horizontal and vertical motion, with an initial horizontal velocity and the force of gravity acting on the object.


What type of Motion is Vertically Motion of a projectile?

I'm not sure of any specific name for "vertical motion" other than falling or acceleration and deceleration due to gravity. You will have the force of gravity. You may also have an element of a centripetal force, but for all practical purposes this would be minimal near the surface of the earth.


How does a projectille differ from an object in a free fall?

A projectile has an initial forward velocity.


What are the differences between projectile motion and free fall?

Projectile motion involves an object moving both horizontally and vertically, while free fall is when an object falls only vertically due to gravity. In projectile motion, the object has an initial horizontal velocity, while in free fall, the object is only affected by gravity.


How Does Projectile differ from a object in free fall?

A projectile is an object that is launched into the air and follows a curved path, experiencing both horizontal and vertical motion. Free fall, on the other hand, refers to an object falling under the influence of gravity without any external forces acting on it. A projectile can have an initial horizontal velocity, while an object in free fall starts with zero velocity.


How does the downward component of the motion of a projectile compare to the motion of free fall?

The downward component of the motion of a projectile is influenced by the initial velocity and angle of launch, resulting in a curved path known as a projectile motion. In contrast, free fall refers to the vertical motion of an object under the influence of gravity alone, where the acceleration is constant and the path is straight.


What is a freely falling projectile?

A freely falling projectile is an object that is only acted upon by gravity, moving through the air in a parabolic path while falling towards the ground. It does not have any initial horizontal force or acceleration other than gravity acting upon it.


How does the downward component of the motion of a projectile compare to the motion of vertical free fall?

The downward component of the motion of a projectile is the same as vertical free fall. Both are affected by gravity pulling the object downward at a constant rate of 9.8 m/s^2 on Earth. The only difference is that a projectile also has a horizontal component of motion due to an initial velocity.


What are the key factors to consider when analyzing the trajectory of a free fall projectile motion?

When analyzing the trajectory of a free fall projectile motion, key factors to consider include the initial velocity, angle of launch, acceleration due to gravity, and air resistance. These factors affect the height, distance, and time of flight of the projectile.


What type of motion is the vertical motion of a projectile?

The vertical motion of a projectile is characterized by free fall motion under the influence of gravity. The only force acting on the projectile in the vertical direction is gravity, causing it to accelerate downward at a constant rate of 9.8 m/s^2 near the surface of the Earth.