travel horizontally
If air resistance is taken into account, the ball would continue moving in a horizontal direction, slowing as it went and then stop - suspended in mid air. If there were no air resistance, the ball would continue to move in a straight line for ever. However, the surface of the earth would curve downwards (because it is a sphere) and so, relative to the earth, the ball would fly off at a tangent into space. Of course, all this begs the question as to why the person who threw the ball did not fly off onto space long before throwing the ball!
No, human evolution followe a path with many branches.
It will travel in a straight line as far as the x and z axises are concerned however in the Y axis the bodies path will be a inverted parabolic.
rotation is a type of motion in this all the components follow a circular path
The force of gravity acting on the ball causes it to follow a curved path when thrown. As the ball moves forward, gravity pulls it downward, causing it to curve towards the ground. Other factors like air resistance and the initial velocity of the throw can also affect the path of the ball.
A ball thrown straight will curve downward due to the pull of gravity acting on it. As the ball moves forward, gravity exerts a downward force on it, causing it to follow a curved path towards the ground. This downward curve is influenced by factors such as air resistance and the initial velocity and angle at which the ball was thrown.
The rock follows a parabolic path.
speed and spin
When a ball is thrown, the force of gravity affects its trajectory, causing it to follow a curved path instead of a straight line. Additionally, air resistance and spin on the ball can also contribute to the curve as it travels through the air. This combination of factors leads to the typical arc path that we observe when a ball is thrown.
A ball that is thrown horizontally will stay in the same path because there are no horizontal forces acting on it to change its motion. In the absence of air resistance and other external forces, the ball will continue moving at a constant horizontal speed due to its inertia.
travel horizontally
Follow the invisible path it is in the shape of an S.
Objects that are thrown or shot follow a curved path due to the combination of their initial velocity and the force of gravity acting upon them. Gravity pulls the object downward, causing it to curve towards the ground as it moves horizontally. This curved path is known as a projectile motion.
The path that a thrown object follows is called a projectile path, which is determined by the initial velocity and angle of the throw. The object moves in a curved trajectory, influenced by gravity pulling it downward. The shape of this path is typically a parabolic curve.
A parabolic arc trajectory is the curved path that an object follows when thrown or launched into the air, under the influence of gravity. This type of trajectory is characterized by a symmetric shape resembling a parabola, with the object reaching its highest point midway through its flight path. Projectile motion, such as that of a thrown ball or a launched rocket, often follows a parabolic arc trajectory.
The curved path an object takes when it is thrown is called a projectile motion. It is influenced by both the initial velocity of the object and the force of gravity acting on it. The shape of the path is typically parabolic.