The primary forces acting on a seesaw are gravitational force and the normal force. The gravitational force pulls down on the seesaw and any objects on it, while the normal force is exerted by the ground upward, balancing the weight. Additionally, torque plays a crucial role, as the seesaw rotates around its pivot point depending on the position and weight of the objects on either side. Proper balance occurs when the moments (torques) around the pivot are equal.
No, riding a seesaw is not an example of friction. Friction is the resistance that objects experience when rubbing against each other, while riding a seesaw involves a back-and-forth motion due to the pivot point and the weight distribution of the riders.
The type of force used on a seesaw is mechanical force. When one end of the seesaw is pushed down, it creates a torque force that allows the other end to go up, based on the principle of the lever.
on means you are on top of something, and at means you are at something... on: on top, at meaning: there. You can say: I am on the seesaw. you are riding or ontop the seesaw. I am at the seasaw: means: i am currently right there, where the seesaw is. Hoped this helped...
force multiplier
A seesaw uses a combination of gravitational force and the pushing/pulling force applied by the users to create the motion. The pushing and pulling forces result in a torque that moves the seesaw up and down around its pivot point.
A seesaw is a force magnifier. It allows two people of different weights to balance and produce a greater force together than they could individually.
crowbar &seesaw
The main forces involved when on a seesaw are gravity, which pulls objects towards the Earth's center, and the normal force, which is the force exerted by the seesaw pushing back on the person sitting on it. These forces create a balanced system where one end of the seesaw goes up while the other goes down.
A seesaw operates on the principle of leverage. When one person sits on one end, their weight creates a force causing that end to go down while the other end goes up. This creates a balancing act where each person's force and distance from the fulcrum determine the motion of the seesaw.
A seesaw works due to the force of gravity acting on the two people sitting on either end. As one person pushes down, their end goes up because the fulcrum (pivot point) acts as a balance point for the seesaw to rotate around. The seesaw operates on the principle of the lever, with the downward force of one person causing the other end to move upward.
The point supporting a seesaw or lever is called the fulcrum. This is the pivot point around which the lever rotates when a force is applied on one side. The position of the fulcrum can affect the mechanical advantage and balance of the seesaw or lever.
first class lever. Why? because it is in the order of output force-fulcrum-input force. output force ______________________________ input force fulcrum