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Yes, if the children weigh the same, the seesaw will balance. The seesaw balances when the weight on both sides is equal.
The fulcrum on a seesaw is the support point at which the seesaw pivots or rotates. It serves as the balance point for the seesaw to ensure that both ends move up and down equally.
Moving the load on a seesaw affects the balance of the seesaw. If one side becomes heavier, that side will lower while the other side rises. Moving the load closer to the center of the seesaw will balance it out, while moving it farther away will cause imbalance.
A seesaw will function smoothly when both sides have evenly distributed weight and the participants cooperate to balance their movements. It is important for individuals to communicate and work together to maintain a harmonious back-and-forth motion on the seesaw.
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.
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Yes, if the children weigh the same, the seesaw will balance. The seesaw balances when the weight on both sides is equal.
The fulcrum on a seesaw is the support point at which the seesaw pivots or rotates. It serves as the balance point for the seesaw to ensure that both ends move up and down equally.
tilting seesaw bridge: hard to balance
Moving the load on a seesaw affects the balance of the seesaw. If one side becomes heavier, that side will lower while the other side rises. Moving the load closer to the center of the seesaw will balance it out, while moving it farther away will cause imbalance.
A seesaw will function smoothly when both sides have evenly distributed weight and the participants cooperate to balance their movements. It is important for individuals to communicate and work together to maintain a harmonious back-and-forth motion on the seesaw.
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.
d1 times w1 = d2 times w2 (d- distance of the person from seesaw)/ (w = weight of person)
A seesaw in a playground is an example of a fulcrum. The board that the children sit on acts as the lever, while the point where the seesaw pivots is the fulcrum. The position of the fulcrum determines the balance and movement of the seesaw.
Simple ..put equal weight at each end, equal distance from the pivot.