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A heavy boy and a lightweight girl are balanced on a mass-less seesaw. If they both move forward so that they are one-half their original distance from the pivot point, what will happen to the seesaw? Assume that both people are small enough compared to the length of the seesaw to be thought of as point masses.A. It is impossible to say without knowing the masses.
B. It is impossible to say without knowing the distances.
C. The side the boy is sitting on will tilt downward.
D. Nothing will happen; the seesaw will still be balanced.
E. The side the girl is sitting on will tilt downward.

Respuesta :

Answer:D. Nothing will happen; the seesaw will still be balanced

Explanation: According to the principles of moment which states that for a body to be at equilibrium, the sum of clockwise moments must be equal to the sum of anticlockwise moments.

if the mass-less seesaw was initially balanced at a particular distance, it will still be balanced if the boy and the girl move forward to cover half their initial distances from the pivot.

D perfectly depicts the outcome.

Nothing will happen; the seesaw will still be balanced.

Principle of moment

The principle of moment states that the sum of clockwise moment is equal ton sum of anticlockwise moment.

F₁r₁ = F₂r₂

where;

  • F is the forces applied by the boy and the girl
  • r is the respective position of the boy and the girl

We can conclude that if the boy and the girl were initially at equilibrium, when they move equal distance apart, the see-saw will still be balanced.

Thus, nothing will happen; the seesaw will still be balanced.

Learn more about principle of moment here: https://brainly.com/question/26117248