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3. identify the forces situation balanced or unbalanced? explain (use s…

Question

  1. identify the forces

situation balanced or unbalanced? explain (use sentence stem)
a book resting on a desk
the forces are because the book is
a ball rolling and slowing down
the forces are because friction is
a person pushing a box and it starts moving
the forces are because the push
a car moving at the same speed in a straight line
the forces are because the car

  1. apply what you know
  2. if you slide a toy car across the floor, it eventually stops because of:

a) inertia b) gravity c) friction d) air

  1. when balanced forces act on an object, the object will:

a) speed up b) slow down c) not change motion d) spin

  1. when unbalanced forces act on an object, it will:

a) stay still b) change motion c) float d) disappear

  1. think and explain
  2. newtons first law means that.
  3. a real - life example of inertia is.
  4. when forces are balanced,.
  5. when forces are unbalanced,.

Explanation:

3. Identify the Forces

A book resting on a desk

Brief Explanations

When a book is resting on a desk, it is in a state of equilibrium. The force of gravity pulling the book downwards is balanced by the normal force exerted by the desk upwards. Since there is no net force acting on the book (it is not accelerating), the forces are balanced.

Brief Explanations

As the ball rolls, friction acts in the opposite direction of its motion. This frictional force is an unbalanced force because it causes a change in the ball's velocity (it slows down). According to Newton's second law (\(F = ma\)), an unbalanced force (\(F
eq0\)) leads to acceleration (\(a
eq0\)). Here, the acceleration is negative (deceleration) due to the frictional force.

Brief Explanations

Initially, when the box is at rest, the frictional force (static friction) opposes the applied force (the push). Once the applied force exceeds the maximum static - friction force, the box starts to move. At the moment it starts moving, there is a net force in the direction of the push. Since there is a net force (\(F_{net}=F_{push}-F_{friction}>0\)), the forces are unbalanced.

Answer:

Balanced; balanced; not accelerating

A ball rolling and slowing down