When a bug splats on your windshield the force on the bug is?

Newton’s laws of motion require an equal and opposite force. The bug hits the windshield with the same magnitude of force as the windshield hits the bug, just in opposing directions.

When an insect hits the windshield of your car How does the force on the insect compare to the force on the windshield?

The force that the windshield exerts on the bug and the force that the bug exerts on the windshield are the same magnitude. Consider question 7. Which has the greater acceleration: the bug or the windshield? The bug has the greater acceleration because it has the smaller mass.

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What kind of collision is a bug hitting a windshield?

This is an inelastic collision because of the word “splat”. “splat” means to flatten and in this case also implies to stick to the windshield. Recall that inelastic collision means the objects deform and join together. Inelastic collisions also preserve momentum.

When a bug collides with a car’s windshield the impulse exerted on the bug by the car is?

Science Chapter 13 Newtons law

A B
momentum is conserved in elastic collisions. true (momentum is conserved whenever there is no external forces acting on a system)
When a bug collides with a car’s windshield, the impulse exerted on the bug by the car is equal to the impulse exerted by the bug on the car

Is momentum conserved when a bug hits a windshield?

The total momentum of the system bug-car stays the same during the collision, so the change in the car’s momentum is equal and opposite to the change in the bug’s momentum.

What happens when a bug hits the windshield?

Newton’s laws of motion require an equal and opposite force. The bug hits the windshield with the same magnitude of force as the windshield hits the bug, just in opposing directions.

When a bug hits the windshield of a moving car Why does the bug get squished while the car suffers no significant damage?

The windshield exerts a force of 1N on the bug and the direction that the car is moving. When a bug hits the windshield of a moving car, why does the bug get “squished” while the car suffers no significant damage? The windshield exerts a force of 1N on the bug and the direction that the car is moving.

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Why do bugs explode on windshields?

This is due to the “physics of airflow” around the vehicle. They either wind up getting trapped in the airflow or flying above the car. In addition, the insects’ flight patterns and behavior also influence how many of them will hit the windshield.

Which of the forces are greater the force on the bug or the force on the windshield?

The bug hit the truck’s windshield and the truck’s windshield hit the bug. Which of the two forces is greater: the force on the bug or the force on the truck? Explain. According Newton’s third law of motion these forces are equal.

How do you apply force?

You can apply a force by directly pulling on an object, such as pulling on a rope to move a box. A special form of pulling is a force at a distance.

When an insect hits a car each of them exert the same force?

According to third law of motion – For every action, there is an equal and opposite reaction. So, the force exerted by car on insect will be same as force exerted by insect on car.

When a bug traveling west collides with the windshield of a car traveling east What can be said about the collision?

When a bug traveling west hits the windshield of a car traveling east, what can be said about then collision? SAME! the bug and the car feel the same size force. An instance of one moving objects pushing against another.

What happens when the two cars collide with equal force?

In a collision between two objects, both objects experience forces that are equal in magnitude and opposite in direction. Such forces often cause one object to speed up (gain momentum) and the other object to slow down (lose momentum).

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What happens to the motion of an object if the net force acting on it is 0 n?

An object with no net forces acting on it which is initially at rest will remain at rest. If it is moving, it will continue to move in a straight line with constant velocity. Forces are “pushes” or “pulls” on the object, and forces, like velocity and acceleration are vector quantities.

Why is the damage to the bug so much greater than the damage to the car?

The mass of the bug is less so therefore the acceleration of the bug (change in direction and speed) is greater for the bug than your car.

Do action and reaction forces cancel out?

exerted by two objects on each other are often called an action- reaction force pair. … You might think that because action-reaction forces are equal and opposite that they cancel. However, action and reaction force pairs don’t cancel because they act on different objects.