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While trying to explain a physics concept, a student said, "Stuff keeps doing what it's doing unless something messes with it." What law was the student summarizing? Explain your answer.

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When a soccer player kicks a ball, the ball accelerates. Explain what causes this acceleration in terms of forces.
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Describe three examples from sports in which a force changes the velocity of an object or a person.
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Explain which has greater inertia; a speeding car or a jet airplane sitting on the runway.
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Do forces always cause motion, explain?
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User Lysandus
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2 Answers

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1) Newton's first law of motion
2)The soccer ball accelerates because of the force the soccer player exerts on the ball.
4)Inertia is the act of not doing anything. Therefore, the jet airplane sitting on a runway has the greatest inertia because it is literally doing nothing.
5)Forces DO NOT always cause motion. friction is a force that goes against a motion, this is a resistant force.

Sorry but I wouldn't want to inaccurately answer #3, so I didn't do it.
User BenR
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Answer:

Explanation:

1. Newton's first law of motion: Also called the law of inertia, states that "An object at rest remains at rest, or if in motion, remains in motion at a constant velocity unless acted on by a net external force"

2. According to Newton's second law "the force (F) acting on an object is equal to the mass (m) of an object times its acceleration (a)", meaning that when the soccer player kicks a ball, a force is acting on the ball, therefore increasing it's acceleration. After the force is applied, the gravity and the resistance of air will be the ones in charge of stopping the ball.

3. a) Baseball: The ball changes direction and speed when it's hit with the bat.

b) Bowling: When the ball hits the pins, the change from being at rest to a higher velocity.

c) Wrestling: The wrestler exerts a force on the oponent increasing or decreasing it's velocity.

4. The jet airplane has more inertia. Inertia is the resistance of an object to move if at rest, or to change its velocity and it is proportional to the mass of the object. Therefore, the jet airplane being heavier than the car will have more inertia. It has to be clear that it is not due to the fact that is at rest that is the one with more inertia, but mostly related to the mass. If the example was with two cars, one at constant velocity and the other at rest, both with the same mass, the one with greater inertia will be the one moving.

5. No, forces do not always cause motion. They have to be greater than the forces that oppose movement, such as friction, air resistance or gravity.