Force equals mass times acceleration.

Slides:



Advertisements
Similar presentations
Newton’s Laws of Motion
Advertisements

Newton’s Laws of Motion
LAW OF MOTION.
FORCE & MOTION.
Biology – Premed Windsor University School of Medicine and Health Sciences J.C. Rowe Course Instructor.
Newton’s Laws of Motion
Newton’s Second Law of Motion Page Force and Acceleration Force is a push or a pull. Acceleration is when the motion of an object changes. Examples:
Newton’s Laws of Motion Steve Case NMGK-8 University of Mississippi October 2005.
Newton’s Laws of Motion. Newton’s Laws of Motion 1. An object in motion tends to stay in motion and an object at rest tends to stay at rest unless acted.
Applied Lab Physics Mrs. Campbell
Motion and Forces Chapter 2.
Newton’s Second Law of Motion. Force and Acceleration Force is a push or a pull acting on an object. Acceleration occurs when the VELOCITY of an object.
Newton’s Laws of Motion
Chapter 4 Acceleration and Momentum. Objectives 4.1 Explain how force, mass, and acceleration are related. 4.1 Compare rates at which different objects.
Newton’s Laws of Motion 1 st - Inertia. 2 nd - F = ma 3 rd - Action/Reaction Take notes when see.
Second Law of Motion Newton’s Second Law Mrs. Gergel.
Force = Mass x Acceleration (F = ma)
Gravity The force of attraction between objects that is due to their masses.
Force, Motion, and Newton’s Laws of Motion Review.
Newton’s Laws of Motion Sir Isaac Newton ( )
Universal Law of Gravitation All objects in the universe attract each other by the force of gravity.
Chapter 3 Force, Mass and Acceleration Newton’s Laws.
Newton’s Laws of Motion. Background Sir Isaac Newton ( ) an English scientist and mathematician famous for his discovery of the law of gravity.
Essential Questions Who discovered the Three Laws of Motion? What is Newton’s Second Law & how does it apply to motion?
Forces and Newton’s Laws Video Warm Up. What is a force? A force is a push or pull that causes an object to move, stop, or change direction. In physics,
Newton’s Laws of Motion. Sir Isaac Newton - English scientist & mathematician -discovered the 3 laws of motion -aka Newton’s Laws of Motion - describe.
FORCE & MOTION. I. Force Definition – a push or pull Measured in Newtons (N) – by a spring scale.
Newton’s Second Law of Motion. Force and Acceleration Force is a push or a pull. Acceleration is when the motion of an object changes, speed or direction.
Newton’s Laws of Motion I. Law of Inertia II. F=ma III. Action-Reaction.
STARTER Dummies are used in simulated car crashes to study what might happen to passengers in a real crash. They are fitted with a range of measuring devices.
Newton’s Laws of Motion
Newton’s Laws of Motion
Motion and Mechanics Physics.
Apply Newton’s First Law to the following illustration.
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Second Law of Motion
Newton’s Laws of Motion
Newton’s Second Law of Motion
Forces Contact vs. Noncontact
Newton’s Laws of Motion
Redhound Day 4 Assignment Directions: Watch the power point and answer the questions on the last slide “Which Law is It?” on your own paper. You will.
Newton’s Second Law F = ma.
Chapter 12 Forces and Motion.
Newton’s Laws of Motion
Newton’s Second Law of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Second Law of Motion
Newton’s Second Law of Motion
Newton’s Second Law How does mass affect acceleration? 2.How does mass
Newton’s Laws of Motion
Gravity: A force with which to be reckoned.
6.2 Newton's Second Law pp
Newton’s Laws of Motion
FORCE & MOTION.
Newton’s Laws of Motion
Forces.
Newton’s Laws of Motion
Activity #38: Newton’s Second Law of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Free Fall October 21, 2015.
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Newton’s Laws of Motion
Presentation transcript:

Force equals mass times acceleration. Newton’s Second Law Force equals mass times acceleration. F = ma Acceleration: a measurement of how quickly an object is changing speed.

Force and Acceleration Force is a push or a pull. Acceleration is when the motion of an object changes. Examples: Speed up Slow down Changes direction Mass is the amount of matter in an object.

Force and Acceleration Units of Force = Newtons (N) SI units for mass is kg SI units for acceleration is m/s2 1 Newton (N) = 1kg * m/s2

2nd Law When mass is in kilograms and acceleration is in m/s/s, the unit of force is in Newtons (N). One Newton is equal to the force required to accelerate one kilogram of mass at one meter/second/second.

What does F = ma mean? Force is directly proportional to mass and acceleration. Imagine a ball of a certain mass moving at a certain acceleration. This ball has a certain force. Now imagine we make the ball twice as big (double the mass) but keep the acceleration constant. F = ma says that this new ball has twice the force of the old ball. Now imagine the original ball moving at twice the original acceleration. F = ma says that the ball will again have twice the force of the ball at the original acceleration.

More about F = ma If you double the mass, you double the force. If you double the acceleration, you double the force. What if you double the mass and the acceleration? (2m)(2a) = 4F Doubling the mass and the acceleration quadruples the force. So . . . what if you decrease the mass by half? How much force would the object have now?

What does F = ma say? F = ma basically means that the force of an object comes from its mass and its acceleration. Something very massive (high mass) that’s changing speed very slowly (low acceleration), like a glacier, can still have great force. Something very small (low mass) that’s changing speed very quickly (high acceleration), like a bullet, can still have a great force. Something very small changing speed very slowly will have a very weak force.

Gravity & Weight Gravity is the force of attraction that exists between any two objects that have mass. The force of gravity depends on the mass of the objects and the distance between them.

Gravity & Weight Weight is a force, like the push of your hand is a force, and is measured in Newtons. The force of gravity causes all objects near Earth’s surface to fall with an acceleration of 9.8 m/s² or 10 m/s². Your weight on Earth is the gravitational force between you and Earth.

Gravity and Weight How are weight and mass different? Weight is a force, like the push of your hand is a force, and is measured in newtons. Mass is the amount of matter in an object, and doesn’t depend on location. Weight will vary with location, but mass will remain constant.

WEIGHT is a measure of the force of ________ on the mass of an object Newton’s Second Law WEIGHT is a measure of the force of ________ on the mass of an object measured in __________ gravity Newtons

Newton’s Second Law One rock weighs 5 Newtons. The other rock weighs 0.5 Newtons. How much more force will be required to accelerate the first rock at the same rate as the second rock? Ten times as much

Newton’s 2nd Law Newton’s Second Law states: an object acted upon by an unbalanced force will accelerate in the direction of the force. If you kick the ball, it starts moving. The ball accelerates only while your foot is in contact with the ball.