Sunday, November 9, 2014
Dougherty, S. Garvey, Howell, Lynch
Newton's Three Laws of Motion
Newton’s First Law of Motion:
Newton’s First law of motion often called the “law of inertia” states that and object at rest will stay at rest unless acted on by and unbalanced external force. This law also says that an object in motion will remain in motion with constant velocity in the same direction unless acted on by an external unbalanced force. This means that there is a natural tendency that objects keep doing what they are doing and resist changes in their own state of motion. But without the unbalanced force and object will continue to move in the same direction.
Newton’s Second Law of Motion
Newton's second law is a representation of the relationship between and objects mass and it's applied force and acceleration giving use the equation of Newton's second law F = ma. In Newton's second law the acceleration of an object depends directly upon the net forces acting upon the object. As the force acting upon an object is increased the acceleration of the object is also increased. As the mass of an object is increased, the acceleration of the object is decreased. So, Newton's second law is an applied force on an object that puts affect on an objects mass that directly effects the objects acceleration.
Newton's Third Law of Motion
Newton's third law of motion states, that for every action there is an equal and opposite reaction. This means for every force out there is a force the same magnitude that acts equal and opposite of the initial force.
THE GREATEST PHYSICS VIDEO IS POSTED BELOW
Photo Cited @ http://tylercapstoneproject.weebly.com/free-body-diagrams.html


Newton's Laws of Motion Project : Carlos Gonzalez, Eduardo Cadaval, Anthony Avila
Newton's Laws Video Project
Carlos Gonzalez, Eduardo Cadaval, Anthony Avila
Newton's First Law of Motion: An object at rest will remain at rest unless acted on by an unbalanced force. An object in motion continues in motion with the same speed and in the same direction unless acted upon by an unbalanced force. This law is often called
"the law of inertia".
"the law of inertia".
Static Equilibrium (Swing)
Dynamic Equilibrium (Swing)
Newton's Second Law of Motion: Acceleration is produced when a force acts on a mass. The greater the mass (of the object being accelerated) the greater the amount of force needed (to accelerate the object).The relationship between an object's mass m, its acceleration a, and the applied force F is F = ma.
3 Balls Freefall
Anthony Pushing Car
Carlos Pushing Car

Newton's Third Law of Motion: For every action there is an equal and opposite reaction.
Anthony Kicking Soccer Ball
Ball Bouncing Back Up
Ball Not Bouncing Up
Newton's Laws of Motion Project- Parker and Josh
Group:Parker, and Joshua
Video Link: http://youtu.be/nmtU1S0WQpM
First Law:
-An object in motion will must stay in motion unless an unbalanced force acts upon it
- An object at rest will stay at equilibrium
-Two types Static- not moving and Dyamic- constant motion or moving
Second Law:
-Force is directly related to acceleration whereas mass is an inverse of force
-The force can happen horizontal or vertically
-The more force the faster the acceleration and the more distance it travels
- F=ma
Video Link: http://youtu.be/nmtU1S0WQpM
First Law:
-An object in motion will must stay in motion unless an unbalanced force acts upon it
- An object at rest will stay at equilibrium
-Two types Static- not moving and Dyamic- constant motion or moving
Second Law:
-Force is directly related to acceleration whereas mass is an inverse of force
-The force can happen horizontal or vertically
-The more force the faster the acceleration and the more distance it travels
- F=ma
Third Law:
-Every action has an equal and opposite reaction
Spencer Barnett, Trevor Lastelick, Mitchell Thresher, John Garvey
1st Law- An object at rest tends to stay at rest, while an object in motion tends to stay in motion
2nd Law- The acceleration of an object is dependent upon two variables - the net force acting upon the object and the mass of the object. The acceleration of an object depends directly upon the net force acting upon the object, and inversely upon the mass of the object. As the force acting upon an object is increased, the acceleration of the object is increased. As the mass of an object is increased, the acceleration of the object is decreased. In other words, F=ma.
2nd Law- The acceleration of an object is dependent upon two variables - the net force acting upon the object and the mass of the object. The acceleration of an object depends directly upon the net force acting upon the object, and inversely upon the mass of the object. As the force acting upon an object is increased, the acceleration of the object is increased. As the mass of an object is increased, the acceleration of the object is decreased. In other words, F=ma.
Taylor, Patterson, Schoeberl, Horvath
Photos Cited:
http://exploration.grc.nasa.gov/education/rocket/newton1r.html
http://www.grc.nasa.gov/WWW/k-12/rocket/newton2r.html
http://www.grc.nasa.gov/WWW/k-12/airplane/newton3.html
http://en.m.wikipedia.org/wiki/Isaac_Newton
http://www.giantbomb.com/apple-inc/3010-5815/
Newton's First Law of Motion: An object in motion will stay in motion until acted upon by an unequal force.

Newton's Second Law of Motion: Force = mass x acceleration
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