PAP Physics. Unit is the NEWTON(N) Is by definition a push or a pull Can exist during physical contact (Tension, Friction, Applied Force) Can exist with.

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Presentation transcript:

PAP Physics

Unit is the NEWTON(N) Is by definition a push or a pull Can exist during physical contact (Tension, Friction, Applied Force) Can exist with NO physical contact, called FIELD FORCES ( gravitational, electric, etc) Facts about Force

INERTIA – a quantity of matter, also called MASS. Italian for “LAZY”. Unit for MASS = kilogram. Weight or Force due to Gravity is how your MASS is effected by gravity. NOTE: MASS and WEIGHT are NOT the same thing. MASS never changes When an object moves to a different planet. What is the weight of an 85.3-kg person on earth? On Mars (g=3.2 m/s/s)? Newton’s First Law – The Law of Inertia

An object in motion remains in motion in a straight line and at a constant speed OR an object at rest remains at rest, UNLESS acted upon by an EXTERNAL (unbalanced) Force. There are TWO conditions here and one constraint. Condition #1 – The object CAN move but must be at a CONSTANT SPEED Condition #2 – The object is at REST Constraint – As long as the forces are BALANCED!!!!! And if all the forces are balanced the SUM of all the forces is ZERO. The bottom line: There is NO ACCELERATION in this case AND the object must be at EQILIBRIUM ( All the forces cancel out). Newton’s First Law

A pictorial representation of forces complete with labels. W 1,Fg 1 or m 1 g Weight(mg) – Always drawn from the center, straight down Force Normal(F N ) – A surface force always drawn perpendicular to a surface. Tension(T or F T ) – force in ropes and always drawn AWAY from object. Friction(Ff)- Always drawn opposing the motion. m2gm2g T T FNFN FfFf Free Body Diagrams

mg FNFN FfFf Free Body Diagrams

Since the F net = 0, a system moving at a constant speed or at rest MUST be at “EQUILIBRIUM”. TIPS for solving problems Draw a FBD Resolve anything into COMPONENTS Write equations of equilibrium Solve for unknowns Newton’s First Law – The Law of “EQUILIBRIUM”

A 10-kg box is being pulled across the table to the right at a constant speed with a force of 50N. a) Calculate the Force of Friction a) Calculate the Force Normal mg FNFN FaFa FfFf Example

Suppose the same box is now pulled at an angle of 30 degrees above the horizontal. a) Calculate the Force of Friction a) Calculate the Force Normal mg FNFN FaFa FfFf 30 F ax F ay Example

A cafe sign with a mass of 65.5 kg is being held up by 2 cables as shown in the picture to the left. Calculate the tension in each of the ropes. mg T1T1 T2T2 T 1 cos19 T 1 sin19 T 2 cos35 T 2 sin NT 1 = 650 N