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All members of your group must have the same answer on your whiteboard to earn points for a question. Let’s Play!. Forces and Free Body Diagrams. Mass and Weight. Friction and Springs. Equilibrium and Vectors. Inertia. Newton’s 2 nd and 3 rd Laws. Friction & Springs. Forces & FBD’s.
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All members of your group must have the same answer on your whiteboard to earn points for a question. Let’s Play!
Friction & Springs Forces & FBD’s Mass & Weight Equilibrium & Vectors Inertia Newton’s 2nd and 3rd Laws • 100 • 100 • 100 • 100 • 100 • 100 200 200 200 200 200 200 300 300 300 300 300 300 400 400 400 400 400 400 500 500 500 500 500 500
This is a support force which points perpendicular to surfaces.
Ff Fn Fg
This is the FBD of a hockey puck sliding across the ice (frictionless, no air resistance).
Fn Fg
Fp Fp Fg
This is the mass of an object that has a weight of 981 N on Earth.
A 2kg object has this weight on the Moon. (g = 1.6 m/s2)
An object is 30N on Earth. What is its weight on Jupiter? (g = 26 m/s2)
This line represents the coefficient of static friction. B Friction Force (N) A Normal Force (N)
What is line B? (because static friction is ALWAYS greater than kinetic)
A spring has an equilibrium length of 5 cm, and is stretched to 7.5 cm. This is the displacement (∆x).
A spring has a constant of 100 N/m. If a 5kg mass is hung on it, then it will stretch this far from equilibrium.
Daily Double!
We are OPEN If the sign has a mass of 50 kg, this is the tension is each cable.
The resultant vector has this magnitude and direction. 30N 40N