bean bag flinger

6
1 Bean Bag Flinger Bean Bag Flinger Teddy Harre, Rob Pritchett, Eric Singleton, James Templeton, Zach Warnock

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Teddy Harre, Rob Pritchett, Eric Singleton, James Templeton, Zach Warnock. Bean Bag Flinger. 1. Conservation of Energy (Marble). Mass and friction are negligible. mgh = .5mv^2 + .5iw^2 Final Velocity = 1.69 m/s. 2. Torque. s = s0 + (v^2 – v0^2)/2a Acceleration = 5.622 m/s^2 F=ma - PowerPoint PPT Presentation

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Page 1: Bean Bag Flinger

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Bean Bag FlingerBean Bag FlingerTeddy Harre, Rob Pritchett, Eric Singleton,

James Templeton, Zach Warnock

Page 2: Bean Bag Flinger

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Conservation of Energy (Marble)

Mass and friction are negligible. mgh = .5mv^2 + .5iw^2 Final Velocity = 1.69 m/s

Page 3: Bean Bag Flinger

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Torque

s = s0 + (v^2 – v0^2)/2a Acceleration = 5.622 m/s^2 F=ma F =.168 Newtons T = r * F T = .008 N-m

Page 4: Bean Bag Flinger

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Conservation of Energy

(hacky sack) Mass and friction are negligible. mgh = .5mv^2 + .5iw^2 Final Velocity = 1.58 m/s

Page 5: Bean Bag Flinger

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Projectile Motion

(y-y0)=(x-x0)*tan(θ)-g/(2v2)*(1+tan2(θ))*(x-x0)2

Velocity =7.01 m/s

Page 6: Bean Bag Flinger

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Issues

Holding Marble on Platform Landing on Mouse Trap Landing on Platform Correct Weight for Pulley