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Summer School 2007

IP Simulations

ke pe Wf3 ke pe Wf 1 ke pe Wf2
wave1  ke pe ball Work = KE1
wave2 ball ke pe Work = KE2
Acc Ramp   ke pe path Work = Ke
Acc Ramp 2 banked curve work - Ff = Ke(angle)    
acc vs angle force centripetal Friction angle
ball roll upside down work 4 ke pe  
ball roll graph ball over hilltop work 3 ke pe
ball thrown off building ball on hill work 3 ke pe with Ff
pe-ke1 pe-ke 2 pe-ke3
f= ma orbiting1 brakes
force tension 1 box 2 ball orbiting2 catapult
 force ball orbiting3 catapult 2
force tension 1 box

Charge 2

orbiting4

Charge 1

catapult 3

 catapult4

force tension 2 box orbiting 5 launch
force tension 2 box 2 ball orbiting 6 launch2
graph motion orbiting 7 projectile
Harmonic motion 1 angular momentum 1 pulley acc
Harmonic motion2 angular momentum 2 pulley2
momentum1 angular momentum 3 pulley3
momentum2 moment of inertia pulley4
momentum 3 moment of inertia 2 pulley IMA
momentum4 moment of inertia 3 IMA Ramp
momentum5 moment of inertia 4 IMA ramp2
Hard momentum 1 Hard momentum 2 charge vs acc
motion prob1    moment of inertia 5 applied voltage
river boat moment of inertia 6 applied voltage 2
riverboat 2 torque1 resistance 0-50
river boat 3 torque2 moment of inertia 5
vectors torque3 resistance0-200
vector2 torque bridge resistance2,5-50
vertical f=ma torque diving board resistance5-50
water balloon drop torque diving board2 resistance5-50xlong
slide block resistance1 resistance10-50
front wheel drive car

resistance2

resistance10-50xlong
gear resistance3

jack sissor

engineer

resistance4 billiards
temperature1 cars momentum-1

cars momentum-2

cars  spring mom