Physics Exam 2

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Mapa Mental sobre Physics Exam 2, creado por wshield el 23/10/2013.
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Physics Exam 2
  1. Circular Motion
    1. Acceleration is not constant
      1. analyzed in terms of accel and Forces
        1. Uniform circular motion
          1. Direction is always changing
            1. vector is always tangent to circle
              1. Period of motion
                1. T=2pi(r)/v
                2. centripetal acceleration
                  1. ac=v^2/r
                3. Force directed toward center of circle
                  1. Tbottom=m(v^2/r +g)
                    1. Ttop=m(v^2/r -g)
                    2. Gravitation
                      1. Fgrav=Mperson(g)=GMpersonMearth/r^2earth
                      2. Work and Energy
                        1. W=F(displacement)
                          1. Newtons x meter= Joule
                            1. Kinetic energy
                              1. 1/2mv^2
                              2. potential energy
                                1. W=mgh
                                  1. PEchange=PEfinal-PEinitial=-W
                                  2. mechanical energy
                                    1. sum of potential and kinetic energies
                                    2. Power
                                      1. Pave=W/t
                                    3. Momentum
                                      1. p=mv
                                      2. impulse
                                        1. F(change in t)=change in momentum
                                        2. collisions
                                          1. elastic
                                            1. energy conserved
                                            2. inelastic
                                              1. kinetic energy is lost
                                            3. Rotational Dynamics
                                              1. wf=wi+at
                                                1. theta(final)=theta)initial)+wt+1/2at^2
                                                  1. wf^2=wi^2+2a(thetaf-thetai)
                                                    1. theta=s/r
                                                      1. angular velocity
                                                        1. w ave= change in theta/change in t
                                                        2. linear and angular accelerations
                                                          1. at=ar
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