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21 Cards in this Set

  • Front
  • Back

1st Kinematics Law

v = v0 + at
2nd Kinematics Law
v = v0t + 1/2 a t^2
3rd Kinematics Law
v^2 = v0^2 + 2a(x-x0)
Force
F = ma
Centripital Acceleartion
ac = v^2 / r
Torque
T = r F sin θ
Momentum
p = mv
Impulse
J = FΔt = Δp
Kinetic Energy
K = 1/2 m v^2
Potential Energy (on earth)
U = mgh
Work
W = F Δx cosθ
Power
P = W / t
Power Alternate
P = Fvcosθ
Force of a Spring
F = -kx
Period of a Spring
T = 2pi sqrt(m/k)
Period of a Pendulum
T = 2pi sqrt(L/g)
Period frequency Relationship
T = 1/f
Force of Pendulum
F = -mgsinθ
Velocity of Simple Harmonic Motion
v = v0 +- sqrt( 1 - x^2/a^2)
Initial Velocity of Simple Harmonic Motion
v0 = 2piA / T
Position of Simple Harmonic Motion
x = A cos(2pi t / T)