Physics equations Flashcards
What equation links: Mass, Weight and Gravitational field strength?
Weight(W) = Mass(m) × Gravitational Field Strength(g)
What equation links: Distance, work done and force?
Work done(W) = Force(F) x Distance(s)
What equation links: Spring constant, Force and Extension?
Force applied(F) = Spring Constant(k) x Extension(e)
Equation linking: Force normal to a surface, Pressure and Area of Surface
Pressure(p) = Force normal to a Surface(F) / Area of Surface(A)
Equation that links: Moment of Force, Force and Distance?
Moment of Force(M) = Force(F) x Distance(d)
Equation linking: Time, Speed and Distance Traveled.
Distance Traveled(s) = Speed(v) x Time(t)
Equation linking: Change in Velocity, Acceleration and Time Taken.
Acceleration(a) = Change in Velocity(Av) / Time Taken(t)
Equation linking: Acceleration, Mass and resultant force
Resultant Force(F) = Mass(m) x Acceleration(a)
Equation linking: Mass, Velocity and Momentum
Momentum(p) = Mass(m) x Velocity(v)
Equation linking: Gravitational Potential, Gravitational field strength, Mass and height
Gravitational potential(Ep) = Mass(m) x Gravitational field strength(g) x height(h)
Equation linking: Mass, Speed and Kinetic Energy
Kinetic Energy(Ek) = 0.5 x Mass(m) x (Speed(v))^2
Equation linking: Energy Transferred, Power and Time
Power(P) = Energy Transferred(E) / Time(t)
Equation linking: Power, Work Done and Time
Power(P) = Work Done(W) / Time(t)
Equation linking: Total input energy, Efficiency and Useful output energy
Efficiency = Useful energy Output / Total energy input
Equation linking: Useful power output, Efficiency and Total power input
Efficiency = Useful power output / Total power input
Equation linking: Frequency, Wavelength and Wave Speed
Wave Speed(v) = Frequency(f) x Wavelength(^)
Equation linking: Potential difference, Resistance and Current
Potential Difference(V) = Current(I) x Resistance(R)
Equation linking: Charge flow, Current and Time
Charge flow(Q) = Current(I) x Time(t)
Equation linking: Potential Difference, Current and Power
Power(P) = Potential Difference(V) x Current(I)
Equation linking Power, Current and Resistance
Power(P) = (Current(I))^2 x Resistance(R)
Equation linking: Time, Power and Energy Transferred
Energy Transferred(E) = Power(P) x Time(t)
Equation linking: Charge Flow, Energy Transferred and Potential Difference
Energy Transferred(E) = Charge Flow(Q) x Potential Difference(V)
Equation linking: Density, Volume and Mass
Density(p) = Mass(m) / Volume(V)