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Special Relativity
Relativity factor
Coordinate time formulae
Length contraction
Relativistic mass
Relativistic Momentum
Relativistic Kinetic Energy
Rest Energy
Total Energy
Total Energy, Rest Energy and Momentum
Mass and energy are equivalent:
E = mc2
Energy of the photon
Ephoton = hf = pc
Stopping voltage
KEMAX = e∆VS
Einstein’s equation
Wave-particle Duality
Heisenberg’s uncertainty principles
Energy of jumping in energy levels
Energy level of hydrogen atom
Transition energy between levels
Equation for separation of energy
Rotational energy
Moment of inertia of the molecule
Rotational spectrum
Current flowing in diode
Radius of the nuclei
Alpha (α) decay
Beta (b) decay
1) Beta (-) decay
2) Beta (+) decay
Gamma (γ) decay
Number of particles decayed vs time
Number of atoms left
Activity
Half Life
Mean lifetime
Mass defect
ΔM (mass defect) =MREACTANTS – MPRODUCTS
Binding Energy per nucleon
Q =
Gravitational force | Coulomb’s force |
Gravitational field | Electric field |
Gravitational field due to point mass | Electric field due to point charge |
Electric potential energy | Gravitational potential energy |
Electric potential due to point charge | Gravitational potential |
Potential difference between two points
Electric field
Average Electric current
Instantaneous Electric Current
Average current with drift velocity
Resistance (Ohm’s law)
Resistance (in resistor)
Conductivity
σ = 1 / ρ
Drift velocity
Resistivity
Electric power
Terminal Voltage
Δ Vab = e – Ir
Resistors in series
Δ V = I R 1 + I R 2 = I (R 1+ R 2)
R eq = R 1 + R 2 +…
Resistors in Parallel
Junction Rule
Loop Rule
Electric field between capacitor’s plates
Potential
Capacitance
Capacitors in parallel
ΔV1 = ΔV2 = ΔV
Qtotal = Q1 + Q2
Ceq = C1 + C2
Capacitors in Series
Q1 = Q2 = Q3
ΔV tot = ΔV 1 + ΔV 2
Energy Stored in a Charged Capacitor
Charging the capacitor
Discharging the capacitor
Force due to magnetic field
F = q v B sin θ
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Single slit diffraction | | | Формула средней нормы прибыли на инвестиции |