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Physics
1-8 Math
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Physics
SELECT SUBJECT
All Physics
A.
Motion and Forces
B.
Conservation of Energy and Momentum
C.
Circular Motion and Gravitation
D.
Oscillations
E.
Thermal Physics
F.
Electromagnetism
G.
Waves and Optics
H.
Modern Physics
Physics
»
H.
Modern Physics
H.1.
Quantum Theory
H.1.M.
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H.1.Q.
Unit Challenge
H.1.1.
The Photoelectric Effect
H.1.1.O.
Overview
H.1.1.1.
Determining the effect of an increase in the intensity of light on the photoelectric effect
H.1.1.2.
Solving problems involving the energy of a photon using the equation E = hf
H.1.1.3.
Solving problems involving the maximum kinetic energy of an electron and the work function of a metal using the equation KE
max
= hf - Φ
H.1.2.
Momentum of a Photon and the Heisenberg Uncertainty Principle
H.1.2.O.
Overview
H.1.2.1.
Solving problems involving the momentum of a photon using the equation p = h/λ
H.1.3.
De Broglie Wavelength and Wave Particle Duality
H.1.3.O.
Overview
H.1.3.1.
Solving problems involving the de Broglie wavelength using the equation λ = h/p = h/mv
H.1.3.2.
Identifying experiments that demonstrate the wave behavior of light
H.1.3.3.
Identifying experiments that demonstrate the particle behavior of light
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H.2.
Special Relativity
H.2.M.
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H.2.Q.
Unit Challenge
H.2.1.
Special Relativity Overview--The Two Postulates of Special Relativity
H.2.1.O.
Overview
H.2.2.
The Relativity of Velocity
H.2.2.O.
Overview
H.2.2.1.
Determining the relative velocity of an object using formula v' = (u + v)/(1 + uv/c
2
)
H.2.3.
The Relativity of Time
H.2.3.O.
Overview
H.2.3.1.
Determining the observed time interval in a fixed frame of reference using the equation t = t_0/√(1-v
2
/c
2
)
H.2.4.
The Relativity of Length
H.2.4.O.
Overview
H.2.4.1.
Recognizing how the perceived length of an object changes as it approaches the speed of light
H.2.4.2.
Determining the observed length of an object in a fixed frame of reference using the equation L = L
0
√ (1- (v
2
/c
2
))
H.2.5.
Relativistic Mass and Energy
H.2.5.O.
Overview
H.2.5.1.
Recognizing how the perceived mass of an object changes as it approaches the speed of light
H.2.5.2.
Determining the observed mass of an object in a fixed frame of reference using the equation m = m
0
/√ (1-v
2
/c
2
)
H.2.5.3.
Determining the rest energy for an object using the equation E
0
= m
o
c
2
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